Found 436 projects
Poster Presentation 1
11:00 AM to 1:00 PM
- Presenters
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- Anny Qiu, Senior, Nursing UW Honors Program
- Melodie Tallegas - She, They, Senior, Nursing
- Mentor
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- Jillian Pintye, Biobehavioral Nursing & Health Systems
- Session
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Poster Session 1
- Commons West
- Easel #11
- 11:00 AM to 1:00 PM
Sub-Saharan Africa (SSA) accounts for the majority of global preterm births. Preterm birth can occur for various reasons but often the etiology is unknown. One potential cause is the impact of stress on the hypothalamic-pituitary adrenal axis which contributes to inflammatory processes. Chronic stressors may exacerbate during pregnancy and lead to adverse birth outcomes. Few studies have examined biomarkers for stress among pregnant populations in SSA who have unique considerations. To date, there is no specific biomarker for identifying individuals with high stress and an increased risk of preterm birth. In this study, we evaluate hair cortisol concentrations (HCC) as a biomarker for perinatal stress. In a cohort study in Kenya, 4500 cisgender women were enrolled during pregnancy and parent-infant pairs were followed through 9 months postpartum. HCC levels were extracted using ELISA methods from hair specimens collected from participants at 6 weeks postpartum. We evaluated the association between HCC, maternal stressors (e.g., intimate partner violence, behavioral risk for HIV), and preterm births using linear regression models. HIV risk behaviors were assessed using an empirical risk score validated to predict risk of HIV acquisition among pregnant cisgender women (high risk = scores >6). Among 153 participants included in this study, those with a partner known to be living with HIV or a unknown status had mean HCC levels that were 42.0% (95% confidence interval [CI]:4.9%- 92.2%) greater than those with HIV-negative partners (p=0.023). Individuals with high HIV acquisition risk had 43.1% (95% CI:6.1%-93.1%) higher mean HCC compared to those with lower HIV risk (p=0.019). Mean HCC levels did not differ between participants who had preterm vs. term births (mean difference 8.3%, 95% CI:-30.6%-68.8%, p=0.725). In summary, HCC levels were associated with some stressors during the perinatal period and could have implications for using HCC as a biomarker for antenatal stress.
- Presenters
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- Yena Park, Senior, Microbiology
- Noufa Khan, Senior, Environmental Health
- Mentors
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- Sumita Jain, Periodontics
- Daniel Chan, Dentistry, UW School of Dentistry
- Session
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Poster Session 1
- Balcony
- Easel #45
- 11:00 AM to 1:00 PM
Zinc pyrithione (ZPT) is a zinc conjugate that has been used as a preservative in industrial manufacturing supplies for preventing microorganismal growth on materials such as latex and plastics, as well as in shampoos and cosmetics. Little is known about the antibacterial effects of ZPT on common bacterial pathogens, especially when in the form of a solid surface barrier. Here we analyzed the inhibitory effects of ZPT in the form of a solid surface coating, provided by Cao Inc., on the bacterial strains E. coli and E. faecalis. Noufa Khan and I spread plated these bacteria on agar plates that contained a coat of 0%, 2.5%, or 5% ZPT underneath the agar. This indirect ZPT contact did not inhibit E. faecalis by any of the three ZPT materials, while E. coli was inhibited by 5% ZPT only. Noufa and I next tested the effects of direct contact of ZPT on bacterial growth by adding a designated amount of E. coli or E. faecalis directly to 3x3 cm squares of films containing 0%, 2.5% or 5% ZPT, three separate times, each in triplicate. After incubating for 24 hours, we removed the bacteria from these squares by vortexing and sonication into tubes containing liquid media, and plated them after serial dilution onto trypticase-soy agar plates. We counted the colonies to determine the extent of inhibition, if any. With direct ZPT contact, 2.5% and 5% ZPT inhibited E. coli and E. faecalis up to 95-99.9% relative to growth on the 0% ZPT control, with a higher concentration of ZPT showing a higher inhibition rate. These results demonstrate ZPT inhibits growth of common bacterial strains upon direct contact. An application to this research would be to use ZPT as an antibacterial plastic coating on door handles and other commonly touched surfaces.
- Presenter
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- Dante Jordan Fisher, Fifth Year, Neuroscience
- Mentors
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- Greg Horwitz, Bioengineering, Physiology & Biophysics
- Shane Gibson, Pathobiology
- Session
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Poster Session 1
- Balcony
- Easel #62
- 11:00 AM to 1:00 PM
A challenge faced by investigators who use Adeno Associated Virus (AAV) vectors lies in verifying successful assembly of the genetic construct developed for a given experimental manipulation. Failure at this step can introduce mutations that produce non-functional proteins and failure to obtain the desired expression. For these reasons, quality control measures support generation of valuable data and prevention of resource loss. Using molecular techniques such as PCR and Sanger Sequencing, we developed a quality control pipeline to amplify and identify viral sequences. Viruses were selected from stock for an identity assay based on relevance to planned optogenetics procedures, and PCR amplicons were designed to contain functional regions of each viral construct. Amplification was carried out using universal primers targeting 5'ITR and WPRE regions, which were common to all assembled viruses. Sanger sequencing was used to confirm that the amplicon sequence matched the viral template. Using the outlined procedure, we can now amplify, purify, and sequence the vector genome to gain nucleotide level confirmation of coding gene sequences prior to use in experiments.
- Presenter
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- Michael James Drake, Senior, Nursing UW Honors Program
- Mentor
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- Kendra Kamp, Biobehavioral Nursing & Health Systems, Nursing
- Session
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Poster Session 1
- Commons West
- Easel #20
- 11:00 AM to 1:00 PM
Irritable Bowel Syndrome (IBS) is a functional condition of the bowels which affects 10% - 15% of the global population. IBS is characterized by abdominal pain and changes in bowel movement frequency and consistency. While the cause of IBS is unknown, evidence suggests that developmental and psychological factors play a significant role. Patients who score high in Adverse Childhood Experience (ACE) and Early Trauma Inventory Self Report-Short Form (ETI-SR) assessments have an increased risk of developing IBS. The purpose of this study is to compare heart rate variability (HRV) and IBS subtypes between individuals with IBS with and without a history of sexual and physical abuse. We recruited women with IBS and healthy controls using community advertisements. IBS subtypes were recorded. Participants completed measures of traumatic experience during adolescence (Childhood Trauma Questionnaire) and adulthood (Lifetime Sexual and Physical Abuse Questionnaire). HRV was measured using 12 hours of Holter ECG recordings. Participants were categorized via ROME-III diagnostic criteria for IBS. ROME-III Criteria defines IBS by recurrent abdominal pain or discomfort for 3 days per month within a 12 week period, along with stool consistency patterns, the latter of which is used to define a patient's IBS subtype: IBS-Constipation (IBS-C), IBS-Diarrhea (IBS-D), IBS-Mixed (IBS-M), or IBS-Unclassified (IBS-U). We hypothesize that individuals with a history of abuse will have lower night heart night-time variability, as well as specific IBS subtypes. We expect that the findings from this study to broaden our understanding of how traumatic experience in childhood impacts IBS symptoms and related physiology in adulthood, as well as the causes of IBS. Findings have implications for developing trauma-informed care practices for patients with IBS, as well as trauma-exposed children at risk of developing IBS.
- Presenter
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- Visali Sethuraman, Senior, Biology (Physiology) Mary Gates Scholar
- Mentor
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- Ronald Kwon, Orthopaedics & Sports Medicine, UW School of Medicine/Institute for Stem Cell and Regenerative Medicine
- Session
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Poster Session 1
- Balcony
- Easel #55
- 11:00 AM to 1:00 PM
Osteoporosis is an orthopedic disease in which old bone begins to reabsorb but is not replaced by new bone. WNT16 is a critical gene influencing genetic risk for osteoporosis. The WNT16 locus harbors genetic variants associated with bone mineral density (BMD). Mice with global or conditional null mutations in Wnt16 exhibit reduced cortical bone mass and strength. Recently, our lab has shown that zebrafish with null mutations in wnt16 exhibit reduced vertebral bone length with otherwise normal bone morphology. My objective was to generate somatic mutant zebrafish with protein-truncating mutations in wnt16 and assess the effects of these mutations on adult zebrafish spine morphology and mineralization. My hypothesis was that protein-truncating mutations in wnt16 induce severe alterations in adult vertebral bone mass and morphology that are not observed in wnt16 null mutants. CRISPR-based gene editing was used to generate somatic mutants, wnt16trunc, by targeting the terminal exon of wnt16, resulting in a prematurely truncated gene product. FishCuT was used to assess measures of bone morphology and mineralization in the spine; this included the volume, thickness, and tissue mineral density of the centrum, and neural and haemal arches. FishCuT analysis revealed wnt16trunc mutants had significantly reduced centrum volume and length. Our results indicate that zebrafish somatic mutants with wnt16 protein-truncating mutants exhibit severe phenotypic changes and morphological abnormalities not apparent in wnt16 null mutants. This could reveal potential targets with regards to the development of therapeutic agents for manipulating WNT16 signaling in humans. These results also allow for interpretation of the functional consequences of human genetic variants in WNT16 that are predicted to result in truncated protein products. Future studies are focused on generating germline mutants with wnt16 protein-truncating mutations and determining the molecular mechanism by which such mutations give rise to severe phenotypes not present in wnt16 knockout animals.
- Presenter
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- Linh Pham, Senior, Psychology, Philosophy UW Honors Program
- Mentor
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- Bonnie Lau, Otolaryngology - Head And Neck Surgery
- Session
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Poster Session 1
- Commons East
- Easel #30
- 11:00 AM to 1:00 PM
This study compares narrative abilities of 11 adults with autism spectrum disorders (ASD) and 11 adults with fetal alcohol syndrome disorder (FASD) versus their 23 age- and sex-matched controls. The study aims to investigate the differences between ASD and FASD groups in the use of local measures (mental states and temporal relations) and the use of global measures (mean length of utterance, numbers of different words, and narrative scoring scheme) during a story-telling task using the children’s book Frog, Where are You?. We predict no significant differences in global narrative abilities between ASD and FASD to their comparison groups, but local narrative deficits in people with ASD and FASD. We predict they use fewer temporal references and mental state words. Comparing ASD and FASD groups, we predict that the ASD group will perform worse on both levels compared to the FASD group. The findings of this research will provide further evidence for differences in linguistic impairments between ASD and FASD and how social competence - the ability to understand a listener’s states of knowledge - influences linguistic abilities.
- Presenter
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- Grace Mae Moya-Ranallo, Junior, Astronomy UW Honors Program
- Mentors
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- Eric Agol, Astrobiology, Astronomy
- Zach Langford, Astronomy
- Session
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Poster Session 1
- Commons West
- Easel #7
- 11:00 AM to 1:00 PM
Exoplanets are any planet that’s outside of our solar system. There’s a myriad of ways to detect these planets, one of which is transit-timing variation. A planet is transiting when it passes in front of its star. If there is more than one planet in the system, there will be variations in the times at which it transits. This is due to gravitational perturbations from the planets on each other. This project focuses on the TRAPPIST-1 system, and more specifically Planet h of this system. We have the transit-timing variation (ttv) data for 7 planets in this system (named Planet b-h). We use an N-Body model to simulate the transit times, and compare this to the data to find the physical parameters of the system. An N-body model of 6 planets, and the data of 6 planets (excluding the Planet h’s data), is used to find the parameters. Then an N-body model of 7 planets is used with the data of the 6 planets. In comparing these models, we predict that the 7 body model will fit better. Although the 7th planet’s data is excluded, the signal from this planet will still be present in the ttvs of the other planets, due to the gravitational perturbations. If the model does fit better using 7 bodies in the N-body simulation but only data from 6 planets, we can see that the transit timing variations are strong enough to tell us that there is a 7th planet. This can be translated to other systems that have similar transit timing variation to see if adding another planet will create a better fit.
- Presenter
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- Kaycie Opiyo, Senior, Biochemistry, Public Health-Global Health UW Honors Program, Washington Research Foundation Fellow
- Mentors
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- Andrea Wills, Biochemistry
- Jeet Patel, Biochemistry, Molecular & Cellular Biology
- Session
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Poster Session 1
- Commons West
- Easel #13
- 11:00 AM to 1:00 PM
Embryonic development is a process of regulated growth by which all cells are initially established. Previous studies suggest that there may be differential metabolic regulation in developing embryonic tissues. However, little research has been conducted to determine the specific metabolic factors that are differentially active during development and the key regulatory elements behind these metabolic processes, such as glycolysis. Hypoxy-inducible factor 1-alpha, hif1α, is a stress-induced transcription factor that is known to regulate glycolysis under hypoxic conditions. This project aims to investigate the role of hif1α in regulating the expression of glycolytic genes in the developing axial tissues of the Xenopus tropicalis embryo. X. tropicalis is a unique model for studying embryonic development. Due to their complete early-stage embryo cleavages, inhibitors can be restricted to one side of the embryo allowing for direct comparison with an internal control on the other side of the embryo. Preliminary data from in situ hybridization suggests that the inhibition of hif1α using translation-blocking morpholinos reduces glycolytic gene expression in early-stage X. tropicalis embryos. Based on these results, we plan to further test the regionalization of glycolysis, by determining what causes hif1α to activate a glycolytic gradient in certain tissues in the X. tropicalis embryo. This research implicates hif1α as a potentially important transcriptional regulator of glycolytic gene expression during embryonic development, and can lead to discovering new ways in which differential metabolic regulation can contribute to the form and function of embryos.
- Presenter
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- Dennis Godin, Senior, Biochemistry
- Mentors
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- Devin MacKenzie, Materials Science & Engineering, Mechanical Engineering
- Oliver Nakano-Baker, Materials Science & Engineering
- Session
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Poster Session 1
- Balcony
- Easel #54
- 11:00 AM to 1:00 PM
In the midst of the pandemic, our team prototyped a volatile organic compound (VOC) sensor that seeks to detect COVID-19 using mechanisms from our noses: olfactory proteins. In taking the concept from design to testing, a massive amount of data was compiled and produced. Protein sequences were gathered from hundreds of publications on odorant binding proteins (OBPs) and cross-referenced against protein structures in the Protein Data Bank (PDB), sensor molecules were simulated in molecular dynamics, and candidates were screened using multiple experiment methods. I built and deployed the database that tied together signature disease VOCs, protein binding affinities, and protein and peptide sequences, along with molecular dynamics experimental results. In addtion, I had also pulled seqeunces from PDB and had contributed to the literature search. We demonstrate how intelligent data management enabled and accelerated a project to tackle rapid detection of COVID-19.
- Presenter
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- Magdalene Jean Brown, Senior, Microbiology
- Mentors
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- Jennifer Hyde, Microbiology, University of Washington, School of Medicine
- Sarah Hickson, Microbiology
- Session
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Poster Session 1
- Commons East
- Easel #39
- 11:00 AM to 1:00 PM
Sindbis Virus (SINV) is an alphavirus that is transmitted between birds via mosquitos and causes disease in humans after spillover events. While many alphaviruses have potential to cause severe disease such as Venezuelan Equine Encephalitis Virus (VEEV), SINV is known to cause less life-threatening but still severe and debilitating chronic illness predominantly associated with fever, arthralgia, and myalgia. Given its lower morbidity, SINV often serves as a model system for infectivity and pathogenesis studies of alphavirus. Comparison of the genomes of virulent strains (AR86) and avirulent strains (Girdwood) of SINV help us to define elements in the viral genome of SINV that contribute to pathogenesis. Previous studies have identified key pathogenesis determinants within the E2 glycoprotein and 5’ noncoding regions. Additionally, SINV contains elements in the 3’ UTR that are capable of repressing deadenylation contributing to evasion of host cell mRNA decay machinery. Our recent work with VEEV has identified additional novel RNA structures in the E1 segment that contribute to replication in macrophages and serves as a basis for further exploration of the role of RNA structure in pathogenesis and immune evasion which has been largely unexplored. By exchanging a 4000bp nucleotide segment of the 3’ end in SINV strains Girdwood and AR86, we hope that important conclusions can be made about the importance of differing genomic code and underlying RNA structure between these two strains after observing virus production, replication, and pathogenesis of constructed chimeras. This in turn can be used to further discern the genomic mutations and RNA structure requirements to shift from avirulent to virulent strains and could play an important role in predicting the mutational requirements necessary for SINV and other alphaviruses to make the jump from endemic bird/mosquito hosts to the human population as well as any mutations that contribute to greater pathogenicity.
- Presenter
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- Collin Chiu, Recent Graduate, UW Post-Baccalaureate Research Education Program
- Mentors
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- Susan Brockerhoff, Biochemistry
- Daniel Hass, Biochemistry
- Session
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Poster Session 1
- Commons West
- Easel #12
- 11:00 AM to 1:00 PM
The eyecup consists of retinal pigment epithelium (RPE), choroid, and sclera. Eyecup tissue is used as a proxy for RPE. RPE metabolism is assumed to be dominant in eyecup preparations, but this has yet to be proven rigorously. In this study we probe the contribution of retinal pigment epithelial cells to eyecup metabolism. We approach this question by determining metabolic flux in eyecup tissue from control and mice injected with 50 mg/kg of the selective RPE cell toxin sodium iodate (NaIO3). Seven days later we sacrificed mice and dissected eyecup tissue into physiological buffer, then quantified extracellular flux of glucose and lactate using spectrophotometric assays or intracellular flux using gas chromatography-mass spectrometry. We compared glucose flux in eyecups from saline-injected control mice to eyecups from NaIO3-injected mice. NaIO3 treated eyecups released 42% less lactate from media than controls (p<0.05), despite negligible glucose consumption. Surprisingly, most glycolytic and tricarboxylic acid (TCA) cycle metabolite levels were unchanged by NaIO3 injection. NaIO3 treatment did however significantly decrease levels of lactate and the TCA cycle metabolites malate and fumarate. Flux from glucose to lactate and malate was also decreased by NaIO3 treatment. Our results suggest that lactate export in the eyecup is partly due to retinal pigment epithelium metabolism. However, metabolite levels and flux were partly maintained, implying that RPE metabolism may not be dominant in the eyecup. Remaining glucose metabolism may be from endothelial cells, or microglial cells recruited to the eyecup after NaIO3 treatment. These findings may give insight into diseases affected by RPE metabolism, including some forms of retinitis pigmentosa and age-related macular degeneration. However, further analysis is still required to fully understand the role of RPE metabolism in the eyecup.
- Presenter
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- Priscilla Oppong Boatemaa, Senior, Biochemistry
- Mentor
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- Ronald Kwon, Orthopaedics & Sports Medicine, UW School of Medicine/Institute for Stem Cell and Regenerative Medicine
- Session
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Poster Session 1
- Balcony
- Easel #56
- 11:00 AM to 1:00 PM
Osteoporosis is a condition in which bones become weak and brittle which leads to increased risk of bone fractures. Approximately 60-80% of bone mineral density is determined by genetics. One gene in humans that is known to contribute to bone resorption is TNFSF11. In normal conditions, TNFSF11 encodes for receptor activator of nuclear factor kappa-B ligand (RANKL). When this ligand binds its receptor RANK, this stimulates osteoclast activity and bone resorption occurs. Zebrafish are an emerging model organism for bone biomedical research. My question is: are zebrafish an appropriate model organism to study human bone biology regarding TNFSF11 and other genes that it interacts with? If so, we can use zebrafish to study this gene and eventually apply our findings to humans. My hypothesis was that zebrafish with loss-of-function mutations in the TNFSF11 gene would exhibit high bone mass, due to a decreased level of RANKL released resulting in decreased osteoclast activity. To test this, CRISPR technology was used to mutate the TNFSF11 gene rendering it functionless. 12 wildtype and 12 mutant fish that were scanned via microcomputed tomography. I generated maximum intensity projections using a program called FIJI and then analyzed the fish projections using a computer program called FishCuT (developed by Dr. Kwon and his colleagues) which analyzes bone mineral density and measurements related to bone microarchitecture. When analyzing the data using R, I was able to find statistically significant difference between bone measurements in the wildtype and mutant fish. The mutant fish had bones that were more mineralized in comparison to the wildtype fish. These data support that TNFSF11 in humans and fish serves the same function because hyper-mineralized bones are expected from decreased bone resorption. Future studies will be directed at investigating the effects of these mutations in germline mutant fish.
- Presenter
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- Rikhia Chatterjee, Senior, Psychology, Nursing Mary Gates Scholar
- Mentors
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- Allison Webel, Nursing, School of Nursing
- Vitor Oliveira, Family and Child Nursing, Nursing
- Session
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Poster Session 1
- Commons West
- Easel #21
- 11:00 AM to 1:00 PM
Despite advances in treatment regimens for people living with HIV (PLWH), structural factors like food insecurity and housing inaccessibility continue to impact the populations’ health outcomes. As effective treatments, such as antiretroviral therapy (ART), improve health outcomes of PLWH, a new demographic of aging PLWH emerges. Older PLWH balance typical aging conditions like fragility and inflammation buildup with ART polypharmacy adherence within a complex system of social determinants of health (SDOH). SDOH are societal-driven conditions that impact prospective health outcomes such as race, socioeconomic status, access to adequate, nutritious food and shelter. Food security or the consistent access to sufficient, affordable, and healthy food is an upstream factor that greatly influences inflammation. Specific diet patterns such as high-carb and fat diets can also increase inflammation, in turn affecting health outcomes for aging PLWH. Inflammation induces negative side effects for aging PLWH on ART. Using the data collected from the four-year prospective PROSPER-HIV study, we assess the impact of food insecurity and inflammation on PLWH. We evaluate food insecurity using self-reported questions regarding food access scaled on a 5-point Likert scale. In addition, we assess diet-associated inflammation through a dietitian-led food recall. We hypothesize a strong correlation between food insecurity and aging. We expect the results to show how systemic factors significantly impact the health outcomes of PLWH. The findings have implications for policy development and resource needs for marginalized communities facing food insecurity. Uplifting marginalized communities occurs by identifying research gaps and implementing system-wide policies that address those shortcomings to diminish health disparities and promote health equity.
- Presenter
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- Aryaman Satish Gala, Senior, Neuroscience Washington Research Foundation Fellow
- Mentors
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- Azadeh Yazdan-Shahmorad, Bioengineering
- Jasmine Zhou, Bioengineering
- Session
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Poster Session 1
- Commons West
- Easel #17
- 11:00 AM to 1:00 PM
Brain stimulation has emerged as a novel treatment for stroke, a prevalent cause of death and disability worldwide. Studies in rodent models have shown that post-stroke electrical stimulation results in plasticity and neuroprotective benefits. However, techniques that were effective in rodents have rarely translated into clinically viable therapies in humans due to the significant differences in rodent and human neurophysiology and anatomy. Therefore, the goal of our study is to obtain clinically relevant outcomes that describe the mechanisms of stimulation induced plasticity in non-human primates. We combined electrophysiology and immunohistochemistry to investigate the degree of stimulation-induced plasticity and network dynamics after photothrombotic stroke in 4 macaques. We quantified the expression of two biomarkers, postsynaptic density-95 (PSD-95) and growth-associated protein-43 (GAP-43) in cells within ~10mm from the lesion penumbra. Since PSD-95 is important for the maturation of excitatory synapses and GAP-43 is involved in axonal branching and elongation, evaluating the expression of these two proteins around the lesion core allowed us to compare post-stroke synaptic and axonal plasticity in 2 control and 2 stimulated monkeys. Based on wide-field epifluorescence imaging, we identified the distance from the lesion penumbra at which there was a distinct difference in biomarker immunoreactivity in control and stimulated animals, and performed high-magnification confocal imaging to further investigate the structure of biomarker expression. Furthermore, analysis of the electrocorticography signal showed a largescale downregulation of neural activity following electrical stimulation, while Nissl staining revealed that stimulated monkeys had smaller lesion volumes than controls. These results indicate that stimulation elicits changes at both neurophysiological and cellular level, and may exert a neuroprotective effect on the post-stroke network by reducing metabolic energy consumption.. Therefore, this study investigates the effects of electrical stimulation on neuroplasticity and protection following injury, which may have a profound impact on future therapeutic interventions for stroke.
- Presenter
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- Eldana Bedru, Senior, Biology (General)
- Mentor
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- Tanya Parish, Pediatrics
- Session
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Poster Session 1
- MGH 241
- Easel #77
- 11:00 AM to 1:00 PM
Tuberculosis is still one of the leading causes of death worldwide, primarily due to multidrug-resistant tuberculosis and lengthy drug regimens. Efforts are being made to understand the mechanisms of resistance and to develop novel antimycobacterial drugs. Drug resistance has been found in the Esx-3 type VII secretion system of Mycobacterium tuberculosis, which is involved in metal ion homeostasis. Rv0474 is a transcriptional copper-responsive regulator in M. tuberculosis with a copper binding motif. Under toxic copper conditions, Rv0474 binds to the rpoB promoter, which blocks the transcription of the RNA polymerase beta subunit leading to growth arrest. Rv0474 has also been found to be involved in mediating resistance to the aminothiazole (AmT) and 8-hydroxyquinoline (8HQ) drug series. I am studying the Rv0474 homolog (MSMEG_0918) in Mycobacterium smegmatis, a fast-growing species being used as a model organism. MSMEG_0918 lacks the copper binding motif, permitting determination of whether copper binding activity is required to confer resistance. We propose that if copper binding activity is involved in AmT/8HQ resistance, overexpression, or downregulation of MSMEG_0918 would have no effect on compound activity, because it lacks the copper binding motif. To test the effect of changes in MSMEG_0918 expression on AmT and 8HQ activity, I have constructed and sequenced recombinant plasmids containing the CRISPRi backbone and sites essential for target gene knockdown. Using CRISPRi knockdown technique, I have generated strains with reduced expression of MSMEG_0918, along with overexpression strains. Using growth curve measurements and PCR analysis, I have characterized these strains. Knockdown and overexpression strains will enable me to determine growth, AmT/8HQ sensitivity and copper sensitivity. This work will determine whether MSMEG_0918 plays an equivalent role to Rv0474 in conferring resistance to AmT and 8HQ compounds. This research will provide knowledge in understanding the mechanism of resistance to AmT and 8HQ compounds in M. tuberculosis.
- Presenter
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- Aisha Cora, Junior, Electrical Engineering Mary Gates Scholar
- Mentor
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- Kelly Stevens, Electrical & Computer Engineering
- Session
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Poster Session 1
- MGH 241
- Easel #81
- 11:00 AM to 1:00 PM
The liver is a vital organ that secrets waste, metabolizes drugs, and breaks down blood to provide nutrients to the rest of the body. The liver is also the sole organ in the human body capable of regenerating after transplant surgery or treatment of cirrhosis, unfortunately the human body is not always efficient in the regenerative process, especially in the case of severe damage to the tissue. My research is centered around the use of 3D bio-printers to replicate the intricate biometric structures within the liver for artificial tissue transplantation. I focus on using CAD design through the SolidWorks program to design such intricate structures while simultaneously testing the resolution of the printer and its ability to print microscale channels within the structures. Additionally, I have focused on a heat producing circuit to promote biocompatibility and the efficiency of the printer during the printing process. Heat is a natural stimulus for gene expression and regulated temperature is vital for living cells. Implementing a component such as an induction heater and controlling its applied energy may be able to provide the necessary electrical current to heat cells at livable temperatures during the printing process and promote gene expression, without denaturing the cell. If 3D printers can effectively and efficiently be used to replicate microscale structures, scientist will be able to print artifical livers at low costs and fast rates for patients who are suffering from liver diseases.
- Presenter
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- Jeshua Reign Sales, Senior, Nursing UW Honors Program
- Mentor
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- Kendra Kamp, Biobehavioral Nursing & Health Systems, Nursing
- Session
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Poster Session 1
- Commons East
- Easel #27
- 11:00 AM to 1:00 PM
Irritable bowel syndrome (IBS) is a gastrointestinal disorder that affects more than 11.2% of the global population. Anxiety, a common comorbidity, has been shown to exacerbate the progression of IBS. This relationship between anxiety and IBS is hypothesized to be connected by the gut microbiome through the gut-brain axis. The gut-brain axis is a two-way connection, in which disruption in the gut causes an imbalance in the brain and vice versa. Therefore, understanding how bacterial populations may shift among IBS patients with anxiety compared to those without anxiety could provide insight into IBS development. We have data from a cohort of patients with IBS that includes profiled bacterial populations through 16S sequencing, demographics, and Hospital Anxiety Depression Scale (HADS) scores for anxiety. We are identifying IBS patients with and without anxiety based on their HADS score for anxiety. We are comparing the ratio of two bacterial phyla (Firmicutes and Bacteroidetes) in the gut of patients with IBS without anxiety, IBS and anxiety, and healthy controls with neither IBS nor anxiety. Additionally, we are examining other factors such as race, age, and sex. We hypothesize that individuals with IBS and anxiety will have a higher ratio of Firmicutes to Bacteroidetes compared to individuals with IBS without anxiety and healthy controls. By further understanding the relationship of the gut-brain axis, we hope to introduce new research directions to improve therapeutic options for people with IBS and anxiety.
- Presenter
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- Catalina Vanessa Zamora, Junior, Astronomy, Physics: Comprehensive Physics
- Mentor
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- Stephen Portillo, Astronomy
- Session
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Poster Session 1
- Commons West
- Easel #9
- 11:00 AM to 1:00 PM
Often, after a night of observation, the images that a telescope collects will have pairs of point sources so close together that the observer will not be able to resolve the distance between them. The observer may incorrectly conclude there is one source with the combined flux of the two real sources. This source confusion is the issue that we wanted to undertake. Accurate estimations of the flux of stars are very important: astronomers use these measurements for standard candles to measure distances to nearby celestial bodies, to discover the presence of binary systems or exoplanets, and generally in time-domain astronomy. We created computer models of two-star stellar images with varying fluxes, distances between sources, and Gaussian and Poisson distributions of noise. We then wrote maximum likelihood fits to find the threshold in which you can determine the existence of two stars. Through this method, we began to determine trends in this threshold as a function of source flux ratio and distance between sources, and the noise level. We then selected a fitting function that best modeled our simulated data, which can be used to predict the distance in which a user can tell two stars apart. In the future, we plan to test our method against existing catalogs of blended stars.
- Presenters
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- Melissa Ramirez M, Senior, Biomedical Sciences
- Sahra Abdirahman Jama, Senior, Biomedical Sciences
- Dylan Alexander Culbert, Senior, Biomedical Sciences
- Mentors
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- Sarah Alaei, Interdisciplinary Arts & Sciences (Tacoma Campus), UW Tacoma/SAM
- Erin Hull, Environmental Science (Tacoma Campus), University of Washington Tacoma
- Session
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Poster Session 1
- MGH 241
- Easel #65
- 11:00 AM to 1:00 PM
The purpose of this study is to measure the uptake of arsenic from isolated arsenic resistant bacteria and mixed cultures derived from periphyton that were collected from a local lake with high arsenic concentrations. Periphyton is a complex community of microorganisms, plants, algae, and debris that is found attached to sediments, plants and other surfaces of most aquatic environments. Our colleagues discovered that periphyton collected from Lake Killarney captures arsenic present in the contaminated lake waters. Studying arsenic resistant organisms can help researchers understand their interaction with arsenic and their possible uses for bioremediation, since arsenic contamination in aquatic environments is a worldwide problem. We hypothesized that bacterial members of the periphyton collected from Lake Killarney are responsible for arsenic uptake. Therefore, our study aimed to isolate arsenic resistant bacteria from the periphyton collected and test their arsenic uptake capacity from growth medium. After isolating and growing these arsenic resistant bacteria and mixed cultures with different nutrient conditions, growth periods, and arsenic concentrations, results showed low arsenic concentrations in all the samples. This might indicate that these microorganisms are not responsible for arsenic uptake, but may only be able to tolerate high levels of arsenic. These findings suggest that the isolated bacteria and mixed cultures we tested might not be the organisms that are responsible for arsenic uptake in contaminated water. Therefore, our future research will focus on expanding the taxonomic diversity of periphyton bacteria cultured and tested for arsenic uptake. For example, we can culture Cyanobacteria, a group of photosynthetic bacteria that are abundant in periphyton and were not included in our previous studies. We anticipate different results from Cyanobacteria because of their unique energy requirements and may ultimately be responsible for the heavy arsenic uptake discovered in periphyton.
- Presenters
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- Hunter Furutani, Senior, Biology (Physiology) Mary Gates Scholar
- Thy Nguyen Minh (Thy Le) Le, Junior, Biology (Molecular, Cellular & Developmental)
- Mentor
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- Mary Beth Brown, Rehabilitation Medicine
- Session
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Poster Session 1
- MGH 241
- Easel #73
- 11:00 AM to 1:00 PM
Duchenne muscular dystrophy (DMD) is a severe muscle wasting disease caused by deficiency of the protein dystrophin and affects approximately 1/3500 boys. Basic/translational studies of exercise effects in DMD have been conducted for decades, but with often contradictory results concerning benefit vs. detriment especially for cardiac muscle. However, these studies have been exclusively performed in a mouse model which does not fully recapitulate the DMD cardiac phenotype. Here we present the first known characterization of exercise and physical function in a new DMD mdx rat model that better mimics human DMD. DMD mdx rats (n=6) and healthy, sibling wild types (WT, n=9) were compared in this study. I performed a battery of functional and exercise tests when the rats were at 14-15 weeks of age, including max treadmill endurance, volitional wheel running distance, forelimb grip strength, and in-vivo hindlimb force testing. Total work performed in treadmill endurance testing was lower for DMD mdx (2.6±0.3 Kpm) vs. WT (29.3±2.2 Kpm), p<0.001. 24-hr wheel running distance was lower for DMD mdx (702±65m) vs. WT (1038±66m), p<0.001. Forelimb grip strength was lower for DMD mdx (211±16g) vs. WT (318±13g), p<0.001. Finally, in electrically-stimulated in-vivo hindlimb force testing, both muscular endurance (% of initial force at 200-s) and peak torque (at 120Hz) were less in DMDmdx (55±2%, 0.33±0.02nM*m/g) vs. WT (69±2%, 0.45±0.030nM*m/g) p<0.01. Capacity for volitional and forced exercise is severely impaired in the novel DMD rat, congruent with limitations observed in functional muscular strength and endurance. Ongoing work is examining exercise adaptations and cardiac responses in this model which may better represent training responses in DMD patients and be useful for establishing exercise guidelines in this population.
- Presenter
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- Daanya Siddiqui, Sophomore, Pre Public Health UW Honors Program
- Mentor
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- Kelly Diamond, Seattle Children's Research Institute
- Session
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Poster Session 1
- MGH 241
- Easel #67
- 11:00 AM to 1:00 PM
Genetic diseases affecting the skeletal system present with a wide range of symptoms and phenotypes that make diagnosis and treatment difficult. One such disease, Bruck Syndrome, is a rare form of osteogenesis imperfecta, or brittle bone disease, and has been associated with the PLOD2 gene in human genome-wide association studies. Due to advances in 3D phenotyping and CRISPR gene editing, zebrafish have become a good model system for assessing the genetic contributions to skeletal disease. While the phenotype of the homologous zebrafish gene (plod2) has been elucidated in the axial skeleton, the effects on the craniofacial skeleton have not yet been quantified. The objective of this study was to quantify how plod2 crispant zebrafish skulls differ from their wildtype siblings. We used the open-source 3DSlicer software to place 21 traditional landmarks and 372 pseudolandmarks on micro-CT scans of 22 zebrafish (11 crispant and 11 wildtype), and used geometric morphometric methods implemented in R to analyze the complex shape differences between the two groups. Preliminary results show that plod2 crispants have skulls that are wider and shorter than their wildtype siblings. The plod2 crispant fish as a group exhibit more variation than wildtype fish across the morphospace, which may be consistent with the broad array of phenotypes associated with PLOD2 mutations and Bruck Syndrome in clinical observations. Using a zebrafish model and 3D data pipeline could enable rapid screening to investigate the causes of other human skeletal diseases. In addition to these clinical implications, this project contributes to an understanding of the genotype to phenotype pipeline, one of the most active areas of biological inquiry.
- Presenter
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- Lewis Back, Senior, Microbiology
- Mentors
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- Helen Chu, Medicine
- Jennifer Logue, Allergy and Infectious Diseases
- Session
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Poster Session 1
- Commons East
- Easel #26
- 11:00 AM to 1:00 PM
The Xpert Xpress SARS-CoV-2 assay is a rapid RT-PCR test developed by Cepheid during the early stages of the COVID-19 pandemic. However, with the emergence of novel variants, concerns have been raised about possible diminished sensitivity of RT-PCR assays that were developed using earlier strains of SARS-CoV-2. We sought to address these concerns by testing known positive Alpha, Beta, Delta, Gamma, and Omicron SARS-CoV-2 samples which, at the time of testing, were classified by the CDC as variants of concern (VOCs). Since these samples were stored in TE buffer, a medium not formally evaluated for use in the Cepheid Xpert Xpress SARS-CoV-2 assay, we also tested positive controls using both TE buffer and the standard viral transport medium (VTM). All samples were run using the Xpert Xpress SARS-CoV-2 assay per Cepheid's provided instructions. Testing of known VOC positives revealed no substantial reduction of PCR sensitivity when compared to a clinically certified RT-qPCR assay. Comparison of TE and VTM samples also revealed no reduction in performance when using TE buffer, validating the use of TE buffer to store SARS-CoV-2 samples. Our findings show that the mutations present in the current circulating VOCs do not lead to false negative patient results, indicating the Xpert Xpress assay may still be used for diagnostic testing.
- Presenter
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- Rachelle Nhi Tran, Senior, Neuroscience, Communication
- Mentors
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- Charles Chavkin, Pharmacology
- Carlie Neiswanger, Pharmacology
- Session
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Poster Session 1
- Balcony
- Easel #47
- 11:00 AM to 1:00 PM
It is established that stress can promote addictive drug use and relapse in humans with substance use disorders, thus understanding the stress mechanisms responsible is likely important in developing effective treatments for drug addiction. One effect of stress is the stress-induced release of endogenous dynorphin neuropeptide systems in the brain which activate kappa opioid receptors, that in turn stimulate p38 mitogen-activated protein kinase pathway (MAPK). P38 MAPK activation results in the dysphoria experienced during a stress response. We want to learn more about how p38 affects mood and develop efficient CRISPR techniques to manipulate p38 activation. Other techniques of silencing p38 have been used but come with disadvantages. With a CRISPR approach, virus expressing excision sequences for gene editing can be injected into transgenic mice encoding Cre recombinase in a cell-type specific manner. In this study, I tested a CRISPR/Cas9 virus (AAV1-Flex-SaCas9-sqMapk14), designed to excise the p38 gene. As expected, wild type male mice developed significant conditioned place aversion to the KOR agonist, U50,488. In contrast, mice injected with virus bilaterally in the VTA did not acquire aversion. This finding suggested that successful excision of p38 in VTA had occurred. To confirm with immunohistochemistry, I stained CRISPR injected and U50,488 activated brain slices with p38 and phospho-p38 selective antibodies. We expect slices from CRISPR treated mice to show fewer positive cells in the VTA as compared to controls. My characterization of these antibodies is on-going, but preliminary results suggest differences in CRISPR injected and wild type mice. With the development of a technology allowing for efficient manipulation of p38 MAPK within cell site and brain regional specificity, we hope to provide further insight to the stress response and to better understand its role in addiction.
- Presenter
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- Amy Guo, Senior, Neuroscience
- Mentors
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- Jonathan Weinstein, Neurology
- Ashley McDonough, Neurology
- Session
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Poster Session 1
- MGH 241
- Easel #83
- 11:00 AM to 1:00 PM
Ischemic preconditioning (IPC) is a phenomenon in which a brief ischemic event confers protection against subsequent prolonged ischemia, such as stroke. Understanding the mechanisms underlying this endogenous neuroprotective response could lead to advances in stroke therapeutics. Most experimental rodent models of stroke focus on injury to grey matter. However, injury to the white matter (WM) is a significant component of ischemic stroke in human patients and is poorly understood. Our laboratory has shown that microglial innate immune signaling is required for WM IPC-induced protection. The nodes of Ranvier (NoR) are critical WM structures that control conductance and action potential propagation along axons. Recent studies have shown elongation of the NoR in the context of WM injury and disease. The mouse optic nerve (MON) is a fully myelinated central nervous system WM tract. We expose MONs to a brief in vivo ischemic event to induce IPC. Seventy-two hours later, we isolate MONs and expose them to ex vivo oxygen-glucose deprivation (OGD) to mimic stroke. Using MONs from mice that underwent pharmacologic depletion of microglia followed by in vivo IPC and then ex vivo OGD, I performed immunohistochemistry with Nav1.6 and Caspr antibodies to label the NoR and image them with a confocal microscope. NoR size, diameter, and length are quantified with ImageJ in conjunction with an in-house MATLAB script. I hypothesize that IPC will protect and conserve structural parameters of the NoR from OGD-induced injury and that this protection will be eliminated by microglial depletion. Our preliminary data show feasibility of this project (i.e., all the methods to carry out this work are in place) and we can generate precise and reproducible measurements of the NoR in MONs. Findings from this project will provide a better understanding of the mechanisms by which microglia mediate IPC-induced axonal protection in WM.
- Presenter
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- Camille Elise Groneck, Senior, Biology (Molecular, Cellular & Developmental)
- Mentors
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- Christine Disteche, Laboratory Medicine, Pathology
- Gala Filippova, Pathology
- Session
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Poster Session 1
- Balcony
- Easel #58
- 11:00 AM to 1:00 PM
Late Onset Alzheimer’s Disease (LOAD) is a common neurodegenerative disorder that affects ~5 million Americans. A primary risk factor in sporadic LOAD is the apolipoprotein E (APOE) gene, with carriers of the É›4 allele (É›3/É›4 heterozygotes or É›4/É›4 homozygotes) being at highest risk compared to É›3/É›3 homozygotes. LOAD is strongly sex-biased, with increased frequency in women (XX), but also increased severity in men (XY). The impact of genetic sex differences combined with APOE genotypes has not been studied. Our goal is to build models with various sex chromosome complements and APOE genotypes to understand interactions of these genetic factors in sex differences in LOAD pathology. The Disteche lab has derived isogenic pairs of human induced pluripotent stem cell (iPSC) lines with different numbers of sex chromosomes, e.g. XY/XXY, X0/XX, or X0/XXX. These pairs are genetically identical, save for their sex chromosomes. My project is to use CRISPR/Cas9 editing to generate different APOE genotypes in these paired lines. Starting from an XXY/XY isogenic pair from a heterozygote É›4/É›3, I am generating É›3/É›3 clones with either the XXY or XY genotype. To accomplish this, I transfect iPSCs with Cas9 and APOE-specific guide RNAs in the presence of a single-stranded DNA donor that contains the É›3 allele. After DNA cleavage and replacement, edited É›3/É›3 single-cell clones and control É›4/É›3 clones are identified using PCR and DNA sequencing, followed by karyotyping and verifying the absence of off-target effects and epigenetic instability. The new isogenic iPSC lines with different APOE genotypes and sex chromosome complements will be differentiated to LOAD-relevant cell types, including neurons, microglia, and cortical organoids, for transcriptomic and functional analyses to better understand how APOE genotypes and genetic sex interact to modulate risk in LOAD pathology.
- Presenter
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- Roshni Sabhaya, Senior, Public Health-Global Health
- Mentors
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- Edward Kelly, Pharmaceutics
- Jade Yang, Pharmaceutics
- Session
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Poster Session 1
- Balcony
- Easel #46
- 11:00 AM to 1:00 PM
Microphysiological systems (MPS) or Organs-on-a-chip (OOC) are novel in vitro models being used to understand human disease and support drug development. Using a Kidney MPS, we are investigating potential causal factors, Ochratoxin A (OTA) and heat stress, for a disease state termed Chronic Kidney Disease of Unknown Etiology (CKDu). Thus far, we have conducted experiments treating human primary proximal tubule cells (PTECs) with OTA +/- transient heat stress (39 degrees for 24 hours) in conventional 2D cultures and MPS to understand the synergistic nephrotoxic effects of the two treatments. We found that gene expression of CDKN1A is increased in cells treated with OTA +/- heat. CDKN1A codes for the protein p21, which inhibits cyclin dependent kinases responsible for regulating the cell cycle. Chronic cell cycle arrest in G1/S and G2/M checkpoints induced by high levels of p21 can lead to injury and subsequent development of CKD. To further probe this finding, we are developing a protocol to increase the efficiency of obtaining sections of the kidney tubule from our MPS to be used for the purpose of immunocytochemistry (ICC) staining. A reagent called Optimal Cutting Temperature (OCT) solidifies the tissue into a block so that it can be cut using a cryostat. Then, we can stain OTA and heat-treated kidney tubule cross sections for Ki67, a marker for cell proliferation, and p21 using ICC. The expected results should demonstrate a higher expression of p21 in the cytoplasm and less staining of Ki67 in OTA +/- heat treated tissue in the nucleus. We have optimized antibody concentrations for staining and observed appropriate localization of Ki67 in the nucleus and p21 in the cytoplasm in 2D cell culture samples. By understanding OTA’s mechanism of toxicity, preventative interventions can be implemented to mitigate CDKu risk in impacted regions around the world.
- Presenter
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- Juhee (Ines) Sohn, Senior, Speech & Hearing Sciences Mary Gates Scholar
- Mentor
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- Bonnie Lau, Otolaryngology - Head And Neck Surgery
- Session
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Poster Session 1
- Commons East
- Easel #31
- 11:00 AM to 1:00 PM
Though there are roughly 2 million people of Korean descent in the U.S., there is limited understanding of bilingual Korean-English infants’ and toddlers’ language development. Assessment of bilingual language development can be more challenging due to the lack of language-specific research. Caregiver reports of language abilities may be one way to approach measuring language development in bilingual infants and toddlers. This remote study investigates how caregiver-reported measures of receptive and expressive language differs in English versus Korean for typically developing Korean-English bilingual infants and toddlers. Participants were recruited through both online flyers and physical flyers in the greater Seattle area. To obtain caregiver-reported measures of language skills, the “Understands”, “Understands and Says” of the Korean and English MacArthur-Bates Communicative Development Inventories (CDI) were administered. The “Listening and Understanding” and “Talking” subscales of the English Vineland Adaptive Behavior Scales – Third Edition (Vineland-3) were also administered to each bilingual caregiver. A thorough background questionnaire defining each infant’s and toddler’s language exposure and Hollingshead Four Factor Index of Socioeconomic Status score were collected to facilitate interpretation of our findings. Scores from the Korean CDI, English CDI, and English Vineland-3 were age-matched and compared. With greater exposure to Korean at home, we expect higher Korean receptive and expressive language scores compared to English. Findings from this work may offer important insight into expected differences between a Korean-English bilingual child’s Korean and English language skills in typical bilingual language acquisition and may potentially shed light on early signs of speech and language delays in bilingual children. I participated in the study design, participant recruitment, and data presentation for this study.
- Presenter
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- Noor Zia (Noor) Bhatti, Senior, Biochemistry
- Mentors
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- Elena Vayndorf, Laboratory Medicine, Pathology
- Matt Kaeberlein, Pathology
- Session
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Poster Session 1
- MGH 241
- Easel #82
- 11:00 AM to 1:00 PM
With age, proteins have an increased tendency to misfold, and the cellular processes that are meant to repair these aggregates begin to lose function. Alzheimer’s disease (AD) is partially characterized by the presence of neurofibrillary tangles and beta-amyloid senile plaques. These aggregates have been linked to neurotoxicity and the successive degeneration of neurons. We used a model organism, C. elegans, a nematode that has functional counterparts in humans, a fast life cycle, and transparent body plan. The GMC101 strain of C.elegans expresses the full-length human amyloid-beta protein, and this expression leads to quick and progressive paralysis in animals when they are temperature upshifted to 25°C at the fourth larval stage (pre-adulthood). The goal of this project is to test whether we can extend this model by inducing the paralysis phenotype, and by proxy, beta-amyloid accumulation, when animals are upshifted to a restrictive temperature in mid and late adulthood rather than pre-adulthood. Since AD is primarily a disease of old age in humans, recapitulating the beginning of symptoms in older age animals would make this model more relevant to late-onset AD. Based on preliminary results, we hypothesized that when they are upshifted to a restrictive temperature in mid or late adulthood, animals would paralyze as quickly as they do at pre-adulthood. If true, this would suggest that we can use the GMC101 model as a screening tool for late-onset AD. To test our hypothesis, I shifted animals of the GMC101 and control strain to the restrictive temperature at various adult ages and screened for paralysis using the WormBot system developed in our laboratory. I will describe results from this set of experiments and discuss preclinical screening strategies we are currently pursuing using this model.
- Presenter
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- Haleigh Randall, Senior, Psychology
- Mentors
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- Mary Larimer, Psychiatry & Behavioral Sciences, Psychology
- Jason Kilmer, Psychiatry & Behavioral Sciences
- Jessica Canning, Psychology
- Session
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Poster Session 1
- Commons East
- Easel #32
- 11:00 AM to 1:00 PM
In 2020 marijuana use among college students was at an all-time high with 44% reporting using in the past year. Research demonstrates individuals with ADHD are at risk for increased marijuana use later in life. Additionally, some studies demonstrate self-reported symptoms of ADHD among undiagnosed college students prospectively relate to increased marijuana use, which was mediated by changes in perceptions of typical peer marijuana use (i.e., descriptive norms). However, this is complicated by frequent marijuana use being linked to issues with attention, impulsivity, and memory; all captured by self-reported ADHD measures. This study will evaluate bidirectional relations between ADHD-related symptoms, marijuana descriptive norms, and marijuana use among college students. Data collection is in progress and will be completed in March 2022 as part of a larger study. Students completed assessments at baseline, 6 months, and 12 months. A cross-lagged panel model will be conducted in R using the lavaan package to evaluate the bidirectional associations over a 1-year period, as well as test whether marijuana norms at 6 months mediate the longitudinal associations between ADHD-related symptoms and marijuana use from baseline to 12 months. We hypothesize those reporting more ADHD-related symptoms will use marijuana more frequently 6 months later. Additionally, those who use marijuana more frequently will report more ADHD-related symptoms after 6 months. We also hypothesize that those experiencing more ADHD-related symptoms at baseline will have increased marijuana norms at 6 months and subsequent greater marijuana use at 12 months. This study attempts to disentangle the bidirectional associations between ADHD-related symptoms, marijuana norms, and marijuana use over a one-year period. Conclusions and future directions for research will be presented. Additionally, this study may have implications for norms-based interventions to better address memory, impulsivity, and other ADHD-related symptoms in association with marijuana use and perceptions.
- Presenter
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- Natalie Au, Senior, Biology (Molecular, Cellular & Developmental)
- Mentors
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- James Bennett, Pediatrics
- Dana Jensen, Seattle Children's Research Institute, Seattle Children's Research Institute
- Session
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Poster Session 1
- Commons East
- Easel #34
- 11:00 AM to 1:00 PM
Vascular malformations (VM) are congenital malformations of veins, arteries, capillaries, and/or lymphatic vessels. They are primarily caused by post-zygotic activating mutations within oncogenes of the PI3K-MTOR-RAS-MAPK pathways. The major types of VM include capillary malformations (CM), lymphatic malformations (LM), venous malformation (VeM), and arteriovenous malformations (AVM). Identifying the molecular etiology of VM is important, as there are increasingly targeted medical therapies. However, current molecular diagnosis requires surgically excised tissues, as the causative mutations are somatic and not present in blood cells. Cell-free DNA (cfDNA) is an emerging diagnostic analyte that is already in wide use in cancer diagnosis and prenatal genetic screening. Given the role of mutant endothelial cells in the development of VM and their proximity to blood and lymphatic fluid, we hypothesized that mutant cfDNA will be detectable in plasma or cyst fluid from individuals with VMs. This project aims to develop a non-invasive methods to identify genetic causes of VM without surgery to reduce the costs and risks relating to surgical biopsy. Utilizing digital droplet polymerase chain reaction (ddPCR) technology, we are able to amplify cfDNA fragments to detect specific well known “hotspot” DNA mutations in PIK3CA, BRAF, TEK, and others. We continue to determine the sensitivity of allele-specific cfDNA analysis in individuals with known, tissue-based mutations from a retrospective cohort, and test prospective cfDNA from VM patients with unknown mutations using both ddPCR screening and/or a high sensitivity gene sequencing panel. Ultimately, our hope is to bring these techniques into the clinical arena to increase the possibility of medical therapies for individuals with vascular malformations.
- Presenter
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- Townson Cocke, Sophomore, Pre-Sciences
- Mentor
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- David Marcano, Statistics
- Session
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Poster Session 1
- MGH 241
- Easel #74
- 11:00 AM to 1:00 PM
We analyze the International Study of Asthma and Allergies in Childhood (ISAAC) data for Seattle and apply statistical clustering methods to identify asthma phenotypes. This study focuses on Phase One of ISAAC, conducted between 1994 and 1995, in which approximately 3,000 adolescent asthma patients and their parents filled out detailed questionnaires about asthma, rhinitis and eczema symptoms. Asthma is a heterogeneous disease, meaning it has a highly variable clinical presentation, so in order to identify distinct phenotypes, we apply a hierarchical bottom-up clustering method on categorical variables from the questionnaire and verified cluster stability using various linkage methods. The clusters we obtained were distinguished primarily by differences in the severity of respiratory symptoms and the presence of eczema symptoms. After assessing the accuracy of several alternative clustering methods, we conclude by comparing the clusters identified by this analysis to clinically recognized asthma phenotypes. Accurate characterization of asthma phenotypes is important for informing management and treatment strategies for urban adolescents with asthma. Techniques that identify severe phenotypes in population data sets can help target treatment to those who may benefit from high-intensity treatment regimens, careful attention to potential exposures to environmental allergens, and specialist level care.
- Presenter
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- Ashi Jain, Junior, Biochemistry
- Mentors
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- Andrea Wills, Biochemistry
- Avery Angell Swearer, Biochemistry
- Session
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Poster Session 1
- Commons West
- Easel #14
- 11:00 AM to 1:00 PM
Unlike mammals, western clawed frog (Xenopus tropicalis) tadpoles are able to completely regenerate their spinal cord after tail amputation. This complete spinal cord regeneration is due to the ability of their neural progenitor cells (NPCs) to differentiate into neurons successfully. Our research focuses on two transcription factors—Meis1 and Pbx3– that are upregulated by regenerating neurons and are necessary for successful regeneration. We aim to elucidate how these two proteins are working together to guide successful spinal cord regeneration in X. tropicalis tadpoles. I am specifically investigating Meis1 and Pbx3 splice variant expression during neural regeneration. Previous work in mice found that different known splice variants of Pbx3 have different expression patterns. While X. tropicalis has two predicted splice variants each of Meis1 and Pbx3, nothing is known about their individual expression or function. I sought to fill in this gap by looking at Meis1 and Pbx3 splice variant expression in different tissues and over regenerative time. Based on previous research in mice, I hypothesize that both splice variants of Meis1 and Pbx3 have different gene expression patterns in different cell types over regenerative time. I aimed to investigate this hypothesis by doing two experiments. My first experiment was to study the expression of each splice variant over regenerative time by performing qPCRs in order to look at the presence of splice variant mRNA in uninjured, 24, and 72 hours post-amputation (hpa). For my second experiment, I am making in situ hybridization probes specific for each splice variant to identify their tissue-specific expression patterns. The experiment is being performed over regenerative time to observe how expression in tissues changes at the same time points hpa used in the first experiment.
- Presenter
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- Daniel Ong, Senior, Biochemistry, Chemistry Mary Gates Scholar
- Mentors
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- Andrea Wills, Biochemistry
- Jeet Patel, Biochemistry, Molecular & Cellular Biology
- Session
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Poster Session 1
- Commons West
- Easel #15
- 11:00 AM to 1:00 PM
While humans cannot regrow a limb after amputation, animals like the Xenopus tropicalis tadpoles can fully regenerate their limbs. How metabolic pathways are reprogrammed to support the demand for anabolic building blocks needed for regeneration is still not understood. Our group has found that while regeneration increases glucose intake, tadpole tail regeneration does not depend on glycolysis for precursors to support proliferation. This result suggests a redirection of glucose flux to pathways other than glycolysis, specifically the pentose phosphate pathway (PPP). Previously, I inhibited glucose-6-phosphate dehydrogenase (G6PD), a key enzyme in the PPP, with the pharmacological antagonists dehydroepiandrosterone (DHEA) and G6PDi and showed that inhibitor-treated tails are much shorter compared to dimethyl sulfoxide (DMSO) controls. From these results, I predicted that the PPP is required throughout regeneration to support increased cell proliferation rates. To investigate if the PPP is required for increased cell proliferation during regeneration, I performed phosphohistone-H3 (pH3) immunohistochemistry to label mitotic cells. Histone-H3 is phosphorylated at the start of mitosis, making pH3 a marker for actively dividing cells. The results showed that amputated tadpoles with inhibited PPP have reduced cell proliferation rates compared to controls, confirming that the PPP is required to support rapid cell proliferation during regeneration. To determine if the PPP has a shorter critical activation window during regeneration, I treated amputated tadpoles with PPP inhibitors while varying the length and start-time of treatments. PPP-inhibited tadpoles have significantly shorter tails as treatment length increases, regardless of the start time for PPP inhibition. This result suggests that PPP activity must be sustained throughout regeneration to fully regrow the tail. My work has therefore identified the PPP as a previously unknown but critical metabolic pathway promoting tadpole tail regeneration. This insight advances our understanding of how metabolic reprogramming provides the carbon building blocks for regeneration.
- Presenter
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- Eric Gery, Senior, Bioen: Nanoscience & Molecular Engr Levinson Emerging Scholar
- Mentors
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- Charles Murry, Laboratory Medicine and Pathology
- Aidan Fenix, Laboratory Medicine and Pathology
- Session
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Poster Session 1
- Balcony
- Easel #60
- 11:00 AM to 1:00 PM
In response to various forms of stress such as heat shock and oxidative stress, cells produce aggregates of mRNA and proteins called stress granules. These granules sequester mRNA and signaling proteins to promote cell survival. Stress granules are beneficial in the short term, but the chronic presence of stress granules can be cytotoxic and cause hyperaggregation of misfolded proteins. After a heart attack, the heart experiences a lack of oxygen, which creates free radicals and metabolic stress. Whether the stress response is involved in this process is unknown, as most research on stress granules and their role in disease comes from work in neuronal and cancer cells. To test whether the stress granule response is conserved across cell types, I cultured cancer cells, pluripotent stem cells, and stem cell-derived cardiomyocytes (heart muscle cells) and subjected these cells to various stresses, including sodium arsenate poisoning, heat shock, and oxidative stress. I imaged each treatment using immunofluorescence and quantified the number of stress granules per cell. The sodium arsenate treatment induced stress granule formation in all three cell types, but surprisingly, the heat shock and oxidative stress treatments had cell type-specific stress granule responses. It is widely believed the stress response is conserved across a range of cell types, but these results indicate some stress pathways differ between cardiomyocytes, cancer cells, and stem cells. To test how stress granules impact cardiomyocyte function, I generated stem cells with knockouts of the two genes required for stress granule assembly: G3BP1 and G3BP2. In future studies, I will differentiate these cells into cardiomyocytes and test whether the inability to form stress granules affects their ability to survive in response to stress. This work is important in understanding the impact stress granules have on the regeneration of heart cells in damaged heart tissue.
- Presenter
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- Kylie Ning Knowles, Senior, Political Science UW Honors Program
- Mentors
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- Rebecca Thorpe, Political Science
- Ryan Goehrung, Political Science
- Session
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Poster Session 1
- Commons East
- Easel #42
- 11:00 AM to 1:00 PM
In the United States of America, the nonprofit sector has grown substantially over the last five decades. Despite this, social issues like houselessness appear to be as pervasive as ever. This research seeks to analyze the relationship between the growth of nonprofits focused on the housing crisis and the unhoused population. I hypothesize that the growth of housing-focused (HF) nonprofit organizations will not result in lower numbers of homeless individuals. My underlying theory is that nonprofits, constricted by the structure of the sector, are frequently unable to address structural causes of houselessness. The reliance nonprofits have on wealthy donors is a primary factor. This power dynamic is part of a greater system often referred to as the nonprofit industrial-complex. The growth of HF nonprofits is collected using Candid and measured using nonprofit revenue data from the Internal Revenue Service. Houselessness is measured using data from the United States Department of Housing and Urban Development. To test this hypothesis, I run a multivariate regression analysis between my two variables across two cities: Seattle, Washington and New York City, New York from 2012 to 2020 (a nine-year period). I control government funding, housing costs, poverty and unemployment. I expect to find increasing numbers of unhoused individuals despite HF nonprofit growth. This research does not advance a casual relationship, but contributes to the theoretical discussion as to whether nonprofits create transformative social change and provides rigorous empirical evidence supporting this theory.
- Presenter
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- Elizabeth Anne Gilson, Senior, Biochemistry
- Mentor
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- Selena Schattauer, Pharmacology
- Session
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Poster Session 1
- Balcony
- Easel #48
- 11:00 AM to 1:00 PM
Peripherally restricted drugs are extremely appealing to drug developers because they remain effective while minimizing adverse side effects such as addiction. This is possible because the drugs stay out of the central nervous system, which allows them to have an impact on the body without affecting the brain. I examined Klight 1.2A transfected Neuro 2a cells under a fluorescent microscope when treated with three different drugs that are thought to be peripherally restricted. Klight is a Kappa opioid receptor agonist sensor that makes the cells fluoresce when they are activated. Neuro 2a cells are a neuroblastoma mouse cell line that is used to study signaling pathways. When I imaged these cells under different drug treatments I quantified the fluorescence. I then compared that quantity to the fluorescence of the cells when treated with U50, a full agonist, at maximal activation. I repeated this procedure for both a high and low drug concentration for each drug. The first two drugs this study examined are Difelikefalin and TP-2021 which are anti-itch drugs from Titan Pharmaceuticals. The third is Asimadonline which plays a role in hot flashes during menopause. My results of these experiments showed significant dose-dependent activation of KLight for all three drugs. These in vitro experiments on plated cells will provide a baseline which can then be compared to the in vivo fluorescence in the brain. In future experiments, when we compare the in vitro and in vivo levels of fluorescence, we can determine if the drugs are peripherally restricted or not.
- Presenter
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- Madalyn Taylor (Maddi) Hardy, Senior, Mechanical Engineering (Biomechanics) Mary Gates Scholar
- Mentors
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- Nathan Sniadecki, Mechanical Engineering
- Ava Obenaus, Mechanical Engineering
- Session
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Poster Session 1
- Balcony
- Easel #53
- 11:00 AM to 1:00 PM
Platelets aggregate at the site of injury to stop bleeding, but disruptions to hemostasis can cause bleeding or thrombosis. Studying platelet-plug area and contractile force can predict whether bleeding or thrombosis is likely to occur. Microfluidic devices, composed of polydimethylsiloxane (PDMS), are used to study these biomechanics by inducing aggregation through shear flow. As blood flows through the device, the platelets pass over a rigid block in the channel which causes platelets to activate, deflecting a flexible post within the channel. This deflection is used to calculate the platelet forces based on the material properties of the PDMS. These microfluidic devices are single use and require a fabrication process that spans multiple days. Additionally, creating duplicate silicon master molds is a laborious and expensive process that necessitates cleanroom training. I am engineering and implementing a more efficient process for the fabrication of these devices, while limiting the use of the master mold that undergoes long-term wear from repeated uses. My focus is on improving the efficiency of the initial negative mold creation process by using a different material, urethane resin, to replicate the master, which allows us to make more negatives simultaneously without needing to fabricate another silicon master. To compare the devices produced using the onyx master with the silicon master, I am running three blood experiments, each with varying levels of antibodies, on two devices fabricated by the onyx and silicon masters. The aggregation sizes and forces are being observed between each of the experiments. I expect the results to be similar within a degree of certainty, proving the onyx master is equivalent to the silicon master and can be used to increase microfluidic device production and increase the availability of platelet biomechanics studies.
- Presenter
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- Anisa Ashraf, Senior, Bioen: Nanoscience & Molecular Engr Mary Gates Scholar
- Mentors
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- Suzie Pun, Bioengineering
- Melissa Ling, Molecular Engineering and Science
- Session
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Poster Session 1
- Commons East
- Easel #41
- 11:00 AM to 1:00 PM
Despite recent advancements in cancer treatment, the overall 5-year survival rate for glioblastoma, a very aggressive brain cancer, is only 7.4%. The greatest challenge in brain cancer treatment is the blood-brain barrier (BBB), a physical barrier that protects the central nervous system (CNS) from circulating solutes in the blood but prevents therapeutics from entering the brain space. While surgery is the gold-standard treatment, this procedure is high-risk. Thus, research into nanoscale injectable therapies that can cross the BBB to treat brain tumors is critical as they are non-invasive and can be targeted to specific cells. The Pun Lab is developing nanoparticles to cross the BBB via receptor-mediated transcytosis (RMT) via the transferrin receptor. To further this research, I developed a cellular model of the BBB to assess the ability of different nanoparticle formulations to cross the BBB in vitro. Specifically, I developed a Transwell culture of brain endothelial cells, which are the main regulators of the BBB due to tight junction formation. I investigated additional targeting ligands through analysis of a polymer panel to improve transport through the BBB. Finally, I will validate endosomal escape through the barrier with confocal microscopy. Through this project, I (i) developed a representative in vitro model of the BBB, (ii) explored alternative receptor-binding ligands and (iii) validated the mechanism through which the nanoparticles travel to enhance nanoparticle transport through the BBB. Ultimately, these three aims enable better direction of nanoparticle behavior in vivo and across the BBB. Non-invasive nano-therapeutics are critical to the future treatment of glioblastoma as current treatment options are limited, extremely risky, and lack long term efficacy.
- Presenters
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- Maia Kent, Senior, Anthropology: Medical Anth & Global Hlth, Anthropology: Human Evolutionary Biology
- Noah Ben-Chaim Greco, Senior, Anthropology: Medical Anth & Global Hlth, Anthropology: Human Evolutionary Biology
- Mentor
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- Melanie Martin, Anthropology
- Session
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Poster Session 1
- Commons West
- Easel #6
- 11:00 AM to 1:00 PM
Cortisol, the primary stress hormone, has important effects on human sleep patterns and sleep quality. An increased presence of cortisol elicited from stress disrupts biological rhythms, affecting both mood and behavior. Since publications in large journals have historically focused on measuring cortisol levels in the context of alcohol abuse, there is not much data on how cortisol levels may be affected by “social drinking.” We aimed to study if social alcohol consumption bidirectionally influenced the measured cortisol levels in a cohort of 11 students enrolled in BIO A 454/455. Students self-collected saliva three times per day, providing two samples in morning to evaluate the cortisol awakening response, and one sample at night; this procedure was paired with a number of surveys where participants recorded daily mood, behaviors, and sleep. Cortisol concentrations were determined in the BIO A 454/455 laboratory at the University of Washington using an enzyme immunoassay protocol designed for use with saliva samples. Students of BIO A 454/455 evaluated their own saliva samples using the salivary cortisol EIA protocol. We aggregated collection averages across subjects, performing t-tests between groups of individuals who self-reported drinking at least one alcoholic beverage within each 24-hour period, and those who did not. Our results demonstrated a general variation of measurable cortisol levels in each individual, but analysis did not produce statistically significant figures between cohorts. A lack of literature on the connections between alcohol consumption and cortisol response still persists. Therefore, while our data proved to be too narrow to extrapolate conclusive results, we hope the format of this study can be used as a framework to explore the topic further.
- Presenters
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- Katie Chan, Senior, Nursing UW Honors Program
- Amanda Yang - She Her, Fifth Year, Nursing
- Mentor
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- Ira Kantrowitz-Gordon, Family and Child Nursing
- Session
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Poster Session 1
- Commons East
- Easel #24
- 11:00 AM to 1:00 PM
Sleep deficiency is a common challenge during pregnancy. Lack of sleep puts pregnant individuals and their fetuses at risk for poorer health outcomes. Pregnancy symptoms are known to be one of the main obstacles that prevent pregnant individuals from getting quality sleep. Mindfulness is a therapeutic practice where individuals focus on their feelings, thoughts, and bodily sensations in the present moment. Mindfulness meditation targets emotional and cognitive reactivity, which is a common pathway for developing depression and insomnia symptoms. Mindfulness-based interventions are known to help with sleep disorders, but little research has been conducted in regards to the possible relationship between mindfulness and sleep during pregnancy. A cross-sectional study was done to explore the associations amongst sleep hygiene, mood, and mindfulness. The aim of this study is to evaluate the relationship between pregnancy symptoms and morning restfulness in pregnant individuals with insomnia prior to the mindfulness intervention. We are examining the relationships among daily sleep habits, pregnancy symptoms, and quality of sleep in sleep diaries of pregnant individuals with insomnia. Preliminary findings show stronger relations between symptoms of worry and sickness to poorer sleep quality. These preliminary results will better inform mindfulness-intervention design specific to pregnant individuals with insomnia.
- Presenters
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- Sissy Vazquez-Cruz, Senior, Nursing
- Dawson Jet Dai Dang, Senior, Nursing
- Mentor
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- Molly Altman, Family and Child Nursing, University of Washington School of Nursing
- Session
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Poster Session 1
- Commons East
- Easel #23
- 11:00 AM to 1:00 PM
In order to fully engage in reproductive justice, it is imperative that we address the ongoing erasure and exclusion of QTBIPoC (Queer, Transgender, Black, Indigenous, People of Color) families and birthing people, and other underserved communities within family building spaces. Perinatal research fails to include the experiences and voices of folks from these communities. This purposeful exclusion was created to continue centering white-cis-hetero bodies and to further oppress folks with identities that deviate from this “standard.” This causes real harm and because of this discrimination, QTBIPoC folks face worse health outcomes and maltreatment within healthcare. This is why we need to center the experiences of QTPBIPoC birthing people and their families, as they are at the highest risk of poor perinatal outcomes. In the Birth Includes Us study pilot my partner and I hope to employ a non-traditional social media recruitment strategy to effectively capture the experiences of QTBIPoC families to address disparities and highlight the communities’ strengths. Current methods fail to capture a large and diverse sample of participants, as they don’t properly reach or build trust within the community. Afterward, my partner and I will be evaluating how effective this recruitment strategy is in engaging a large and diverse sample of QTBIPoC participants. If the recruitment plan is successful, we intend to use this recrutiment strategy as a model to connect with "hard to reach" populations such as the QTBIPoC community and build this model so that others can replicate and better engage the community. In addition if the recruitment strategy is successful, we want to 1) increase our knowledge and inclusion in research, 2) build evidence-based inclusive and affirming practices and interventions to improve care/experiences, and 3) address/eliminate disparities within sexual and reproductive care.
- Presenters
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- Navneet Birk, Senior, Anthropology: Medical Anth & Global Hlth
- Emma Bingham, Senior, Anthropology, Biology (Molecular, Cellular & Developmental) Undergraduate Research Conference Travel Awardee, UW Honors Program
- Mentor
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- Darryl Holman, Anthropology
- Session
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Poster Session 1
- Commons West
- Easel #2
- 11:00 AM to 1:00 PM
In some traditional societies, a strong bimodal pattern of postpartum amenorrhea (PPA) duration has been observed in breastfeeding women. We have recently shown that early breastfeeding behavior is predicative of short-duration (~3 months) or long-duration (~15 months) amenorrhea, but the physiological mechanisms leading to this pattern are unclear. We investigate the relationship between hormone levels and duration of PPA in a sample of rural Bangladeshi women. Data came from an 11-month prospective study in which 261 breastfeeding women were interviewed and provided a urine specimen twice-weekly. It is known that breastfeeding disrupts ovarian cycles by inhibiting release of luteinizing hormone (LH) which in turn inhibits growth of ovarian follicles and release of ovarian steroids (estradiol and progesterone). During this time, women are infecundable. We assay hormone levels of estradiol metabolites, progesterone metabolites, LH, follicle-stimulating hormone (FSH), and cortisol across stages of PPA until eventual return to menses. We examine how these hormones correlate with the probability of resumption of menses and self-reports of breastfeeding behavior using survival analysis. We expect to see an earlier rise in LH and FSH spikes and increased levels of estradiol and progesterone metabolites in women who experienced a shorter duration PPA. We also expect that cortisol remains unaffected by the length of PPA. These results are used to explore the unknown mechanism that leads to bimodality in PPA.
- Presenter
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- Woohong Lee, Senior, Nursing
- Mentors
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- Allison Webel, Nursing, School of Nursing
- Vitor Oliveira, Family and Child Nursing, Nursing
- Session
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Poster Session 1
- Commons West
- Easel #22
- 11:00 AM to 1:00 PM
With advancements in antiretroviral therapy (ART), the prevalence of older people living with HIV (PLWH) continues to rise. Accompanying this increase in life expectancy among PLWH, there has also been subsequent evolving symptomatology. These include an increased burden of age-related comorbidities such as increased fatigue, frailty (i.e., muscle shrinking, weakness, slowness, poor endurance), and a lower sense of perceived well-being (e.g., poor mental health, depression, self-image). Research has demonstrated that physical activity (PA) can reduce some of these symptomatologies, especially those related to physical health. However, the implications of using PA to prevent the evolving symptomatologies of older PLWH are still yet to be explored. This study examines the variability of exercise training responses between men and women with HIV. The study considers multiple scalable data and measurements (e.g., Short Physical Performance Battery, fried frailty criteria, patient health questionnaire-9). Using descriptive analysis, this study provides further insight into the impacts of exercise response for PLWH based on Sex. Sex is likely to influence the physical functioning of PLWH. Data was obtained from the High-Intensity Exercise Study to Attenuate Limitations and Train Habits in Older Adults with HIV (HEALTH). This ongoing study incorporates exercise and biobehavioral coaching interventions to determine the efficacy of high-intensity interval training (HIIT) in older PLWH. The HEALTH study involves a randomized trial of 100 older PLWH (≥ 50 years of age) who self-report fatigue and a sedentary lifestyle. Due to the current limitation of sample sizes, the study has been considered with respect to sex-based analyses in the general population. Results of the study is expected to indicate differences in the physical and mental benefits of exercise comparing sex.
- Presenter
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- Deepti Anoop, Senior, Electrical Engineering
- Mentor
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- Tucker Burgin, Chemical Engineering
- Session
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Poster Session 1
- Commons West
- Easel #18
- 11:00 AM to 1:00 PM
As a protein’s sequence directly impacts its function, being able to understand and map protein sequence to function is integral to developing improved proteins with applications in various biotech fields such as medicine, agriculture, and energy. Machine learning algorithms can use protein mutation datasets to learn the relationship between sequence and function. The purpose of our project is to investigate the hypothesis that information encoded by convolutional neural networks (CNNs), a structure-based machine learning model, trained on protein sequences predominantly learn on secondary structural features such as alpha helices and beta sheets rather than on other regions of the protein that lack defined secondary structures. In order to test this hypothesis, we trained a CNN using the mutation data of several different proteins with the goal of finding a correlation between secondary structure fraction and model accuracy. Furthermore, in the future we will train on a protein that the CNN traditionally performed poorly on using data limited to protein mutations inside secondary structural features. If our hypothesis is upheld, the accuracy of the model will improve although fewer data are used to train the model overall. Moreover, an upheld hypothesis will help answer a frequently raised question in the literature as to why graphical CNNs (GCNs), or CNNs that can consider additional information about the tertiary structure of a protein, do not typically perform better than sequence-only CNNs: if the model does primarily learn on secondary structures, information on tertiary structure would not be expected to aid performance. The results of this project will enhance our understanding of how models learn sequence-function mapping and help produce improved models to better design new proteins with more desirable properties.
- Presenter
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- Meelad Karami, Senior, Microbiology Mary Gates Scholar
- Mentor
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- Jason Smith, Microbiology
- Session
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Poster Session 1
- Commons East
- Easel #44
- 11:00 AM to 1:00 PM
Human adenoviruses (HAdVs) are known to infect and cause diseases in multiple organ systems. HAdV serotypes are associated with particular diseases, giving us reason to believe there is a genetic link to tissue tropism. To understand this relationship, we are using mouse adenoviruses (MAdVs). Like HAdVs, MAdV serotypes are associated with distinct tissue tropisms: MAdV-1 infects macrophages whereas MAdV-2 infects intestinal epithelial cells. By swapping genes between MAdV-1 and MAdV-2, we hope to uncover the genetic basis of tissue tropism in MAdVs. These studies are aided by the availability of a cell culture system that recapitulates the cellularity of the intestinal epithelium and supports MAdV-2 replication but not MAdV-1 replication. Phylogenic analysis indicates that MAdVs are the oldest lineage of Mastadenoviridae, the genus that includes AdVs of mammals. Thus, functions of viral genes that are conserved among viruses within the genus and important for MAdV tissue tropism are likely to apply to HAdVs. A major determinant of viral cellular tropism is receptor usage, which may also play a primary role in tissue tropism. For both MAdV species, the trimeric fiber protein that extends from the icosahedral capsid is thought to be the viral attachment protein that binds to a host receptor. MAdV-1 has been shown to use specific cell adhesion proteins called integrins as a receptor for viral entry. Although the receptor for MAdV-2 is unknown, it differs from MAdV-1. To gain insight into tissue tropism, I have designed a chimeric MAdV-1-M2f virus, where the fiber gene of MAdV-2 has been inserted in place of the native fiber gene in the MAdV-1 genome. A prior student in the Smith lab created the inverse chimera. Using these viruses, we can infect intestinal epithelial cells to measure replication. Doing so will help uncover whether the fiber/receptor interaction plays a central role in determining tissue tropism.
- Presenter
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- Anthony K. Nhim, Senior, Chemistry
- Mentor
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- Sharona Gordon, Physiology & Biophysics
- Session
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Poster Session 1
- Balcony
- Easel #61
- 11:00 AM to 1:00 PM
The transient receptor potential vanilloid-1 (TRPV1) ion channel is a polymodal receptor expressed in sensory neurons that contributes to inflammatory pain sensation. Interestingly, the receptor channel is modulated by specific phosphoinositide lipid molecules in the plasma membrane. During inflammation, phosphoinositide 3-kinase (PI3K) generates the signaling lipid phosphatidylinositol (3,4,5)-triphosphate (PIP3). This increase in PIP3 levels leads to trafficking and fusion of vesicles containing TRPV1 with the plasma membrane. Previous research from the Gordon Lab revealed that increased PI3K activity is potentiated by TRPV1 during inflammation. However, the mechanism behind potentiation is undetermined. We hypothesize that stabilized association of PI3K with the plasma membrane by TRPV1 results in increased PI3K activity. To visualize the spatial localization of PI3K and its interaction with TRPV1, we employed a special optical technique called total internal reflection fluorescence microscopy (TIRFM). In TIRFM, selective excitation of fluorophores adjacent to the plasma membrane allows us to study translocation of proteins from the cytosol to the plasma membrane, or vice versa. We utilize TIRFM in conjunction with an opto-PI3K system to better understand PI3K signaling events during inflammation. We transiently transfected F-11 cells, model cells for dorsal root ganglion neurons that sense pain, with fluorescently labeled opto-PI3K system components and TRPV1 ion channels. Our fluorescence measurements show that, upon stimulation with 650 nm light, PI3K is retained at the plasma membrane through interaction with TRPV1. TRPV1 retention of PI3K is direct evidence for the hypothesized mechanism of potentiation through membrane localization. Studying PI3K activity in the prescence of TRPV1 will elucidate key properties of potentiation, such as affinity of the interaction, effects on PI3K activity, and substrate selectivity. These findings will aid in the development of inflammatory pain treatments that disrupt the interaction between PI3K and TRPV1.
- Presenter
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- Nikita Nerkar, Senior, Psychology Mary Gates Scholar
- Mentors
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- Angela Fang, Psychology
- Emily Iannazzi, Psychology
- Session
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Poster Session 1
- Commons East
- Easel #28
- 11:00 AM to 1:00 PM
Although the best psychological treatments, such as cognitive behavioral therapy, for anxiety disorders already rely on fear extinction mechanisms, these treatments underutilize principles of vicarious extinction learning. Vicarious extinction learning is a form of social safety learning that involves learning safety from the experience of others and can potentially enhance treatment potency. Social anxiety disorder (SAD), which is characterized by persistent social avoidance due to fear of negative evaluation by others, may uniquely benefit from vicarious extinction learning. Broader social contexts, like cultural norms, can also have influence on social learning and the efficacy in treatments of social anxiety. Although culture is a broad and nuanced construct, interdependent and independent self-construals have been shown to capture two of the many facets of culture. In this study, we propose that cultural factors, such as interdependent and independent self-construals, may impact vicarious extinction learning in people with high levels of social anxiety symptoms. Twenty socially anxious adults and twenty healthy controls will complete the Self-Construal Scale (SCS) and undergo a vicarious extinction task while undergoing fMRI. We expect that those with interdependent self-construals will show enhanced safety learning due to their value for seeing themselves as similar to others, as compared to those with independent self-construals. This will be evidenced by lower skin conductance responses (SCR) and greater ventromedial prefrontal cortex activation during the reinstatement phase of the task. Our results will highlight a potentially important cultural moderator of social safety learning and advance our understanding of the boundaries and clinical implications of learning safety from others.
- Presenter
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- Eesha Murali, Senior, Bioengineering Mary Gates Scholar
- Mentors
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- Michael Regnier, Bioengineering
- Ketaki Mhatre, Bioengineering
- Session
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Poster Session 1
- Commons West
- Easel #16
- 11:00 AM to 1:00 PM
During development, cardiomyocytes (CMs) undergo a hypertrophic growth phase to generate load for the heart to pump sufficient blood. However, in the early stages of pathological hypertrophy, stress-induced signal transduction promotes the addition of new contractile units through poorly understood mechanisms to maintain tensional homeostasis. Microtubules provide mechanical resistance in CMs. Our previous data shows that inhibition of contraction by expression of D65A cTnC (a point mutation on the calcium binding site of troponin C) results in complete myofibrillar disarray, with muscle stress fibers emerging in the cellular periphery. Surprisingly, when given topological cues, these cells show aligned myofibrils in the absence of contraction. Thus, the mechanism behind the maintenance of myofibril and passive tension in non-contractile CMs is not explained. My goal was to determine the role of microtubules in maintaining tensional homeostasis in response to change in internal tension in CMs. Here, wild-type (WT) human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CM) were transduced to express cardiac troponin C (cTnC) with point mutations L48Q (hyper-contractile), I61Q (hypo-contractile), and D65A (non-contraction) to study the effect of varying levels of contractility or internal load on microtubules. The percent coverage of microtubules (staining within the CMs for cTnC L48Q, WT, I61Q, D65A) was 42.32%, 50.20%, 64.09%, 75.70% respectively (n=300). Complementary proteomics data have indicated that protein levels related to microtubule proliferation (MAP4) and assembly (Tubb3, Tubb4b, Tuba1a) were elevated in CMs expressing cTnC D65A. This new data gives us insight into how the microtubule remodeling in non-contractile and dysfunctional cardiomyocytes maintains tension in early stages and its possible role in myofibril formation.
- Presenter
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- Brock Gjesdal, Senior, Biochemistry, Neuroscience
- Mentors
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- John Neumaier, Pharmacology, Psychiatry & Behavioral Sciences
- Rapheal Williams, Psychiatry & Behavioral Sciences, University of Washington Neuroscience Graduate Program
- Session
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Poster Session 1
- MGH 241
- Easel #69
- 11:00 AM to 1:00 PM
Alcohol withdrawal exists as a significant barrier to care for those who struggle with alcohol use disorder. Furthermore, there is evidence of worsening withdrawal symptoms after repetitive cycles of alcohol use and abstinence. Our preliminary research points to neuroinflammation primarily regulated by microglia, the immune cells in the brain, as a potential causal component in the escalation of recurring alcohol withdrawal symptoms. Previous work in our lab has shown that mice subjected to chronic intermittent exposure (CIE) to ethanol vapor showed elevated markers of neuroinflammation, as evidenced by transcriptome analysis in microglia. We found that the “unfolded protein response (UPR)” was activated; it plays a critical role in the development of neuroinflammation, and the UPR is mediated significantly by the C/EBP homologous protein (CHOP) an apoptotic transcription factor. Therefore, we hypothesize that CHOP in microglia is necessary for promoting alcohol withdrawal symptoms. We expect to observe measurable reductions in the withdrawal symptoms experienced by transgenic male and female mice with and without CHOP following CIE exposure. In our pilot study, transgenic male and female mice with and without CHOP were subjected to five weeks of CIE to ethanol vapor and then tested for withdrawal phenotypes. These tests include body temperature, locomotion, marble-burying behavior, novelty suppressed feeding, and sucrose preference. We have also characterized microglia morphology and CHOP expression in pilot mice brains. Having measured changes in these mice's neuroinflammatory mechanisms and subsequent behaviors, our results will determine the efficacy of decreasing CHOP gene expression to ameliorate the kindling effect in alcoholics. Therefore, our work provides a promising direction in tackling the inescapable cycle of worsening alcohol withdrawal that limits the road to recovery for alcoholics.
- Presenter
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- Cecilia Annabella Mustelin, Senior, Psychology
- Mentors
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- Angela Fang, Psychology
- Yuchen Zhao, Psychology
- Session
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Poster Session 1
- Commons East
- Easel #29
- 11:00 AM to 1:00 PM
Rejection sensitivity (RS) is a core component of social anxiety that may impact symptom severity and treatment outcomes. There may be substantial differences in both neural and behavioral responses to fear as a function of trait RS in socially anxious individuals, as reflected in altered regional brain activation patterns underlying fear and self-referential processing. Individuals with the highest levels of RS may struggle to extinguish learned social fears but it is unclear if they learn safety differently by watching another person doing so, a process called vicarious extinction learning. Recent work has highlighted the advantage of vicarious extinction learning in fear regulation over traditional extinction learning, but this has not yet been tested in socially anxious populations. Given the relevance of social learning processes in social anxiety, vicarious extinction learning may enhance the effectiveness of exposure-based therapy in this population. In this study, individuals will undergo a social fear task in which they learn to pair images of angry faces with a mild electric shock. During Phase II, participants will watch a video of another person undergoing the same task and learning safety from one of the photos previously associated with a shock. The final phase will test if participants can apply the model's safety learning to themselves. I hypothesize that high trait RS may moderate vicarious extinction learning, as seen by differential activation in the ventromedial prefrontal cortex (vmPFC). It is possible that those with higher RS might show increased vmPFC activation during extinction and might benefit more from vicarious safety learning because social signals are more salient in this population and they have more to gain from learning safety, but it is also possible that they may not benefit, or even worsen, if they are unable to empathize with the learning model and remain vigilant to cues of social rejection, as evident by decreased vmPFC activation during extinction. Regardless of the direction of the effect, trait RS may be an important variable to consider when treating socially anxious patients using extinction-based principles and may influence the development of novel interventions to target this population.
Virtual Lightning Talk Presentation 1
9:30 AM to 11:00 AM
- Presenter
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- Alexa Haucke, Sophomore, Undecided, Everett Community College
- Mentors
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- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Josh Searle, Ocean Research College Academy, Everett Community College
- Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
- Session
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Session L-1A: Oceanography and Marine Biology
- 9:30 AM to 11:00 AM
Ocean acidification, the persistent lowering of pH in marine environments, is influenced by water chemistry, biological aspects, seasonal changes, and human activity. Low pH (acidic conditions) can contribute to hypoxia, coral bleaching, and other dangerous conditions for the environment. Estuarine environments contain all these influences. In this study, changes in pH in Possession Sound, WA were examined over a five-year period, with the context of changes in river discharge. This was accomplished using a YSI EXO Sonde periodically deployed nearshore in Mukilteo, Washington, USA used in partnership with Ocean Research College Academy. This site, being within the Snohomish River Estuary, is affected by both oceanic factors and the Snohomish River, including any runoff that comes through those waters. These measurements create a depiction of changes in pH mostly due to seasonal factors, like river discharge and upwelling. Early results from these data demonstrate a clear seasonal pattern without significant annual trends toward lower pH. As climate change progresses, consistent monitoring of ocean pH will be essential to understanding the effects of ocean acidification and the ways we might combat them in the future. While this study was limited by its short timeframe, these results provide an important baseline for continued collection and analysis of these data.
- Presenter
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- Katie Shaw, Senior, AAS-DTA, Everett Community College
- Mentors
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- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Josh Searle, Ocean Research College Academy, Everett Community College
- Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
- Jennifer Olson, Ocean Research College Academy, Everett Community College
- Session
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Session L-1A: Oceanography and Marine Biology
- 9:30 AM to 11:00 AM
Combined sewer outflow (CSO) overflows are a threat to water quality, particularly in such urbanized areas as the Puget Sound. CSOs contribute to spills of untreated sewage mixed with stormwater that wash into water systems during heavy rain events. Possession Sound, fed by the Snohomish River, has 13 CSO outfalls in Everett, Washington, some of which experience CSO events fairly regularly. Contaminants in these CSO overflows can release pathogens, solids, nutrients, toxins, and oxygen-consuming pollutants into the water. These variables can in turn affect DO mg/L (dissolved oxygen) and turbidity NTU (measure of water clarity) – two important measures of water quality. Past research has found that wastewater spills cause major decreases in DO and increases in turbidity. DO and turbidity data were collected using a CTD in the Everett Marina throughout 2019. This data, in addition to the combined volume of water discharged from the CSOs during overflows, the duration of these spills, and the depth of precipitation in inches during the overflow, were analyzed using the Principal Component Analysis (PCA) method to find which components were most effecting the change in DO and turbidity. Using the components that covered over 90% of the variability in the data from the PCA, a Principal Component Regression (PCR) was made to be the foundation for two predictive models, one for projected DO, the other for turbidity. It is expected that a regression based on these components will make a model that covers the majority of change in DO and turbidity with a statistically significant R2 value. These models may make analysis of the effects of CSO overflows on Possession Sound a much simpler process and provide important insights into the impacts of these overflows on water quality.
- Presenter
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- Ann-Marie Vo, Sophomore, Chemistry, Everett Community College
- Mentors
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- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Josh Searle, Ocean Research College Academy, Everett Community College
- Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
- Session
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Session L-1A: Oceanography and Marine Biology
- 9:30 AM to 11:00 AM
Ocean acidification is a global crisis that is mainly caused by too much carbon dioxide in the atmosphere being absorbed by bodies of water, altering the water chemistry. Ocean acidification has large visual consequences, such as the bleaching of coral reefs, but less obvious, small scale influences are also found in the Salish Sea. A major indication of global warming’s effects on local water systems is pH, or the measure of how acidic or basic a solution is. Previous global studies have shown that pH has been decreasing (becoming more acidic) over the years, while the overall temperatures have been rising. The goal of this study is to observe how changes in lowernig pH are related to temperature changes in the watercolumn of Possession Sound, a salt wedge estuary, near Everett, Washington. We utilized pH and temperature vertical profiles collected from a YSI EXO Sonde, a deployment device that utilizes sensors and precise calibrations to monitor water quality, over six years to assess the degree of ocean acidification locally. Trends were analyzed according to depth and season. Preliminary studies of this particular site have shown minor changes compared to the extreme trends recorded in other ocean environments. Given the potential for negative impacts on the estuary, it is worth expanding the study by investigating a longer time frame. Local estuary data regarding depth and season will allow people to better understand how these variables change in our environment and gain a greater understanding of climate change’s influences on ocean acidification locally.
- Presenter
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- Casandra Jade (Cassie) Laney, Sophomore, Marine Biology, Chemistry, Biology, Everett Community College
- Mentors
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- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Josh Searle, Ocean Research College Academy, Everett Community College
- Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
- Jennifer Olson, Ocean Research College Academy, Everett Community College
- Session
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Session L-1A: Oceanography and Marine Biology
- 9:30 AM to 11:00 AM
- Other Chemistry major students (2)
- Other Biology major students (5)
- Other Ocean Research College Academy mentored projects (13)
- Other students mentored by Ardi (Kole) Kveven (12)
- Other students mentored by Josh Searle (12)
- Other students mentored by Marina McLeod (12)
- Other students mentored by Jennifer Olson (4)
Possession Sound, located in Everett, Washington, includes the second largest source of freshwater in Puget Sound from the Snohomish River. This salt-wedge estuary serves as a home to a wide selection of phytoplankton, which provide energy to a variety of organisms farther up the food chain. Water chemistry often determines where phytoplankton accumulate prior to their recycling as nutrients. Ocean Research College Academy students utilize water chemistry data (temperature, salinity, dissolved oxygen, pH, turbidity and chlorophyll concentration) from two sensors deployed in Possession Sound: One in the river and one two miles away at Mukilteo. While plankton samples are collected in the Sound, rarely are plankton collected in the river and compared to chlorophyll concentrations. This study will look at abundance and diversity of phytoplankton collected in the river at various tide stages and compare these to Mukilteo samples. I hypothesize that flood tide samples will be similar, while ebb tide phytoplankton and chlorophyll levels will decrease. The preliminary data revealed that chlorophyll and temperature levels did not vary significantly between the two sites despite the widely differing salinity levels. The next steps of the study are to determine the plankton density of phytoplankton species across the two most recent years of data. Results will enable us to explore further into plankton presence in relation to chemical variance in water systems.
- Presenter
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- Sheamin Kim, Sophomore, Undecided, Everett Community College
- Mentors
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- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Josh Searle, Ocean Research College Academy, Everett Community College
- Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
- Session
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Session L-1A: Oceanography and Marine Biology
- 9:30 AM to 11:00 AM
Nutrient levels in marine environments can vary widely due to local geography, the placement of various manmade input sources, seasonal factors, and tidal patterns. They are important in understanding the overall health of an ecosystem, as they can be an indicator of potential pollution. They also have a significant impact on plankton populations and, as a result, primary production. Unnaturally high nutrient levels can affect other water chemistry variables, contributing to events such as harmful algal blooms, hypoxia, and ocean acidification. In this study, I analyze 13 years of nutrient data from ten Possession Sound sampling sites, at varying distances from the mouth of the Snohomish River. Nitrate and phosphate levels were analyzed temporally, and tidal, weather, and river discharge data was overlaid to analyze the relationship between nutrients and other facets of the surrounding environment. My early analysis indicates that seasons play a large role in nutrient levels, likely due to the weather of the Pacific Northwest and runoff from the Snohomish River. Figures also support the relative similarity of values between sites, showing that nutrient levels in the Snohomish River estuary are collectively affected by nutrient flow rather than having site specific characteristics. Studies of this type can provide insight about specific characteristics of our local nutrient pathways and can provide context for changes in our ecosystem. For further research, oceanic parameters such as dissolved oxygen, pH levels, and plankton densities should be analyzed in comparison to nutrients in order to gain a better understanding of the actual relative impact of nutrients in this local marine system.
- Presenter
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- Divinity Rose Paterson, Senior, Marine Biology
- Mentor
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- José Guzmán, Marine Biology
- Session
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Session L-1A: Oceanography and Marine Biology
- 9:30 AM to 11:00 AM
Pugettia producta, native to the Salish Sea, alter their diet seasonally based on availability, shifting from algae in spring and summer to mussels in fall and winter. Our hypothesis was that when presented with both algae and mussels simultaneously, the kelp crabs would prioritize one food over another. Additionally, the environmental conditions of a tank may also have an effect on the amount of food consumed. We also hypothesized that by mimicking the seafloor, the consumption rate would be higher. Crabs were placed in two tanks, one with sediment and one without, and were accompanied by a measured amount of bull kelp and mussels. Tanks were covered nightly at sunset to mimic outdoor lighting conditions, and salinity, pH, water flow, and temperature were regulated evenly for both tanks. Measurements were taken daily of the remaining food supply, and each trial was run for 48 hours. We found that the tank with the sediment had less food remaining, and in both tanks, more algae was consumed than mussels. Algae may have been preferred because it takes less energy to consume, which may mean that kelp crabs spend more energy eating in the winter, and likely suffer a tradeoff with less energy to spend on other factors, such as growth and reproduction. Imitating the sea floor may have made a difference in alleviating stress levels in the crabs, which led to more consumption. Understanding dietary preferences is important when considering the potential future effects of anthropogenic climate change and ocean acidification on marine ecosystems. Additionally, mimicking field conditions in a laboratory in conjunction with manipulating variables of interest for any experiment likely provides more accurate results than an empty tank, and may be a viable option wherever possible to obtain results representative of a natural environment when field experiments are not possible.
- Presenter
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- Nadia Brainerd, Freshman, Undecided, Everett Community College
- Mentors
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- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Josh Searle, Ocean Research College Academy, Everett Community College
- Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
- Session
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Session L-1A: Oceanography and Marine Biology
- 9:30 AM to 11:00 AM
In any marine ecosystem, water currents are an important factor in both the biological aspects and the physical movements of a body of water. The focus of this study, the Possession Sound estuary in the Salish Sea, lies in an interesting area that is affected both by discharge from the Snohomish River and surrounding streams, and incoming ocean currents from the Pacific Ocean. In Possession Sound the currents can affect everything from the regular boat traffic through the area to the transportation of debris and other natural or harmful substances in the water. I used an Acoustic Doppler Current Profiler (ADCP), moored in the Everett marina at the mouth of the Snohomish River, to collect data on current velocity for 10–30-minute intervals over the period of seven months in 2020, and almost two months in 2021. The collated data I then used to analyze the current directions and speeds of the water to determine potential local trends in the currents. Preliminary analysis shows that the currents flowing near the moored ADCP tend to flow north and south with fewer currents going to the east or west. However, the currents going east and west are often faster than the north and south streams. These two trends are likely caused by the north moving ocean currents and the south moving river currents, but more research utilizing related data such as river discharge is necessary. Because of the estuary’s diverse current sources, the analysis of these data allows for a greater understanding of the movements of the water column, and insight into the transportation of important substances within it such as nutrients and heavy metals.
- Presenter
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- Madeline (Maddy) Baird, Sophomore, Undecided , Everett Community College
- Mentors
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- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Jennifer Olson, Ocean Research College Academy, Everett Community College
- Josh Searle, Ocean Research College Academy, Everett Community College
- Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
- Session
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Session L-1A: Oceanography and Marine Biology
- 9:30 AM to 11:00 AM
Harbor seals fill a critical role in the balance of the Salish Sea. Prey availability is known to be a strong indicator of seal presence; however, there are many more subtle environmental influences on harbor seal presence as well. This study hones in on the harbor seals of the Snohomish River Estuary and how their haul-out habits may be influenced by the unique water circulation of the area. This study analyzed data compiled by the Ocean Research College Academy at multiple log boom haul-out sites in the Snohomish River from 2015-2022. I analyzed seal data through the lens of the tide's movement of water in this estuary and compiled tide data from the National Oceanic and Atmospheric Administration (NOAA). I expected that there would be an increase in seals hauled-out at flood tide as well as in the beginning of the ebbing tide due to the colder temperatures experienced during high tide. Early results suggest no direct or strong correlations between tidal height and overall seal presence at sampling sites. This study seeks to better understand the presence and behavior of harbor seals at the mouth of the Snohomish River.
- Presenter
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- Sergei Avetisyan, Non-Matriculated, Undecided, Everett Community College
- Mentors
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- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Josh Searle, Ocean Research College Academy, Everett Community College
- Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
- Session
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Session L-1A: Oceanography and Marine Biology
- 9:30 AM to 11:00 AM
Possession Sound, a fjord-type estuary system in the Salish Sea, is home not only to incredible biodiversity but also to some unique clines. A cline, such as a thermocline or a halocline, is a portion of the water column where a physical property changes significantly with depth. The haloclines of the Possession Sound fjord system vary periodically in stratification, particularly at river mouths. One such area can be found at the mouth of the Snohomish River, where cold freshwater flows into warmer seawater, creating a stratified but unstable water column. This study aims to draw connections and seek out patterns between current speeds and temperatures. Temperature data was collected from the Ocean Research College Academy's Conductivity, Temperature and Depth (CTD) sensor mooring at the Everett Marina, and current speed data was collected from their Acoustic Doppler Current Profiler (ADCP) in the same location. Prior research suggests that during most parts of the tidal cycle, temperature readings at the surface correlate strongly with tidal stages: the surface becomes colder when river water flows out to sea at low tide and warmer as the seawater pushes the river water back at high tide. However, when the tide cycle becomes less intense and current speeds decrease, this correlation becomes muddied. It is hypothesized that this pattern represents a decrease in thermocline stratification during periods of slower current speeds. Prior research done on this correlation at the mouth of the Snohomish River lacked in scope and statistical support. By expanding the scope by several months and incorporating statistical support, this study has reinforced previous findings, supporting the hypothesis posed previously: a linear correlation between the variables was supported with a p-value of 2.89E-25, and the inverse linear correlation between temperature and tide height was stronger during periods of greater average current speed.
- Presenters
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- Christian Tarta, Freshman, Computer Science, Lake Wash Tech Coll
- Nicholas Develle
- Han Ji, Senior, Computing and Software Development, Math Education, Lake Wash Tech Coll
- Kwan-Jie Lee
- Alex Gale, Senior, Electrical Engineering AS-T, Lake Wash Tech Coll
- Mentor
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- Narayani Choudhury, Applied & Computational Math Sciences, Physics, Lake Washington Institute of Technology, Kirkland
- Session
Computer vision is a branch of artificial intelligence that involves applications of mathematical methods and computers for machine learning from digital images and videos. Here, we apply computer vision-based methods for optical character recognition (OCR) and image compression. OCR has important applications such as process automation like check clearing, digitizing text and image records for online databases, automated analysis of surveillance camera videos for security, automated reading of text from car license plates in a parking lot, etc. But how can we feed visual information to a computer in a form that it can understand and operate on? To this end, we digitized images into vectorized arrays and analyzed data using vector and scalar projections. Further, we applied algorithms with foundations in linear algebra and wrote programs using Python scientific libraries for optical character recognition and image compression. Using IPython, we characterized color and grayscale images as arrays and implemented singular value decompositions (SVD) and principal component analysis (PCA) for grayscale and color image compression studies and OCR. These studies illustrate how mathematical transformations and data reduction methods can be used for optical character recognition, image compression, identification and encryption. This project elucidates the key role of mathematical modeling for computer vision applications.
- Presenter
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- Alex Gale, Senior, Electrical Engineering AS-T, Lake Wash Tech Coll
- Mentors
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- Michelle Judy, Mathematics, Lake Washington Institute of Technology
- Narayani Choudhury, Mathematics, Science Technology Engineering and Mathematics, Lake Washington Institute of Technology, Kirkland
- Session
Motion algorithms are foundational for effective autonomous robot movement. For surface robotics, one particularly useful algorithm is known as pure pursuit, where a robot follows a point along a path that is a constant distance away from the robot. This work hopes to improve the pure pursuit motion algorithm to account for differences in the robot's features by implementing closed loop full state feedback (FSF) control. In addition, this project aims to provide more abilities to the pure pursuit algorithm, such as specification of angle at each point, allow for moving points, and ensure fast and efficient movements. The algorithm additions are made by modifying the calculations or control loop, and using simulations to verify effectiveness. So far, this work has shown promise by enabling intricate movements while being effective. As a whole, the role of this research is to make pure pursuit more useful and effective for any robot operating on a surface.
- Presenters
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- Toufic Majdalani, Sophomore, Computer Science, Mathematics, Edmonds Community College
- Caleb Jansen, Sophomore, Computer Engineering, Edmonds Community College
- Mentor
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- Tom Fleming, Physics, Edmonds College
- Session
The thermal optimization of computer systems is a study dating back to their creation. Because powerful computers typically generate additional heat, the more heat one can remove from a computer, the more powerful they can make it. Over the years, it has become a popular solution for many companies to build computers using standardized, modular hardware. Our research questions the cooling efficiency of this standardized hardware. Initially, we are creating a 3D simulation of a desktop computer that will allow us to quickly test various internal component layouts for thermal efficiency. Using a custom-programmed microcontroller for data collection, our real-world testing includes the building and monitoring of both a computer built in this standardized fashion and one reconfigured to other custom layouts, which, from our simulations, we anticipate will improve the cooling capabilities of the computer. By using this data in conjunction with observations from our digital 3D simulations, we hope to test potential improvements to the layout of computer components to enhance the performance of both high-end computers and everyday desktops.
- Presenter
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- Isaias Ramos-Gunn, Non-Matriculated, Electrical Engineering, Edmonds Community College
- Mentor
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- Tom Fleming, Physics, Edmonds College
- Session
Rotary encoders are present in many electronic devices, and are used to measure changes in rotation. The common photo type encoder has remained largely unchanged in its fundamental operation, and faces limitations in resolution at small sizes. This research explores an encoder design utilizing polarizers, that can achieve higher resolutions than similarly sized photo encoders. Current photo encoders achieve their rotational measurements through a rotating disk, with perforations located along the circumference. As the disk rotates, a photodiode receives pulses of light through the perforations from a light source. The resulting signal(s) consists of a multitude of digital pulses that require compiling and processing, before position can be determined. To achieve higher resolutions, more perforations are required, and more photodiodes are needed. High-resolution encoders can therefore become very expensive as the perforations increase, and the perforations, and therefore resolution, is limited at smaller sizes. However, there is a way to inexpensively achieve indefinite resolution and absolute position, at sizes that are unfeasible with current encoder technologies. Such an encoder utilizes an initially polarized light source, followed by an analyzer polarizer, and then a photodiode. As the analyzer is rotated, the photodiode receives a gradually increasing, and then decreasing, change in brightness (translating into current). Rotating the analyzer continuously, produces a sine graph of current change, with each point corresponding to a position of the analyzer. In this research, this configuration has been adapted to create a small scale, and high-resolution rotary encoder. This polarizer encoder measures only ten millimeters in diameter, and achieves greater resolution than current similarly sized rotary encoders.
- Presenter
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- Simon Cao, Senior, Electrical Engineering Mary Gates Scholar
- Mentor
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- Anant M.P. Anantram, Electrical & Computer Engineering
- Session
The resistive random-access memory (RRAM) is a promising candidate for next-generation nonvolatile memory (NVM). This technology is considered one of the most standout emerging memory technologies due to its potential high storage density, fast access speed, low power consumption, and low cost. If the technology is well-understood, it could significantly change the memory industry and trigger more advancement in computing and, thus, the scientific field. One of the most widely discussed applications of resistive memories is neuromorphic computing. Neuromorphic computing uses very large-scale integrated circuits to mimic neurological architectures. The human brain can compute with extremely low energy consumption since neurons and synapses combine storage and computation. However, the scalability of current semiconductor technology could be problematic as such synapses density in the neurological system is hard to achieve by conventional means. Resistive random-access memories could ease the problem by providing high scalability and computing capacity to mimic neuron and synaptic functions and thus push important technological advancements in autonomous systems, which learn and interact with the environment in real-time and open the door to so many possibilities. The research project’s main focus would be the theoretical modeling and simulations of the properties and behaviors of the conductive filament in the resistive random-access memories using high-performance computing (HPC) resources at the University of Washington. More simulations will be done to understand further the physical principles behind two configurations: unipolar RRAM and bipolar RRAM. In unipolar RRAM, the voltage to reset and set the memory cell has the same polarity, while in bipolar RRAM, the voltage to reset and set has reverse polarity. While some of the theoretical models are still not complete, these simulations might help understand the phenomenon and shed some light on future modeling.
- Presenter
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- Joyce Lin, Senior, Design: Interaction Design Mary Gates Scholar
- Mentors
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- Sarah Coppola, Human Centered Design & Engineering
- Jessie Zhang, Human Centered Design & Engineering
- Session
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Session L-1C: Environment, Justice, and Accessibility in a Global Context
- 9:30 AM to 11:00 AM
Preferred methods to engage with music vary among d/Deaf and Hard of Hearing people (d/DHH), depending on a number of social, environmental, and technological factors. Previous research on music for the d/DHH population has pursued specific methods such as dance, sound vibrations, and captioning. Other literature has focused on applying a hearing standard of music engagement and fluency to the d/DHH community and is outdated with regards to technological advances that improve music access. In this generative research, our goals are to understand how various social and technical environments affect music experiences and discover design opportunities to improve music accessibility for d/DHH people. We are conducting semi-structured interviews with d/DHH adults ages 18-49. These interviews undergo design research activities consisting of word exercise, image exercise, and cognitive mapping to uncover the background, current, and ideal music experiences of participants. We are developing a design prototype based on research findings that addresses the accessibility shortcomings of music experiences and adapts to numerous music scenarios and environments. This prototype can be used as a tool to inform future design solutions for existing music platforms to accommodate the needs and wants of the d/DHH community.
- Presenter
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- Wendi Zhou, Senior, History, Philosophy Mary Gates Scholar, UW Honors Program
- Mentor
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- Jose Mendoza, Philosophy
- Session
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Session L-1C: Environment, Justice, and Accessibility in a Global Context
- 9:30 AM to 11:00 AM
The goal of my project is twofold: firstly, to analyze the philosopher Iris Marion Young’s (1949-2006) application of a “social connection model” to the problem of responsibility for historical injustice in her book Responsibility for Justice (2011) and pose a critique to this model in addressing harms against Black Americans. I do this by putting her chapter on historical injustice in conversation with Roy Brooks’ Atonement and Forgiveness (2004), a work of legal scholarship on the similarly constructed “atonement model” of reparations in the case of anti-Black racial injustice in the United States. Secondly, I hope to explore new avenues of philosophical research that are conducted in partnership with reparations organizations and individuals with a clear connection to specific past injustices. I do this through analyzing three group interviews of 3-4 activists each (Black, white, and integrated) and making use of three reparationist conference recordings in collaboration with the African American Redress Network (AARN), a coalition of national, state, and local reparations organizations. Overall, I argue that neither Young’s social connection model nor Brooks’ atonement model offer a satisfying solution to the problem of conceptualizing the Black redress movement in light of testimonies by and interviews with reparations activists. Instead, I propose a relational approach based on the principles of relational egalitarianism and the concept of “moral repair” in Margaret Urban Walker’s 2006 book of the same name. In this way, I hope to not only bring more on-the-ground perspectives into the philosophical debate on Black redress (and historical redress more generally), but also reflect on ways that philosophy can be reconceptualized as a tool to achieve racial justice goals.
- Presenter
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- Naomi Yuen-Schat, Senior, Political Science (Political Economy)
- Mentor
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- Asli Cansunar, Political Science
- Session
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Session L-1C: Environment, Justice, and Accessibility in a Global Context
- 9:30 AM to 11:00 AM
My research questions for this paper are: What are the effects of the Extra Score Policy on Indigenous student enrollment in colleges and universities in Taiwan and is the Aboriginal Language Proficiency Certificate, in the context of the Extra Score Policy, an effective method of language revitalization? My hypotheses are that this policy has increased Indigenous student enrollment in colleges in Taiwan and the Aboriginal Language Proficiency Certificate is an effective method of language revitalization. Indigenous students have a higher chance at attending colleges with a boost to their university entrance exam score and with the addition of the Aboriginal Language Proficiency Certificate, students can receive an even greater boost in their score, so it should incentivize students to learn their Indigenous language to receive a higher score. Studying the enrollment and university population trends among Indigenous students, as well as the Aboriginal Language Proficiency Exam results, I examine the impacts of the Extra Score Policy. Through my study, I found that the Extra Score Policy increased Indigenous student enrollment in colleges and universities in Taiwan. However, I also found that there is no significant data which prove that the Aboriginal Language Proficiency Exam is an effective method of language revitalization. While this policy enables greater Indigenous student enrollment in college, Indigenous students are not attaining a college education at an equitable rate in comparison to non-Indigenous students. Furthermore, students do not have the proper support in these colleges to graduate from college and receive an equitable education. In turn, the implications of my research suggest that one policy cannot undo a system of inequity. Rather it is necessary to use this policy as a starting point to understand the impacts of it and highlight areas of improvements ranging from financial support for Indigenous students to culturally competent curricula.
- Presenter
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- Samira Jimaale, Sophomore, Business, Shoreline Community College
- Mentor
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- Diana Kimani, Economics, Shoreline Community College
- Session
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Session L-1C: Environment, Justice, and Accessibility in a Global Context
- 9:30 AM to 11:00 AM
According to the World Bank, Somalia has a mere gross domestic product (GDP) per capita of $309 USD, as compared to the $63,500 of the United States. The negative impacts of terrorists, government corruption, and poverty/famine have left Somalia a war-torn country battling a 30-year civil war. Due to this, foreign countries have become reluctant to provide aid. Fortunately, there has been some viable potential for economic growth through partnership of Non-government Organizations (NGOs) and promoting civic engagement. Recently, returnees and Internally Displaced Persons (IDPs), who were forced to flee the country due to war and economic instability, have returned and partnered with government officials to take an initiative to improve the country's well-being. The question this report seeks to answer is what methods can be applied to solve Somalia's economic dilemma? Economists know the most important factors that determine a country’s well-being are education, infrastructure, human capital, and literacy rate to name a few. To gain better insight into each of these categories, I compared case studies of the economic driving factors of now industrially advanced countries. Countries like South Korea and Singapore who once experienced economic depravity, I then compared those economic factors against Somalia’s economy. I have found that from an economic standpoint, Somalia should focus on free or low-cost education for the masses, enabling international trade through specialization, and improving productivity per citizen through supplying more jobs.
- Presenter
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- Rhys Conoley-Marsh, Sophomore, Transfer Degree, Shoreline Community College
- Mentor
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- Ernest Johnson, American Ethnic Studies, UW Main
- Session
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Session L-1C: Environment, Justice, and Accessibility in a Global Context
- 9:30 AM to 11:00 AM
There is a long and unfortunate history of violence in communities of color at the hands of police. I aim to examine the role of police in the oppression of vulnerable communities, specifically communities of color, and how community alternatives bring equity to the justice system. Community alternatives are programs that divest from or abolish police departments. Divestment is a practice by which funds are redirected away from police towards community-focused departments and programs. Abolition is a practice that involves the full-on breakdown of a police department to replace it with community policing or mental health services. I would advocate for divesting first with abolition as a secondary measure should divestment fail. Some preliminary studies in Denver and Oakland, show a savings of $34 million dollars by removing police from schools. Austin and San Francisco have reallocated funding from police departments into programs like housing and healthcare. These early results are evidence of the efficacy of moving to a reallocation or abolitionist model. To explore this I have examined the history of policing in America, as well as current reports and investigations by civil rights groups and federal agencies to analyze historical and continued oppression by police departments. I have also reviewed abolitionist literature in order to paint the most accurate picture of the more equitable justice system. This research has revealed data from investigations into police departments from cities like Ferguson and Minneapolis that display gross abuses of power against people of color. Abolitionist literature discusses solutions such as the debate surrounding including social workers in the law enforcement process. The majority of the research and literature surrounding abolition is fairly young, so going forward information relevant to the topic will be monitored. Ultimately, the goal of reimagining policing is to ensure safety, security, and equity for all.
- Presenter
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- Melinda Jane (Melinda) Whalen, Senior, History: War and Society, Russian Language, Literature, & Culture Mary Gates Scholar, UW Honors Program
- Mentor
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- Glennys Young, History, Jackson School of International Studies
- Session
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Session L-1C: Environment, Justice, and Accessibility in a Global Context
- 9:30 AM to 11:00 AM
This project explores gender and identity during the Siege of Leningrad (September 8 1941 - January 27 1944) as articulated by child diarists Elena Mukhina and Iura Riabinkin. Iura is a disabled young man, who struggles to reestablish a sense of masculinity and purpose after being rejected from the army; he slowly loses his physical strength, a pillar of his male identity, due to extreme starvation and grapples with feelings of worthlessness. Lena is a young woman who grounds her femininity, and thus her self-worth, in her work as a hospital orderly; once she is required to return to school, she attempts to commit herself to the genderless “Soviet student” ideal but finds difficulty in relinquishing her feminine identity. During the German encirclement of the city during WWII, Leningraders suffered tremendously, fighting to survive without ample food, electricity, or water, all while isolated from the rest of the USSR. This deeply traumatic experience redefined Leningrad’s cultural landscape, specifically raising questions about Soviet gender culture. In their diaries, these two 16-year-old students demonstrate the changing norms through their perceptions of traditional gender roles, self-worth, and their own masculinity and femininity. This project focuses on the diarists’ use of gendered language and how it changes over the course of the war, offering historical context to suggest explanations for these changes. In the academic discourse surrounding the Siege, scholars have approached the event as a psychological phenomenon or a primarily female experience, but rarely as a child’s experience. Iura’s diary is the only published and translated diary by a male child, even then only available in excerpts, while Lena is one of very few female child diarists published in full. Through this project, I aim to illuminate this neglected aspect of Siege study and illustrate the nuanced gender discussion explored by these extraordinary children.
- Presenter
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- Kyle Andrew Tomyn, Senior, Interdisciplinary Arts & Sciences (Global Studies), UW Tacoma Mary Gates Scholar
- Mentor
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- Vanessa de Veritch Woodside, Interdisciplinary Arts & Sciences (Tacoma Campus)
- Session
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Session L-1C: Environment, Justice, and Accessibility in a Global Context
- 9:30 AM to 11:00 AM
This research will address climate change and its impact on migration to the US, specifically how it impacts Central America. Migration from this region is at an all-time high. Climate change, especially droughts and the decrease in precipitation, as well as extreme weather events, have agitated migration patterns in Central America and will compound in the near future with the increase of climate refugees from the region, putting additional stress on the already failing US immigration system. Before this problem gets out of hand, research needs to be conducted to understand the severity of the situation and steps towards a solution. This paper aims to uncover hidden data that often goes unseen that demonstrates the hardships and impossible situations that inhabitants of Central America are faced with. These hardships, compounded with new and emerging climate crises, are forcing many to migrate to more hospitable environments, namely, the United States. This study will first begin with an overview of the current situation and explain the problem at hand. It will then delve into the personal experiences of the participants of this study, those that are immigrants themselves, and those that have various and unique perspectives on this climate migration. This research will study how they have been impacted by climate-related issues such as extreme weather events, variability of precipitation, crop failure, etc. Finally, it will discuss the future of this issue and propose solutions and methods of adaptation for the coming decades.
- Presenter
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- Florence Marie Neric Atienza, Senior, Electrical Engineering Mary Gates Scholar, NASA Space Grant Scholar
- Mentor
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- Rania Hussein, Electrical & Computer Engineering
- Session
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Session L-1D: Health, Safety & Communities
- 9:30 AM to 11:00 AM
The COVID-19 pandemic necessitated a shift to online learning options which brought significant challenges to courses with major hands-on components. The Remote Hub Lab (RHLab) of the University of Washington's Electrical and Computer Engineering department was established in response to the pivot to online instruction. The RHLab provided students with remote access to industry-grade hardware, an initiative that eliminated the need for shipping lab kits during the pandemic as well as the maintenance and purchase of new components after the return to in-person instruction. The lab has been used successfully since Autumn 2020 in delivering the Electrical Engineering (EE) 371 course. A recent study showed that students who use the RHLab for assignments have similar learning outcomes to those in traditional offerings with physical lab kits. This research builds on that study, exploring educational improvements to engineering laboratories and seeking to increase scalability and advance accessibility for wider audiences and underrepresented communities. By discovering how engineering laboratories can be more accessible for learners in a post-pandemic lens, this research identifies an optimal combination of remote methods for engineering laboratories through three data-gathering approaches. First, I conducted a literature review about equitable access in engineering education and remote engineering labs in a post-pandemic context. Then, I conducted a survey among winter 2022 EE 371 students, qualifying and quantifying their definition of equitable and scalable access. Finally, I developed an introductory digital logic lab curriculum which leads to Hardware Description Language (HDL) proficiency. These primer projects which leverage the RHLab allow for self-guided exploration of digital logic, and the curriculum will be used in future RHLab documentation and advancements. Expected findings include the surveyed students’ suggestions for improving the accessibility and scalability of remote labs and engineering education, results which will be implemented in the RHLab’s future work.
- Presenters
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- Yana Ulitsky, Fifth Year, Speech & Hearing Sciences
- Anna Nolan, Fifth Year, Speech & Hearing Sciences
- Mentors
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- Amy Pace, Speech & Hearing Sciences
- Alexander Tang, Asian Languages & Literature
- Session
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Session L-1D: Health, Safety & Communities
- 9:30 AM to 11:00 AM
Mental state terms refer to the narrator’s interpretation of a character’s cognitive state such as what the character says, wants, intends, or thinks (Altman et al., 2015). However, previous research on mental state terms has documented conflicting results regarding the frequency of mental state terms used across languages (Altman et al., 2015; Fichman et al., 2021). The current research examines children’s use of mental state terms by elementary school students (1st, 3rd, 5th, and 6th grade) enrolled in a Mandarin-English Dual Language Immersion (DLI) program in California. Children completed a story-telling task, and their narratives were based on the wordless picture book “Frog where are you?” in English, and “Frog goes to dinner” in Mandarin. Speech samples were collected and recorded over Zoom and then transcribed on Computerized Language Analysis (CLAN) software. Transcripts were coded for instances in which individuals of each grade level used mental state terms. Data collection is complete and analysis is in progress. In this study we will answer: (1) How often are children using mental state terms during a narrative production task in Mandarin and English? (2) What kind of emotional language use differences are seen across Mandarin-English and grade levels? We hypothesize that the frequency of mental state terms will be higher in English because English-speaking cultures place greater emphasis on conveying motivations or feelings involved (Sah & Torng, 2016). Across grade levels, we expect older children to use mental state terms at a higher frequency than their younger peers. Investigating how children make use of these devices in narrative production as they acquire two languages can provide insight into cultural priorities around storytelling.
- Presenter
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- Eden Gres, Fifth Year, Postbaccalaureate Study
- Mentors
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- Ann Murkowski, Biological Sciences, North Seattle College
- Heather Price, Chemistry, Program on Climate Change, North Seattle College
- Session
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Session L-1D: Health, Safety & Communities
- 9:30 AM to 11:00 AM
Improper hand hygiene can lead to the transmission of various diseases including gastrointestinal infections, such as salmonellosis, and respiratory infections, such as influenza, colds and coronavirus. The area under the fingernails (subungual area) is a source of bacteria accumulation that is often overlooked during hand washing. This research evaluates the effect of fingernail length on the effectiveness of a 20 second hand wash on reducing subungual bacteria counts. We performed a randomized controlled trial to determine total bacteria counts of the subungual area right before and after a 20 second hand wash with antibacterial soap. Bacteria counts were determined on standard media after a 72 hour incubation. Subjects were grouped by fingernail lengths of 0mm, 0-1mm, 1-2mm, >2mm, with a control group of 0mm. The results suggest that regularly trimming fingernails and paying attention to the subungual area during hand washing may be an important tool in preventing infections and diseases caused by pathogenic bacteria and viruses. This is especially important for people with impaired immune systems or young children who are more susceptible to infections, as well as for people who can transmit diseases to others, like healthcare personnel and childcare providers.
- Presenter
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- Rachel Kinkley, Senior, Psychology, Informatics
- Mentors
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- Megha Santhosh, Psychiatry & Behavioral Sciences, Seattle Children's Research Institute
- Sara Jane Webb, Psychiatry & Behavioral Sciences, Seattle Children's Research Institute
- Session
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Session L-1D: Health, Safety & Communities
- 9:30 AM to 11:00 AM
Autism Spectrum Disorder (ASD) is a developmental disorder that can impair social and communication skills. Many individuals diagnosed with ASD experience other mental health disorders such as anxiety and depression. Research has estimated that between 63-70% of people with ASD suffer from depression while 50-58% experience anxiety. Anxiety and depression both have been found to have a negative correlation with self-compassion for ASD children and typically developing (TD) children. Self-compassion is the concept of being caring towards oneself and is characterized by three facets: (1) self-kindness (2) common humanity, and (3) mindfulness. The present study seeks to explore the relationship between self-compassion and anxiety/depression and how this may vary for children with ASD compared to TD children. To examine this, 55 children (ASD=21), ages 7-17 years from the longitudinal ACE2 study, a five-site NIH-funded study on gender differences in autism were included in the analysis. ASD diagnosis was confirmed via standardized measures. Self-compassion was measured using the Self-Compassion Inventory for Youth, a self-report tool that generates scores on two scales: self-compassionate coping scale and self-punitive coping scale. Anxiety and depression were measured using the Youth Self Report (YSR), a self-questionnaire assessing symptoms of anxiety and depression. We expect that children with ASD will experience a stronger negative correlation between self-compassion and anxiety/depression than TD children. This relationship is critical to understand as individuals with ASD can experience difficulty practicing self-compassion. Cognizance of the relationship between these two constructs may help inform beneficial interventions and treatments for children with ASD to alleviate symptoms of anxiety and depression.
- Presenter
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- Jennifer (Jen) Gerrard, Sophomore, Criminal Justice, Shoreline Community College
- Mentor
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- Linda Forst, Criminal Justice, Shoreline Community College
- Session
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Session L-1D: Health, Safety & Communities
- 9:30 AM to 11:00 AM
Child-to-Parent Violence (CPV) is defined as youth's actions to gain power and control over a parent or caregiver with the deliberate and pervasive use of physical, psychological, and/or financial means. Research shows that 7-22% of the population experiences CPV, also known as APV (Adolescent-to-Parent Abuse). CPV is one of the most rapidly growing, underreported, and under-researched societal problems. This literature review tracks the evolution of CPV in definition and scope. It categorizes abusers and abuses including underlying psychopathology while defining victim and perpetrator indicators and risk factors. It highlights barriers in seeking, obtaining, and completing rehabilitation which include cultural contexts and stigma to familial role reversals and inadequate resources. The complexity of CPV is reflected in the lack of acceptance, array of responses, and inadequate interventions shown to exaggerate the recidivism and drop-out rate of intervention systems that are not robust or adequately designed specifically for CPV. The review shows that without intervention, the cycles of multi-generational family abuse including CPV will continue to rise and gain intensity. I reviewed peer-reviewed scholarly articles and government documents to evaluate multiple aspects of CPV responses and interventions categorized as crisis response, therapeutic interventions, judicial interventions, and hybrid models in their availability and effectiveness. I found that interventions which offer full-family/community, wrap-around, multi-faceted methods are the most effective to reduce stigma, improve overall family well-being, while reducing negative outcomes. Therefore, these systematic CPV intervention methods should be modeled everywhere with encouragement for more robust research in the phenomenon of Child-to-Parent Violence resulting in healthy societies.
- Presenter
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- Natasha Ann Sidik, Senior, Psychology
- Mentors
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- Jennifer Mankoff, Computer Science & Engineering
- Kelly Mack, Computer Science & Engineering, Computer Science
- Session
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Session L-1D: Health, Safety & Communities
- 9:30 AM to 11:00 AM
Disability Services (DS) are the most common strategy for ensuring that students with disabilities have access to higher education. These offices provide accommodations for students that can apply to both physical (e.g., building) and digital (e.g., course content) accessibility. Prior work has shown that the access needs of disabled students are not always successfully provided, and if they are, they are not always accomplished in a timely manner. Consequently, there may be dissonance between when professors believe an accommodation has been fulfilled (e.g., when a PDF they posted has been made accessible by DS) and when it is actually completed. While prior work has documented the accessibility challenges faced on university campuses and with disability services, work has not yet focused on how to better support DS, student, and faculty interactions and communication. This study aims to do so by investigating how communication currently flows, the issues that arise within interactions and implementations, and whether technical solutions can better support interaction for the accommodation fulfillment process.
- Presenters
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- Nicole LaBelle, Senior, Gender, Women, and Sexuality Studies
- Katie Ward, Senior, Gender, Women, and Sexuality Studies
- Mentor
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- Neil Simpkins, Interdisciplinary Arts & Sciences (Bothell Campus), UW-Bothell
- Session
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Session L-1D: Health, Safety & Communities
- 9:30 AM to 11:00 AM
I, along with advisor Dr. Simpkins and student peer Katie Ward conducted research on integrating disability studies in their classrooms, by surveying faculty and students who self-describe as having a disability across an extensive tri-campus state school system. With an emphasis on intersectionality, interdisciplinarity, and interrogating diversity, the team researchers, including myself, will offer tools for bringing disability studies into conversation with existing curricula. In spending the past two quarters on this project, I have extensively read about disability, intersectionality, and interdisciplinarity. I have since utilized these readings to correctly write the surveys the team used for collecting data, being a significant contributor to our paper, and being a significant contributor to the term reference collection and academic resource collection. At the symposium, I will outlay the progress our team has made thus far, including writing the survey, sending them out to all three University of Washington campuses, and receiving the data back to analyze it and make conclusive understandings. I will also present the disability term book and resource collection that we compiled for faculty, staff, and students to access utilizing disability curriculum content. The rest of the team and I will then address our future hopes for implementing a disability curriculum and the concerns of both groups with integrating disability studies in classrooms across the curriculum. I will also describe their use of Pressbooks to publish an open-source resource that collects their findings; this resource offers suggested materials, teaching strategies, and research guides to support instructors who are less familiar with disability culture and disability studies to bring disability-related content into their teaching.
- Presenter
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- Sashi Kala Govier, Senior, Psychology UW Honors Program
- Mentors
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- Noam Weinbach, Psychology
- Eric Stice, Psychiatry & Behavioral Sciences, Stanford University
- Session
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Session L-1D: Health, Safety & Communities
- 9:30 AM to 11:00 AM
Previous studies show that the high prevalence of body image concern and disordered eating among Western women precipitates from the promotion of an unrealistically thin body ideal. Exposure to thin-idealized images on social media has been found to increase body dissatisfaction and perpetuate internalization of anti-fat attitudes. The present research examined whether implicit anti-fat attitudes can be internalized without ever being visually exposed to body shapes. Preliminary results from a sample of blind women (N = 18) in Israel revealed that implicit anti-fat attitudes in blind females are comparable to those of sighted controls. The purpose of this study was to expand on these original findings by administering a novel auditory weight-bias Implicit Association Test (IAT) to larger samples of blind women (N = 30) and sighted controls (N = 30) across the United States. Participants completed an auditory IAT in which they paired words describing thin bodies and words describing overweight bodies with either negative or positive words in congruent and incongruent blocks. Afterwards, they answered self-report questionnaires to evaluate body dissatisfaction, pursuit of the thin ideal, and perceived pressure from family, friends, significant others, and the media to attain a thin body. In our analysis, I helped compare reaction times of blind and sighted female participants. Implicit anti-fat bias was reflected as slower reaction times when words describing overweight bodies were paired with positive words compared to when they were paired with negative words. If results of the present study replicate the preliminary results, we will develop stronger evidence towards the existence of non-visual influences that contribute to thin-ideal internalization. Additionally, these results would demonstrate that internalization of the thin-ideal can occur without any visual exposure to body shapes.These results may shed light on sociocultural factors that should be considered in evaluating disordered eating risk among blind women.
- Presenter
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- Jackie Madhava, Senior, Healthcare Leadership (Tacoma Campus) UW Honors Program
- Mentor
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- Sharon Laing, Nursing, University of Washington Tacoma
- Session
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Session L-1D: Health, Safety & Communities
- 9:30 AM to 11:00 AM
The COVID-19 pandemic exacerbated the impact of social determinants of health factors which consequently led to a disproportionate effect of the virus on the health of immigrant communities. This study focuses on African communities in King County, WA and explores how socio-economic factors such as lack of adequate healthcare, low-income status, and lack of social safety nets were made worsened by the COVID-19 pandemic. The research team recruited African immigrants from a local community health center, Health Point Community Health Center in Kent, Washington. The respondents (n=8) were interviewed via zoom or in-person and were asked 10 open-ended questions which addressed the experience of social, economic, and psychological challenges during the global pandemic. Thematic analyses were conducted of transcripted responses. Several themes emerged: (1) Stress and distress attributed to the inability to provide for respondents’ basic familial needs; (2) Experience of anxiety attributed to housing insecurity; (3) Emotional trauma associated with inadequate access to healthcare resources. These findings demonstrate that African communities experienced substantial social and economic disadvantages, however, these factors were substantially worsened by the global pandemic and placed this community at heightened risk. It is recommended that members of racial and ethnic minoritized groups, such as the African community, must be supported with resources enabling access to basic social, psychological, and healthcare needs. Future public health strategies should focus on empowering the community by engaging its members in policy-making processes that can help assure that their needs can be met.
- Presenter
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- Tony Fu, Senior, Bioengineering Mary Gates Scholar
- Mentors
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- Wyeth Bair, Biological Structure
- Amy Orsborn, Bioengineering, Electrical & Computer Engineering
- Session
One of the great outstanding challenges in neuroscience is to understand how the human brain represents distinct objects. Studies have shown that a significant number of neurons in the visual cortex of non-human primates responded differentially to the sides of figures in 2D images even when the figures were outside of their classical receptive fields. This selectivity, termed border ownership, is believed to be responsible for the Gestalt idea of figure-ground organization, a process that allows specific regions of an image to be grouped together and given "thing-like" qualities. Many computational models have been developed to reproduce the experimental results of border ownership studies. At the same time, convolutional neural networks (CNNs), especially those specialized in image segmentation, are able to learn to solve the problem of figure-ground organization through supervised learning, all without the need for explicitly defined computational rules. We hypothesize that there is knowledge to be gained from CNNs, for they are excellent computational models for visual selectivities. Our novel 'artiphysiology' technique allows us to study the border-ownership phenomena in CNNs at a single-unit level in the same way an electrophysiologist studies the brain. The technique takes advantage of the accessibility and lack of noise of CNNs to enable high-throughput identification and analysis of circuit mechanisms. Starting from border ownership, the research aims to elucidate the mechanism by which figure-ground organization occurs at different layer depths and in different CNNs, using natural and artificial visual stimuli. The research has several applications, including improving CNN efficiency and interpretability as well as allowing for a better understanding of object recognition.
- Presenter
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- Neil Rao, Senior, Biology (General)
- Mentor
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- Daniel Hass, Biochemistry
- Session
Mammalian retinas function in a more hypoxic environment than most tissues. The retina thus does not exclusively use oxygen as a terminal electron acceptor in the electron transport chain (ETC). As a result, expression of proteins involved in energy metabolism may be affected. We determined the levels of metabolic proteins of various tissues, and found that compared to eyecup (consisting of retinal pigment epithelium and choroid vasculature), kidney, and cerebellum tissue, the retina expresses higher levels of Hexokinase I. This suggests that glycolysis may occur faster in the retina than in other tissues. We also observed higher levels of the ETC proteins cytochrome c and subunit 4 of cytochrome c oxidase levels compared to both the eyecup and cerebellum. This implies an increased capacity for electron transport in the retina, despite a lower O2 tension. We also investigated post-translational protein modifications that could be affected by a hypoxic tissue microenvironment. Lysine succinylation is one such modification, and is controlled by regulators of energy metabolism such as SIRT5. I observed that succinyl-lysine intensities were higher in the retina than in the cerebellum, kidney, liver, and eyecup. Further investigation will be necessary to determine the role that lysine succinylation plays in the retina. Through these experiments we show that retina tissue is well-suited for rapid energy metabolism in spite of its hypoxic environment.
- Presenter
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- Alex Tsobanoudis, Senior, Neuroscience, Biochemistry Mary Gates Scholar
- Mentors
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- John Neumaier, Pharmacology, Psychiatry & Behavioral Sciences
- Phillip Silva, Psychiatry & Behavioral Sciences
- Session
Drug addiction and abuse exacerbate many health issues globally. The nucleus accumbens (NAc), a region within the brain, contains dopamine receptor D1 and D2 medium spiny neurons (MSNs) with relevance to addiction-related behaviors. I investigated the effect of D2 MSNs on behavioral economics of cocaine-seeking through chemogenetic activation of Designer Receptors Exclusively Activated by Designer Drugs (DREADD). I used a transgenic line of rats specifically expressing the Cre-recombinase enzyme in D2 MSNs. This enzyme is responsible for selective expression of otherwise-inert viral vectors by reversing its sequence, allowing for neuron-specific genetic manipulation. I bilaterally injected either a Cre-dependent AAV containing the DREADD hM3Dq or a fluorescent marker as control into the NAc of male rats; additionally, I catheterized the rats to allow for cocaine self-administration. Activation of hM3Dq required binding to clozapine-N-oxide (CNO)—the “designer drug”—and because only D2 MSNs expressed this DREADD, they were the only neurons to activate upon administration of CNO. After recovery, rats were trained to press a lever to receive cocaine infusions; and once this self-administration task was learned, the animals were introduced to reinforcement schedules with blocks of trials with differing unit doses of cocaine. Once this phase was learned, the rats were tested in sessions that were preceded either with an injection of saline or CNO, to test how chemogenetic activation of D2 MSNs affects the cocaine demand curve. Based on studies discussing the roles of D2 MSNs, I predict that chemogenetic activation of these neurons will correlate with decreased demand for cocaine concentrations compared to those injected with vehicle or green fluorescent protein alone. This study can produce valuable insight into the role this pathway plays in the development of drug-seeking behavior, ultimately leading to a deeper understanding of the system and possible avenues for treating addiction.
- Presenter
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- Sophia Elizabeth Mar, Senior, Biochemistry Mary Gates Scholar, Innovations in Pain Research Scholar
- Mentor
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- Benjamin Land, Pharmacology
- Session
Morphine and other mu-opioid receptor (MOR) ligands are commonly used treatments for pain management. Long-term administration of opiates results in receptor desensitization and tolerance, inhibiting treatment efficacy and contributing to the current opioid epidemic. Following opioid administration, peroxiredoxin 6 (PRDX6) is recruited to the opioid receptor complex through JNK (cJun N-terminal Kinase)-dependent signaling. PRDX6 activation generates reactive oxygen species (ROS), resulting in opioid receptor desensitization and one form of opioid tolerance. Recently, cannabidiol (CBD) has been implicated in decreasing acute morphine tolerance. The present study will establish a connection between morphine and CBD cotreatment with the hypothesis that cotreatment will decrease ROS production. To measure ROS, I will employ the genetically encoded ROS sensor HRM63, which fluoresces proportionally to ROS production. Because ROS is a product of JNK/PRDX6 signaling, measuring the strength of ROS-dependent fluorescence is a simple way to visualize my hypothesis using in vitro cell models. In each experiment, treatments of morphine, CBD, or combined morphine and CBD will be delivered to plated HEK293 cells stably expressing both MOR and HRM63. I will then image the cells using fluorescence microscopy to quantify ROS response to treatment. I predict that cotreatment of CBD with morphine will result in lower ROS production compared to morphine treatment alone. These results will be crucial in the ongoing characterization of CBD's role in opioid tolerance.
- Presenter
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- Matt Helton, Senior, Neuroscience, Applied Mathematics Mary Gates Scholar
- Mentors
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- Rachel Klevit, Biochemistry
- Maria Janowska, Biochemistry
- Session
Small heat shock proteins (sHSPs) fall into a class of proteins known as protein chaperones, molecular tools that help prevent aggregation, an often-unhealthy phenomenon in which proteins clump together. This protection against aggregation plays a critical role in helping to prevent diseases such as cataracts, and may play a role in preventing neurological diseases associated with protein aggregation such as Alzheimer's disease or Parkinson's disease. Yet little is known about the mechanism by which sHSPs prevent misfolded proteins from aggregating. The study of this mechanism is significantly complicated by the dynamic nature of sHSPs; rather than having just one structure, these protein chaperones fluctuate between several different stable structures. The purpose of this research project was to see what insights into sHSP structure and function could be gleaned by simplifying this dynamic structure. We focused on the central region of a small heat shock protein, known as the alpha-crystallin domain (ACD). Individual ACDs associate to form dimers in an antiparallel fashion, and in doing so form a central fold known as the dimer-interface groove. In a typical wild type small heat shock protein, these ACDs would continuously slide against each other along this groove. We created three distinct cysteine mutations in the ACD of the small heat shock protein HSPB5, producing the R116C, E117C, and F118C mutants. We expected each of these mutant dimers to form a disulfide bond tethering the two ACD subunits of the dimer together at the dimer interface groove, preventing them from sliding against each other, and therefore locking the dimer's central region into one of three distinct conformations. Additionally, we expected the affinities of other proteins for the mutants' dimer-interface grooves to differ between mutants, giving us insight into how the conformational state of the ACD affects its ability to interact with other proteins.
- Presenter
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- Daniel X Chen, Senior, Neuroscience Mary Gates Scholar
- Mentor
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- Dong-Hui Chen, Neurology
- Session
Spinocerebellar ataxias (SCAs) are a group of hereditary diseases that are characterized by slowly progressive incoordination in gait, hand and eye movement, and cerebellum degeneration. Most forms of SCAs are caused by an expansion of short tandem repeats; however, SCA 14 is an autosomal dominant form of the disease associated with mutations in the Protein Kinase C gamma (PRKCG) gene, which encodes for the PKCγ protein, a serine/threonine kinase that plays a role in signaling and regulating cerebellar Purkinje cells' development. Our lab first reported this genetic cause in SCA 14 patients. To understand the pathogenesis of SCA 14, our lab generated mouse models of SCA 14 mutant (H101Y, F643L) and wild type (WT) PKCγ transgenic (Tg) mice using modified human-BAC constructs. By 3 months of age, both mutant Tg lines demonstrated impaired rotarod performance as compared to WT-Tg mice and showed PKCγ aggregates. Here I further examined the pathological changes by quantitatively analyzing the morphology and fluorescent intensity changes of Purkinje cells in mice cerebellum across age groups of 2-months, 6-months, and 12-months. I observed the dendritic arborization abnormality at an early age, and the abnormality is more severe in the Tg-PKCγ-F643L mice. PKCγ intensity in the cell body decreased in 2-month H101Y and F643L mice. These results revealed pathological changes and provided evidence the missense mutations caused an early development of SCA 14 cerebellar disease. It will be interesting to compare and verify these findings from the Tg mice in SCA 14 patients’ autopsy brain tissues as it could provide novel measures to characterize SCA 14 pathology.
- Presenter
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- Urmi Hofland, Senior, Biochemistry Mary Gates Scholar
- Mentor
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- Jonathan An, Oral Health Sciences, University of Washington School of Dentistry
- Session
The world’s population is rapidly aging, and we now increasingly face challenges related to the prevalence of age-related diseases. Studies from Geroscience have identified hallmarks of aging, such as the cellular senescence and mechanistic target of rapamycin (mTOR) pathways, that can be disrupted to improve health and lifespan in model organisms. Previous studies have shown that these pathways can be targeted pharmacologically by the mTOR inhibitor rapamycin or the senolytic drug combination Dasatinib + Quercetin (DQ). Our laboratory’s published data shows that rapamycin restored oral health in aged mice and reversed periodontal disease. While attempting to uncover the mechanism behind this reversal, our laboratory discovered that the age-related increase in cellular senescence was attenuated by rapamycin treatment. Thus, we hypothesized that targeting cellular senescence may provide an alternative therapeutic strategy to phenocopy the impact of rapamycin on aging oral tissues. I compared the effects of control (n=5), rapamycin (n=5), and the senolytic drug combination, DQ (n=5), in aged male mice (20-21 months old). Western Blot was performed on the mandible and salivary gland tissues to analyze the senescence marker p16INK4a. Histological assessment of H&E and lipofuscin staining was completed on the salivary glands to compare the effects of age, rapamycin, and DQ treatment. In male salivary glands, I discovered the age-related increase in p16 expression was decreased after rapamycin treatment, but not with DQ treatment. There were no significant changes in levels of p16 in the mandible with age or with the administration of rapamycin or DQ. Rapamycin treatment attenuated cellular senescence in male salivary glands, while the senolytic cocktail DQ had no impact on the aging male salivary glands. Future studies could be performed on female mice, with the addition of alternative senolytics which may target other markers of cellular senescence beyond p16.
- Presenter
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- Caleb Abe Kono, Junior, Biochemistry McNair Scholar
- Mentors
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- Brianne King, Chemistry
- Jesse Zalatan, Chemistry
- Session
Enzymes have recently been incorporated into multiple high-value industrial syntheses, demonstrating the utility of enzymes as highly selective catalysts for practical industrial processes. However, the current scope of non-biological enzymatic reactions is narrow and new reactions and reaction pathways need to be engineered. The goal of our work in the Zalatan lab is engineering enzymes as catalysts in carbon-hydrogen bond functionalization reactions, a transformation critical for practical industrial synthesis where selective catalysis is still a major challenge. Importantly, we are interested in exploring more efficient and informed engineering approaches by establishing structure-function relationships with the enzymes that we work with. Our model system for this work is the non-heme iron(II) 2-oxoglutarate dependent oxygenase superfamily (Fe(II)-2OGs). We are using a high-throughput microfluidics based kinetic assay to determine key sites that we can target for mutagenesis and directed evolution in a candidate Fe(II)-2OG found to catalyze a new reaction. Overall, we expect that this work will enable new directions and principles for engineering Fe(II)-2OGs, and that lessons learned here can then be extended to additional industrially-relevant enzyme families.
- Presenter
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- Michelle (Cing-Yu) Hsu, Senior, Medical Laboratory Science, Biology (General)
- Mentors
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- Cecilia Yeung, Laboratory Medicine and Pathology, Fred Hutchinson Cancer Research Center
- Pooja Sandhuria, Fred Hutchinson Cancer Research Center
- Session
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Session L-1F: Biomedical Sciences and Medicine
- 9:30 AM to 11:00 AM
The purpose of this prevalence study is to determine if MAGEA1 specific cytotoxic T cells are good therapy for head and neck squamous cell carcinoma (HNSCC) and hepatocellular carcinoma (HCC). MAGEA1 gene is a member of the MAGEA gene family and MAGE-A antigens are expressed in a variety of cancers. Previous studies have shown a correlation between the MAGEA1 gene with HNSCC and HCC but further studies were not performed to validate it. We performed a prevalence study by immunohistochemistry staining (IHC) using tissue microarray (TMA) slides. We stained a total of 9 representative formalin-fixed paraffin embedded cores of HNSCC (HN804 and HN602) and 124 cores of HCC (LV809b and LV631) tumor tissue using mouse monoclonal antibody clone MA454 at a concentration of 8 ug/ml. We performed antigen retrieval using pH 9.0 Tris-EDTA buffer and achieved visualization via deposition of DAB chromogen by horseradish peroxidase reaction. Then, we use IHC to test and validate this protein marker and evaluate whether it is a good biological target in treatments for certain population groups. Two pathologists defined positive staining tumors as those demonstrating an intensity of 1+ or greater on nuclear or cytoplasmic compartments of the cell. Staining seen on stroma, artifactual folds, or necrotic tissue was not counted. By analyzing the percentage that is positive for this biomarker, we can determine if the MAGEA1 gene is a useful target for these cancer patients. After examining 129 cases of HNSCC, 10 positive cases indicated a prevalence rate of 7.75%; of the 124 HCC (liver cancer) cases examined, 14 positive cases showed a prevalence rate of 11.29%. In conclusion, about 8% of HNSCC cases and about 11% of HCC cases can be targeted with the TCR treatment so it can be potentially beneficial as a targeted therapy worthwhile to pursue.
- Presenter
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- Jordan Jackson, Graduate, UW Post-Baccalaureate Research Education Program
- Mentors
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- Julie Mathieu, Comparative Medicine
- Gabriele Varani, Chemistry
- Session
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Session L-1F: Biomedical Sciences and Medicine
- 9:30 AM to 11:00 AM
Renal Cell Carcinoma (RCC) kills more than 14,800 people annually in the United States alone. While immune and targeted therapies have shown some promise, late stage RCC is an aggressive and lethal disease, and so, new therapies that can treat RCC are urgently needed. TRAIL (Tumor necrosis factor (TNF)-related apoptosis-inducing ligand) has been shown previously to induce apoptosis in cancer cells by binding to TRAIL receptors DR4 and DR5. Unfortunately, DR5 antibodies have failed to improve patient survival in phase II clinical trials due, in part, to the inability to cluster enough membrane receptors and kill RCC cells in the body. This project is investigating the effects that computationally designed protein nanocages bound to DR5 antibodies have on kidney cancer cells in culture. In collaboration with the Institute for Protein Design, we have recently shown that these nanoparticles induce significant activation of caspase 8 and caspase 3 in renal carcinoma TRAIL resistant cells, but not in healthy primary kidney tubular cells. To further investigate the nanocage-induced apoptosis specificity to DR5 and the involvement of other TRAIL receptors, we used CRISPR/Cas9 to generate knockouts of TRAIL receptors in RCC. We are also investigating the effects of these nanocages on other downstream pathways including the NFkB and cFLIP pathways. This project advances the knowledge of mechanisms involved in TRAIL receptor-mediated apoptosis, and our results suggest a potential new treatment for RCC.
- Presenter
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- Christina Chloe Kuismi, Senior, Biology (Molecular, Cellular & Developmental) CoMotion Mary Gates Innovation Scholar, UW Honors Program, Washington Research Foundation Fellow
- Mentors
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- Lucas Sullivan, Biochemistry, UW/Fred Hutch
- Evan Quon, Human Biology, Fred Hutchinson Cancer Research Center
- Session
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Session L-1F: Biomedical Sciences and Medicine
- 9:30 AM to 11:00 AM
Altered cellular metabolism is intimately linked to cancer, both by supporting the increased metabolic demands of cell proliferation and through changes in metabolism that initiate tumorigenesis. For example, loss of function mutations to the metabolic enzymes Succinate Dehydrogenase (SDH) or Fumarase (FH) of the tricarboxylic acid cycle are sufficient to promote renal cell carcinomas (RCC). Normally, these enzymes fulfill metabolic roles, where SDH converts succinate to fumarate, which is then converted to malate by FH. Inactivating mutations to SDH and FH cause the accumulation of their substrates succinate and fumarate, respectively, which can drive cancer relevant signaling changes. Recently, studies have shown that perturbations to SDH cause resistance to ferroptosis, an iron-dependent form of nonapoptotic cell death. Inversely, another study has shown that FH-inactivation causes ferroptosis sensitivity. Considering SDH and FH are metabolically adjacent and have similar oncogenic consequences, it is unknown why they have opposing effects on ferroptosis induction. Cell death by ferroptosis occurs in response to the accumulation of oxidized polyunsaturated fatty acid-containing membrane lipids. I hypothesize that FH and SDH mutations have different effects on RCC cell lipid metabolism that cause divergent responses to ferroptosis induction. To test how SDH and FH alterations affect ferroptosis induction, I am performing a series of dose response assays with pro-ferroptosis treatments and measuring the effect on proliferation and lipid peroxidation in wild type, SDH-impaired, or FH-impaired cells. To inhibit SDH and FH, I will use two different patients derived RCC cell lines, UOK269 and UOK262, which have endogenous SDH and FH mutations, respectively. Each cell line will be compared to their respective SDH or FH addbacks. Ferroptosis induction is a potential opportunity for cancer treatment. Thus, it is essential to understand how different metabolic alterations affect ferroptosis sensitivity to identify conditions that may be most amenable to ferroptosis induction therapy.
- Presenter
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- Chardai J Thomas, Senior, Biology (Bothell Campus) Washington Research Foundation Fellow
- Mentor
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- Benjamin Freedman, Medicine
- Session
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Session L-1F: Biomedical Sciences and Medicine
- 9:30 AM to 11:00 AM
Autosomal dominant polycystic kidney disease (ADPKD) is a genetic disorder that affects people who have mutations in the PKD1 or PKD2 genes. The prominent feature of this disease is the formation of cysts in the kidneys. Despite ADPKD being genetically heterozygous, cystic tissue from patients with ADPKD also contains cells with homozygous mutations. This causes speculation within the PKD community about whether heterozygous mutations with one mutated copy of the PKD1 or PKD2 gene are sufficient to induce cystogenesis or if two mutated copies are needed. This concept is referred to as the two-hit hypothesis, a somatic mutation (second hit) occurs during the lifetime of the kidney and gives rise to clonal populations of cells that give rise to cysts. The goal of my project is to investigate the two-hit hypothesis and determine if there is cyst formation in the heterozygous organoids. To do so, I use patient-derived hSPC lines modified using CRISPR to express PKD1 or PKD2 mutations. I follow a 21 day differentiation process to produce PKD organoids. I then pick individual organoids to place in suspension for 14 days and track cyst growth by area and amount. If cysts form in heterozygous PKD organoid models at the same rate as the control, it would suggest that heterozygous mutants are unlikely to cause cyst formation, indicating the two-hit hypothesis applies to PKD. Current data collected on mutations in PKD2 have shown heterozygous organoids do not form cysts, however more data is needed to test the PKD1 site. Future applications involve inducing cyst formation in heterozygous mutants using forskolin, an agonist of adenylyl cyclase shown to induce cyst growth. Establishing if heterozygous mutant organoids form cysts has significant implications in ADPKD research by potentially creating a better representation of the disease process, which has been difficult to study in other models.
- Presenter
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- Alberto Sigler, Recent Graduate, Biochemistry, University of Washington UW Post-Baccalaureate Research Education Program
- Mentor
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- David Hawkins, Genome Sciences, Medicine, University of Washington School of Medicine
- Session
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Session L-1F: Biomedical Sciences and Medicine
- 9:30 AM to 11:00 AM
Type 1 diabetes (T1D) is an autoimmune disease in which the pancreas is unable to produce enough insulin to effectively regulate sugar into the body’s cells. Recent literature suggests that T1D has a prevalence and incidence of 9.5% and 15 per 100,000 people respectively. T1D risk is multifactorial but is heavily dependent on genetics and the environment. Twin studies have shown that although disease risk for the general population is 0.4%, children of diabetic patients are 2 to 9% at risk and identical twins are up to 70% at risk of developing T1D. Genome-wide association studies have shown that many genetic variants associated with T1D risk are found in gene regulatory regions such as enhancer elements. As T1D is an autoimmune disease with a strong genetic component particularly in non-coding, regulatory regions, it follows that thorough genomic profiling of immune cells such as T cells can help identify functional non-coding genetic variants that alter gene regulation for target genes associated with disease risk. Assay for Transposase-Accessible Chromatin with high-throughput sequencing (ATAC-seq) allows for unbiased identification of cis-regulatory elements (CREs). By utilizing ATAC-seq on various T cell types of both healthy control donors and T1D patients, chromatin accessibility can be collected, and the underlying sequence data can be used to determine allelic differences in transcription factor binding due to T1D-associated genetic variants. I am currently applying ATAC-seq to three T cell subtypes isolated from both donor cohorts. Through these data functional links will be made between non-coding genetic variants and associated target genes to better understand how they impact disease risk in T1D.
- Presenter
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- Mallica Cary, Sophomore, Biology, Bellevue Coll
- Mentor
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- Grady Blacken, Chemistry, Bellevue College
- Session
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Session L-1F: Biomedical Sciences and Medicine
- 9:30 AM to 11:00 AM
Irritable bowel syndrome (IBS) is a disease that affects many people worldwide. Clinical trials using probiotic bacteria to treat IBS show promising outcomes, although the molecular mechanisms of probiotics and their effect on gut health is not completely understood. Multiple studies comparing different strains of probiotics show Lactobacillus plantarum and Bifidobacterium longum as the most effective strains in inhibiting the release of proinflammatory factors in the gut and promoting proliferation of healthy gut bacteria. The purpose of this study is to evaluate the protein profile of probiotic bacteria Lactobacillus plantarum and Bifidobacterium longum in both healthy gut and IBS gut conditions. To observe how Lactobacillus plantarum and Bifidobacterium longum respond to different simulated gut conditions, samples of the bacteria will be isolated from probiotic supplements. These samples will be grown in aliquots representing different simulated anaerobic gut conditions for 12-16 hours at 37°C. Lactobacillus plantarum and Bifidobacterium longum will be grown separately and grown combined within these conditions. To enrich secreted proteins, the supernatant from each aliquot sample will be clarified using centrifugation. Secreted proteins will be solubilized and denatured with sodium deoxycholate. The denatured proteins will be reduced with dithiothreitol and alkylated with iodoacetamide. The sample will be diluted using ammonium bicarbonate and digested by trypsin. Tryptic peptides will be analyzed using liquid chromatography and mass spectrometry. Tryptic peptides will be identified using the SEQUEST search engine with a reference database. I anticipate the probiotic strains will demonstrate differential proteomics when isolated and combined in the healthy gut and IBS gut conditions. The secreted protein analysis completed in this study will further the understanding of the probiotic molecular mechanism of promoting gut health.
- Presenter
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- Alex Fu, Senior, Biology (Physiology)
- Mentors
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- Song Park, Dermatology
- Paul Nghiem, Dermatology, Medicine
- Neha Singh, Dermatology
- Session
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Session L-1F: Biomedical Sciences and Medicine
- 9:30 AM to 11:00 AM
Early-stage melanoma, squamous and basal cell carcinomas have local control rates of >90% with wide excision after pathologically clear margins and >95% with Mohs micrographic surgery. Local control rates for these approaches are not well defined in Merkel cell carcinoma (MCC). Herein, we analyzed data from 80 patients (pts) in a Seattle-based IRB-approved registry who had local MCC and underwent surgical excision with pathologically clear margins. Patients who had local radiation therapy after surgery were excluded as radiation affects recurrence rate independent of surgery. We also performed meta-analysis of 13 published studies (846 pts) based on a random-effects model. For the 80 pt cohort, local recurrence rate (LRR; ≤2 cm from the primary tumor) was 10%. In-transit recurrence rate (ITR; >2cm from primary) was 1%. Regional nodal recurrence rate (RRR) was 5%. This cohort had low-risk characteristics with small primary tumors (74% were ≤1 cm, 23% were 1-2, and 4% were >2 cm). No residual tumor was found in 60% of re-excisions while 29% had closest pathologic margins <1 cm. Meta-analysis of 9 published studies (745 pts) who underwent excision with clear pathological margins yielded 16.4% LRR [95% CI 8.3-26.5], 9.5% ITR [95% CI 5.4-14.6], and 32.1% RRR [95% CI 19.1-46.7]. Data from 4 studies (101 pts) who underwent Mohs yielded 3.6% LRR [95% CI 0-16.3], 12.8% ITR [95% CI 6.4-21.1], and 20.7% RRR [95% CI 13.8-38.3]. In each cohort, LRR/IRR following surgical excision with pathologically clear margins was >10%. This suggests MCC is more likely to recur near the excision site than other skin cancers and may reflect biological difference in the MCC local extension pattern (discontinuous spread beyond pathologically clear margins). Even for pathologically negative excisions, higher risk tumors may benefit from adjuvant radiotherapy.
- Presenter
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- Pavithra Sundaravaradan, Senior, Microbiology UW Honors Program
- Mentor
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- Elia Tait Wojno, Immunology
- Session
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Session L-1G: Biological Research from Antibiotics to Zebrafish (A-Z)
- 9:30 AM to 11:00 AM
Gastrointestinal helminth infections are among the most common infections worldwide affecting about 1.5 billion people. Previous work shows that during infection with Trichuris muris, a mouse model of human whipworm in the large intestine, basophils, rare innate immune cells, accumulate at the site of infection and upregulate the expression of Notch receptors, part of a signaling pathway that regulates gene expression. Due to this discovery, we are investigating the importance of Notch receptor expression in basophils for the anti-helminth immune response and parasite clearance during infection. With single-cell RNA sequencing (scRNAseq) we are able to analyze the expression of individual cells to better understand immune cell response to infection. To investigate how Notch signaling in basophils impacts CD4 T cell function during infection, we performed scRNAseq on CD4 T cells from the intestine of naive and T. muris infected wild-type mice and mice without Notch signaling specifically in basophils. Using this approach, for the first time, we have characterized the gene expression profile of CD4 T cells at the site of infection, allowing us to identify different CD4 T cell subpopulations and their differential gene expression. This will provide insight into how T. muris infection impacts CD4 T cell gene expression and function, and the importance of Notch signaling in basophils for promoting T cell function during infection. Ongoing work is addressing how CD4 T cells and basophils interact in the large intestine, how the highly regulated environment impacts the development of the CD4 T cell response and the T cell receptor repertoire in T. muris infection, and the importance of basophil Notch signaling for this process. A better understanding of the response to helminth infection and manipulation of Notch signaling-dependent cellular responses can lead to the discovery of novel treatments for helminth infection and allergic diseases.
- Presenter
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- Ching Wen Chiu, Senior, Microbiology
- Mentors
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- Amy Schaefer, Microbiology
- E Peter Greenberg, Microbiology
- Session
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Session L-1G: Biological Research from Antibiotics to Zebrafish (A-Z)
- 9:30 AM to 11:00 AM
Antimicrobial peptide (AMPS) hold promise as novel antibiotics for treatment of human infections. However, in general, they fail to reach clinical application because of issues with human cell toxicity or other factors. The AMP colistin (CST), is a rare AMP in clinical use and despite its nephrotoxic effects, has seen increasing use as a last resort to antibiotics. There’s now widespread CST resistance among bacterial pathogens. Our chemist colleagues recently synthesized a new class of AMP mimics, main chain cationic polyimidazoliums (PIMs). Their lead PIMs are potent broad spectrum antibiotics with a novel mode of action. We are interested in developing PIMs for inhalation therapy to treat respiratory infections in people with the genetic disease cystic fibrosis (CF). The bacterium, Pseudomonas aeruginosa, is the major contributor of disease in patients with CF lung infection. Unlike CST, PIM-resistant P. aeruginosa do not emerge in laboratory evolution experiments. We wanted to assess a particularly potent PIM called PIM1D as a potential CF therapeutic. Many antibiotics are inhibited by the secretions in CF lung and we expected this might be true of PIM1D. We used a special in vitro culture medium designed to mimic CF sputum, synthetic CF medium (SCFM). The medium contains the nutrient composition of CF sputum (SCFM-1) along with mucin and DNA (SCFM-2), polymers present at high concentrations in CF lungs. These polymers are known to inhibit many antibiotics’ activity. PIM1D retains high activity in SCFM-1 but activity is reduced by 90% in SCFM-2 compared to SCFM-1 and standard media. The inhibition might be due to either mucin, DNA, or both together. We aim to answer which of these molecules is responsible for inhibition of PIM1D activity. In collaboration with chemists who synthesized PIMs, they will provide PIM1D derivatives and PIMs packaged in nano-carriers to test for better activity in SCFM-2.
- Presenters
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- Julia Walker, Junior, Molecular Biosciences, Bellevue Coll NASA Space Grant Scholar
- Keith Duc Nguyen, Senior,
- Ezgi Ayaz, Sophomore, Bioengineering , Sociology , Bellevue Coll
- Amanda Swenson, Sophomore, AAS-T Engineering , Bellevue Coll
- Mentors
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- Jacqueline Gapinski, Molecular Biotechnology, Bellevue College
- Michael Reese, Undergraduate Academic Affairs, Bellevue College
- Jennifer Pritchard, Science Technology Engineering and Mathematics
- Session
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Session L-1G: Biological Research from Antibiotics to Zebrafish (A-Z)
- 9:30 AM to 11:00 AM
With the impending implications of climate change and global warming, space colonization in the near future will be necessary for the long-term survival of humans. We are examining how exposure to space affects biological aspects of humans by studying a model organism using a CubeSat. A CubeSat is a miniaturized satellite used in space research, built to a set of standardized measurements (10 cm per side), allowing small research projects to be launched simultaneously. We asked the questions: what would the experimental design look like investigating microgravity and UV radiation’s impact on the model organism C. elegans and what is a feasible experiment to design on a CubeSat? In this project we developed this research question to design a molecular biosciences project on a CubeSat. As part of this project, we conducted a literature review to determine 1) how small-scale satellites can be used for this kind of research, 2) what model organism is best suited for our project, and 3) how we can build upon the existing body of knowledge. The literature review, done in consultation with experts in the field, focused on the effects of microgravity and UV radiation on living organisms in the space environment. We didn’t limit our model organism research to C. elegans in the literature review. We used the constraints of the CubeSat to determine our data sampling methods and developed a research question. We anticipate research from our literature review will help us determine the next steps to take in designing our project. We hope to continue this research in preparation for implementing our work in collaboration with UW CubeSat. Research projects and experiments done in CubeSats like this one can advance the research and help address challenges our Earth faces with a rapidly expanding human population and ongoing climate change.
- Presenter
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- Tara Asal Saleh, Senior, Global and Regional Studies UW Honors Program
- Mentor
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- Mariya Sweetwyne, Laboratory Medicine and Pathology
- Session
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Session L-1G: Biological Research from Antibiotics to Zebrafish (A-Z)
- 9:30 AM to 11:00 AM
Mitochondrial dysfunction is characterized by loss of structural integrity and decreased efficiency of the Electron Transport Chain. These changes are linked to cellular senescence, an irreversible end to the cell-cycle that contributes to aging phenotypes and is marked by a cellular senescence-associated secretory phenotype. Understanding this impact of late age mitochondrial dysfunction interventions will contribute to the field of, ‘senolytics’, anti-senescent drugs dedicated to improving health span. Previously, systematic treatment of old mice with tetrapeptide, Elamipretide (ELAM), which interacts with the inner mitochondrial membrane to improve cristae structure and function, reduced mitochondrial dysfunction and senescence in kidney and heart. We hypothesized that additional intervention with Nicotinamide Mononucleotide (NMN), a NAD+ precursor, which contributes to adenosine triphosphate generation, would supplement this finding by enhancing mitochondrial energetic capability and decreasing mitochondrial dysfunction and senescence in aged kidneys. Liver was selected to clarify intervention effects as global vs. kidney-specific mechanisms. Old mice were treated at 24 months-old (mo) for 8 weeks with: ELAM through osmotic pump (3mg/kg), NMN via drinking water (300mg/kg), or both simultaneously. Untreated control mice were 4 mo (young) and 26 mo (old). Contrary to our hypothesis, NMN treatment proved detrimental in kidney by increasing mRNA expression of IL-1b, an inflammatory cytokine, relative to untreated aged mice. Further exploration of IL-1b downstream targets showed consistent upregulation of CCL2, an inflammatory chemokine and KIM-1, a marker of proximal tubule injury in NMN treated mice. ELAM, however, provided rescue in the coupled treatment group, by significantly reducing mRNA expression of IL-1b and CCL2 relative to NMN alone. These data suggest that ELAM lessens senescent burden by reducing renal inflammation; conversely NMN exacerbates existing inflammation pathways in aged kidneys. This result was not observed in liver, demonstrating tissue specificity. Further work will investigate the cellular source of inflammation through RNA in situ hybridization.
- Presenter
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- Nathaniel Yee, Senior, Biology (Physiology) Mary Gates Scholar
- Mentor
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- Jeff Rasmussen, Biology
- Session
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Session L-1G: Biological Research from Antibiotics to Zebrafish (A-Z)
- 9:30 AM to 11:00 AM
Touch is an extremely important sense to any organism’s understanding of their environment. The anatomy of the touch system is well-characterized: sensory neurons project axons to the skin where they form complexes with many specialized cells. One such specialized skin cell is the Merkel cell, known for its ability to sense gentle touch and texture. Although Merkel cells have been well studied in rodents during adult stages, little is known about Merkel cells during development. The Rasmussen lab recently identified a novel population of zebrafish skin cells sharing many characteristics of mammalian Merkel cells. In both zebrafish and mammals, Merkel cells arise from basal keratinocytes, a stem cell population in the epidermis, during normal skin development. However, the precise mechanisms involved in this process remain unclear. Stem cells can undergo two types of cell division: asymmetric or symmetric division. I hypothesize that Merkel cells develop from asymmetric division of basal keratinocytes, which would allow the production of new Merkel cells while also maintaining a certain level of stem cells. To test my hypothesis, I examined the Merkel cell lineage during zebrafish scale regeneration (to simulate recovery after injury) which we have established as an experimentally tractable system to study Merkel cell differentiation. Testing of my hypothesis has been conducted through two methods: EdU labeling/antibody staining of Merkel cells and photoconversion of Merkel cells. Preliminary results suggest asymmetric division to be occurring, with no “doublets” of recently divided Merkel cells shown in either method to support the occurrence of symmetric division. My results provide novel insights into the lineage connecting basal keratinocytes to differentiation of specialized sensory cells in the skin. I hope these findings can be used to better our understanding of the restoration of touch systems after injury.
- Presenter
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- Hayden Gizinski, Senior, Biology (Molecular, Cellular & Developmental) Mary Gates Scholar
- Mentor
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- Yasemin Sancak, Pharmacology
- Session
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Session L-1G: Biological Research from Antibiotics to Zebrafish (A-Z)
- 9:30 AM to 11:00 AM
Organelles - membrane bound structures within eukaryotic cells - allow compartmentalization and simultaneous execution of thousands of biochemical reactions within one cell. Rather than serving just one purpose, they are constantly interacting with outside molecules and each other to complete processes. This function is described as being signaling platforms, surfaces that can facilitate interactions between proteins. Mitochondria house signaling proteins that are important for innate immunity and mitochondrial quality control on their surfaces and has been shown to have signaling complexes that associate with the outer mitochondrial membrane to coordinate local protein synthesis. Based on these findings, we hypothesized that mitochondria function as signaling platforms for protein interactions. We chose to focus on two signaling cascades, insulin and calcium, due to their significance in metabolic processes and clinical relevance. To investigate, we used proximity labeling technology, in which a molecular tag is attached to proteins within a certain cellular location. We labeled proteins that alter their mitochondrial association in response to these two stimuli. After cells were treated with stimuli, the lysed and tagged proteins were visualized through Western blots. This process also enables their identification through mass spectrometry. Our goal is to have a detailed characterization of mitochondria associated proteins after insulin and calcium stimulation. Such data will create openings for further research into the mitochondria as a signaling platform and potential for implications in the medical world.
- Presenters
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- Rose Fridman, Senior, Molecular Biosciences, Bellevue Coll
- Helena Ochoa, Senior, Molecular Biosciences, Bellevue Coll
- Mentors
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- Jacqueline Gapinski, Molecular Biotechnology, Bellevue College
- Stacy Alvares, Molecular & Cellular Biology, Bellevue College
- Session
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Session L-1G: Biological Research from Antibiotics to Zebrafish (A-Z)
- 9:30 AM to 11:00 AM
Microtubules play an essential role in neuronal health as they contribute to the regulation of neuronal morphology, transport and polarity. Our post-translational modification of interest, polyglutamylation, involves the elongation of glutamate chains of microtubules by a set of enzymes called glutamylases. Polyglutamylation is involved in the regulation of microtubule functions, however, the specific role of tubulin glutamylation in its impact on neurodegeneration is not well understood. While there are five glutamylases encoded in the C. elegans genome, there are only two carboxypeptidase enzymes, ccpp-1 and ccpp-6, which catalyze the shortening of polyglutamate chains. A deletion of these carboxypeptidases can cause hyperglutamylation since the shortening mechanism is absent. The purpose of this study is to utilize the loss-of-function mutation in carboxypeptidases to investigate the connection between hyperglutamylation and neurodegeneration using C. elegans as a model organism. We will utilize an Alzheimer’s model strain, GMC101, in which an overexpression of amyloid-beta protein in the body-muscle tissue causes a paralysis phenotype.Using GMC101 helps us explore the neurodegenerative effects of hyperglutamylation in the ccpp-1 and ccpp-6 mutants. We will establish baseline data of ccpp-1, ccpp-6 and GMC101 mutant strains using dye filling and paralysis assays to characterize each strain individually. Next, we will develop a double mutant ccpp-1/GMC101 and ccpp-6/GMC101, to investigate whether these mutations improve or worsens the neuronal morphology and the paralysis phenotype. Based on the literature, we expect the double mutant strains to have a worsened paralysis phenotype as well as a worsened neuronal morphology determined through dye filling assays. Investigating the specific contributions of hyperglutamylation to modulating microtubule properties in neurodegeneration is essential since there is a link between an increase in hyperglutamylation enzymatic activity in neurodegenerative regions. Further understanding of this mechanism could contribute toward developing therapeutics involved in polyglutamylation for individuals with neurodegenerative diseases.
- Presenter
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- Everett Fan, Senior, Biology (General)
- Mentor
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- Jeff Rasmussen, Biology
- Session
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Session L-1G: Biological Research from Antibiotics to Zebrafish (A-Z)
- 9:30 AM to 11:00 AM
Skin is a very important organ that facilitates our sense of touch. The touch system is complex and versatile. For example, specialized cells detect a variety of tactile stimuli, including temperature, pain, and textures. Merkel cells are specialized skin cells responsible for detecting light touch and textures in most vertebrates. Despite being discovered over a hundred years ago, their development remains poorly understood. Zebrafish are a good model organism for studying Merkel cells because the fish skin is transparent and easy to image. In wildtype zebrafish, Merkel cells are distributed in clusters, corresponding to the location of scales. The ectodysplasin (Eda) signaling pathway regulates the formation of many types of skin appendages, including mammalian hair follicles and zebrafish scales. In eda mutants lacking scales, Merkel cells appear at a lower density and are uniformly distributed across the trunk. This suggests that blocking Eda-dependent scale formation inhibited Merkel cell development, but what would be the effect of altering scale shape and size? To address this question, we examined the skin of hagoromo mutant fish. The hagoromo mutation is a viral insertion that causes an overexpression of fgf8a, another important signal pathway for scale formation. By imaging transgenic zebrafish with marked Merkel cells and osteoblasts, we used ImageJ to calculate Merkel cell density, scale area, scale Feret’s diameter, and scale aspect ratio. We found that juvenile zebrafish with the hagoromo mutation had highly variable scale shapes and sizes. Interestingly, the clusters of Merkel cells expanded or shrank to match the new scale shapes in the mutants. However, there seemed to be no significant difference in Merkel cell density. We expect to see similar results in adult zebrafish. Our research will help us understand the development of Merkel cells, therefore helping us understand skin development in vertebrates better.
- Presenter
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- Bill Young, Senior, Psychology, Biology (Molecular, Cellular & Developmental) Levinson Emerging Scholar, Mary Gates Scholar
- Mentor
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- Daniel Promislow, Biology, Pathology, University of Washington School of Medicine
- Session
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Session L-1G: Biological Research from Antibiotics to Zebrafish (A-Z)
- 9:30 AM to 11:00 AM
The mechanistic target of rapamycin (mTOR) pathway is a central nutrient signaling pathway involved in regulating cell proliferation and metabolism. Targeting this pathway has promising implications for treating a variety of diseases, especially cancer and age-related diseases. Rapamycin is an allosteric inhibitor of mTOR that has been shown to extend longevity in the fruit fly Drosophila melanogaster. Despite this, rapamycin can interfere with healthy mTOR pathways necessary for survival, which is why further research on rapamycin’s mechanism is necessary to improve clinical usage. Previous research has shown that larval size is significantly decreased in fly larvae following inhibition of the mTOR pathway. However, this effect has not been studied across fly strains with differing levels of rapamycin sensitivity. In the Promislow Lab, we have found that fly strains vary in sensitivity to the effect of rapamycin on developmental timing. We are now comparing variation in sensitivity of development time with variation in rapamycin’s effect on larval size. Using D. melanogaster, we are able to selectively expose larvae to rapamycin from embryogenesis to model the effects of rapamycin. We are collecting larvae at various time points throughout their development, comparing individuals exposed to rapamycin or control conditions. We use ImageJ software to quantify larval size. Because of mTOR’s involvement in growth pathways, we hypothesized that larvae with greater rapamycin sensitivity would have significantly smaller sizes at the same time points compared with larvae with lesser rapamycin sensitivity following rapamycin exposure. These experimental results will provide insight into how rapamycin sensitivity is linked to the phenotypic effects of rapamycin on larval size. They will also help us investigate what contributes to the sensitivity differences seen between genotypes. The spectrum of rapamycin resistance in humans is unknown and so our work could help us identify targets for treatments and therapies of age-related diseases.
Oral Presentation 1
1:30 PM to 3:00 PM
- Presenter
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- Brielle Ann Canares, Senior, Biology (Molecular, Cellular & Developmental)
- Mentors
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- Caroline Strömberg, Biology, Burke Museum
- Elena Stiles, Biological Sciences
- Session
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Session O-1A: Applied Plant Ecology
- MGH 248
- 1:30 PM to 3:00 PM
Grasses are a diverse group of plants that play a significant role in many terrestrial ecosystems globally. Despite their importance, very little is known about where and when grasses originated. In particular, it remains unclear in which environment early grasses evolved. Current hypotheses, based primarily on phylogenetic work, suggest that early grasses emerged in closed habitats, such as forests, or in more open habitats along forest margins. However, there is little direct paleobotanical evidence to support either option. To understand the environmental context grasses evolved in, I will be reconstructing canopy openness using phytoliths from Argentinian fossil sites. Phytoliths are microscopic silica bodies deposited in or around plant cells, which can be preserved in the fossil record and used to reconstruct past vegetation. The phytoliths that I am analyzing are from the Las Violetas Formation (57.9-50.6 Ma) of Argentine Patagonia, a rock formation within an area known to hold the oldest records of grass phytoliths in South America. As a proxy for vegetation structure, I am using reconstructed Leaf Area Index (rLAI), which takes the area to perimeter ratio of non-grass phytoliths originated in the leaf epidermis and determines a value that corresponds to how much light passes through a canopy. A canopy with a high leaf coverage correlates to a high rLAI value and vice versa. Based on preliminary rLAI results, I expect to find that ancestral grasses lived in habitats with semi-open canopies, similar to modern shrublands. Investigating the ancestral environment of grasses can help us better understand their evolutionary history and potential environmental drivers that led to their success in terrestrial ecosystems. This information can help us gain insight on the vulnerability of grasses and grass-dominated habitats to environmental changes in the past, present and future.
- Presenter
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- Sriram Gopinath Parasurama, Senior, Biology (Plant) Mary Gates Scholar
- Mentors
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- Soo-Hyung Kim, Environmental & Forest Sciences, UW, College of Engineering
- Darshi Banan, Environmental & Forest Sciences
- Session
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Session O-1A: Applied Plant Ecology
- MGH 248
- 1:30 PM to 3:00 PM
Trees are sessile organisms and require effective root architecture for water and nutrient uptake. Despite their importance, research in plant root systems is limited in comparison to shoots as roots are difficult to access. Rhizotrons, flat plexiglass pots, enable direct imaging of roots, but are restricted in their capabilities since plant material is started from seed with a limited growth period. These restrictions also limit the ability to model interactions between stress and tree root architecture. Effective experimental systems and accurate biological models are needed to predict how trees will respond to a rapidly changing environment. Here, I demonstrate the ability of a rhizotron using vegetatively propagated material and extended growth times to phenotype the effects of nutrient stress on root architecture in the model tree species, Populus trichocarpa. I then show how Populus traits generated from this system can parameterize a 3D functional-structural plant model (FSPM) for roots called CropRootBox. Populus cuttings were transplanted to rhizotron pots containing high contrast soil media and experienced a nutrient stress treatment. Images collected throughout the growth period were analyzed with RhizoVision and ImageJ to extract root traits including root depth, angle, branching frequency, and lateral root density. These traits advised Populus’ addition to CropRootBox, incorporating the response to nutrient stress. Using this platform, I expected nutrient deficit to decrease primary root elongation and increase lateral root elongation, branching, and density. I also expected these results to improve CropRootBox’s predictions of Populus root responses to nutrient stress. This accessible phenotyping platform accelerated my study on root architecture. CropRootBox showcases modeling’s ability to extend the derived functionality beyond just early growth nutrient stress. In combination, these tools have great potential to aid our understanding of trees and their rhizosphere.
- Presenter
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- Jackson Reilly Hall, Senior, Microbiology, Biology (Molecular, Cellular & Developmental)
- Mentors
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- Sharon Doty, Environmental & Forest Sciences
- Andrew Sher, Environmental & Forest Sciences
- Session
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Session O-1A: Applied Plant Ecology
- MGH 248
- 1:30 PM to 3:00 PM
Control of fungal pathogens remains a significant challenge facing agriculture, causing plant death and post-harvest spoilage. Existing methods for fungal control, such as chemical fungicides or transgenic crops, are often non-specific or come with environmental concerns. Prior research indicates that some bacterial symbionts, naturally occurring in plants, can increase resistance to pathogens. In the Sharon L. Doty Plant Microbiology lab, I explored the use of endophyte bacteria to inhibit the growth of three fungal pathogens common among fruit and fruit trees. I investigated fungal growth inhibition through the secretion of volatile chemicals without direct contact. To do this, I grew putative antifungal bacteria together with the fungal pathogens, so that the two cultures were not in direct contact but shared airspace. I identified six strains that were highly successful against multiple fungal pathogens. I cultured these strains to collect any volatiles produced for gas chromatography-mass spectrometry analysis. Several of these strains produce similar volatiles; although the exact structure is not known, the chemical formula is the same among them. In addition, some of these strains produce carbon dioxide, which may be responsible for the inhibitory effect. I also used various bioinformatics pipelines to identify genes responsible for the biosynthesis of these inhibitory volatiles, allowing for deeper understanding of how these strains are able to inhibit fungal growth. These strains have strong potential for use as biocontrol agents. This use would allow for greater pathogen resistance without many of the drawbacks associated with chemical fertilizers or genetically modified organisms.
- Presenter
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- Francisco Ramon Nares, Senior, Earth and Space Sciences: Geology Mary Gates Scholar, UW Honors Program
- Mentors
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- Caroline Strömberg, Biology, Burke Museum
- Alex Lowe, Biology, Department of Biology and the Burke Museum
- Session
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Session O-1A: Applied Plant Ecology
- MGH 248
- 1:30 PM to 3:00 PM
Trait-based plant ecology can serve as a means to better understand shifts in ecological strategies within plant communities and how that affects greater ecosystem processes, such as productivity, across a period of major climate change. The most recent major global warming event prior to modern anthropogenic influences was the Miocene Climatic Optimum (MCO) ca. 17-14 million years ago. This event was a short aberration to a long-term cooling trend of the last 53 million years, with global temperature averages up to 8°C warmer than preindustrial averages. Changing climate conditions during the MCO may have led to plant community reshuffling, with many ecosystems possibly restabilizing with notably different optimal trait distributions. Functional traits such as leaf shape, size, and toothedness can be indicative of a plant’s ecological strategy. These leaf morphology variables have been shown to closely correlate with climate, highlighting their role in plant function and strategy, and can thus be used to statistically analyze community diversity across the MCO. I hypothesize that the MCO caused an overall increase in functional trait diversity through an increase in favorable environments, allowing plant reshuffling or migration of plants with new ecological strategies into existing communities. We expect to see this through trait distributions in a community diversifying as the MCO progresses. This study uses leaf functional trait data measured digitally from a range of Miocene fossil sites to assess trends and variances from before, during, and after the MCO. Statistical analysis will make use of a previously developed R package to assess functional diversity. These results will be crucial information in understanding the ecological response to today’s far more rapid climate change, as well as humanity’s response to the possible need for human-assisted plant community reshuffling by providing an example of how global warming affected vegetation in Earth’s past.
- Presenter
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- Han Weinrich, Senior, Biology (General), Oceanography NASA Space Grant Scholar
- Mentor
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- Bruce Nelson, Earth & Space Sciences
- Session
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Session O-1A: Applied Plant Ecology
- MGH 248
- 1:30 PM to 3:00 PM
Eelgrass (Zostera marina) is an ecologically important species of flowering marine plant that inhabits sublittoral sediments in the northern hemisphere. Eelgrass beds provide critical habitat for many species of invertebrates, birds, and larval fish. As a true plant with roots, leaves and a vascular system, eelgrass is capable of extracting heavy metals from its environment, potentially making it a sentinel accumulator for heavy metal contamination and sourcing for ecological monitoring. Previous studies of eelgrass beds found that metal concentrations were higher in eelgrass tissues than sediment; however, it is uncertain whether the source of the Pb is the sediment, the water, or both. To determine metal sources and accumulation in eelgrass, we used the natural and anthropogenic variability of lead (Pb) isotopes to fingerprint the source of Pb in bottom sediments and in eelgrass of the Puget Sound. We collected eelgrass and sediment from five sites in Possession Sound, WA between 2018-2019. After purification of Pb from the samples, we analyzed Pb isotope ratios by multi-collector ICP mass spectrometry in the Dept. of Earth & Space Sciences. Significant variation was observed between sites – Hat Island and Whidbey sediments were undifferentiated but Mount Baker Terminal (MBT) sediments have different Pb isotope ratios. Eelgrass from the MBT site also has Pb isotope ratios distinct from other eelgrass and sediment samples, indicating a higher proportion of anthropogenic lead. Site MBT has more pollutant input from the city of Everett, whereas the Hat and Whidbey sites, which are adjacent to uninhabited land, may have more Snohomish River influence. Paired sediment and eelgrass samples from the same sites did not have the same lead isotope ratios, implying that eelgrass accesses multiple sources of Pb during growth. Testing this observation at other sites is important to understanding metal cycling in sublittoral environments.
- Presenter
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- Josephine Rose Meier, Senior, Environmental Science & Resource Management
- Mentors
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- Alex Lowe, Biology, Department of Biology and the Burke Museum
- Caroline Strömberg, Biology, Burke Museum
- Session
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Session O-1A: Applied Plant Ecology
- MGH 248
- 1:30 PM to 3:00 PM
The geologic record has become an increasingly important source of information for scientists to observe how plant communities of the past have responded to disturbance. Currently, there is a limited ability to recognize disturbance as a primary driver of plant community change, as there is limited evidence of how functional traits – plant traits that relate directly with plant function and ecological strategy – that can be measured in fossil leaves vary across succession. In this study I will measure a functional trait to help better identify disturbance in the fossil record, the carbon stable isotopic composition (δ13C) of bulk organic matter in leaves sampled across a successional gradient following a disturbance. This trait is often preserved during leaf fossilization and is representative of a plant's water use efficiency (WUE), or the amount of carbon dioxide used by the plant during photosynthesis for a given amount of water that is lost during transpiration. It is currently not known the extent to which carbon isotopes measured at the community-scale reflect the successional stage of a plant community. In an effort to develop this tool, I hypothesize that the WUE of plant species within a community will become more conservative in later successional stages. In support of this hypothesis, I predict that the abundance-weighted community average of leaf δ13Cwill increase through succession. In addition, I hypothesize that δ13C as a proxy for WUE will be most confounded in early succession, before a tree canopy forms, due to seedling utilizing water resources more rapidly without having established root systems and thus predict a higher variance of δ13Cvalues in this earliest stage of succession (Cernusak 2020). This research will help develop a method of identifying disturbances within geologic records which can give guidance on management decisions regarding modern ecosystems.
- Presenters
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- Shelby Carpenter, Graduate,
- Arieh Liam (Ari) Lisitza, Senior, Biology (Molecular, Cellular & Developmental)
- Mentors
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- Brittney Hultgren, Psychiatry & Behavioral Sciences
- Mary Larimer, Psychiatry & Behavioral Sciences, Psychology
- Annelise Smith, Psychiatry & Behavioral Sciences, CSHRB
- Session
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Session O-1B: The Health of the Public: Social, Physical and Emotional Well-being
- MGH 231
- 1:30 PM to 3:00 PM
Soldiers who are transitioning to civilian life have alarmingly high rates of suicide, alcohol abuse, and mental illness. There are multiple facets that may influence these poor outcomes for veterans. Organizational dissatisfaction is a risk factor for poor mental health and lack of access to mental health support for veterans, but this has yet to be studied in-depth. The aim of this project is to assess how demographic variables and organizational dynamics impact mental health during the transition process. First, we will use preliminary data from The Network Study, one of the first longitudinal studies to follow the mental health, alcohol use, and socioeconomic stressors of service members as they transition out of the Army. Multiple regression will be used to analyze the influence of interpersonal support and conflict within the Army on depressive and anxiety symptoms. Mental health symptoms were measured by the PHQ-9 and GAD-7, two common screening questionnaires used to briefly assess depressive and anxiety symptoms, respectively. We will additionally assess various demographic variables as moderators. Next, findings will be used to develop questions for qualitative interviews to be conducted with recent veterans. We predict there will be a positive association between organizational support and positive mental health outcomes, and qualitative interviews will show lower work-related stress and increased access to mental health supports as major themes for those with positive work relationships. In line with previous research, we predict these associations and themes will be strongest for women, racial and ethnic minorities, and those of lower rank. Support and intraunit conflict are potentially modifiable factors, so our research demonstrates a potential pathway for prevention of negative mental health outcomes for veterans.
- Presenter
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- Yinzhou Wang, Senior, Mathematics
- Mentor
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- Weichao Yuwen, Nursing (Tacoma Campus), University of Washington Tacoma
- Session
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Session O-1B: The Health of the Public: Social, Physical and Emotional Well-being
- MGH 231
- 1:30 PM to 3:00 PM
In the United States, caregivers carry a higher level of physical and emotional stress than non-caregivers. According to the National Alliance for Caregiving, over 60% of caregivers consider their caregiving situations to be moderate to highly stressful. In response to the multifaceted needs of family caregivers, a team of health researchers and engineers initiated a research project called COCO ("Care for Caregivers Online"). COCO’s goal is to design and implement innovative methods to support caregivers emotionally. We have implemented a system with two platforms connecting family caregivers with healthcare providers: a web app with a conversational agent (“chatbot”) for caregivers and a provider platform using artificially intelligent (AI) technologies for healthcare providers to provide effective and efficient support through the mobile app. We conducted a pre-post study with forty caregivers who chatted with COCO through the system. The initial result shows that COCO significantly reduces caregivers’ negative feelings including guilt, sadness, and fatigue. We are expecting more positive results after deploying the mobile application with the chatbot embedded. Additionally, I, along with other reasearchers, conducted research on chatbot’s ability of emotion detection. We collected caregivers’ emotional state data through a two-week diary study and I personally preprocessed and analyzed the data. We then used these data to develop a natural language understanding (NLU) model. In simplicity, we incorporated the ability of commonsense into the chatbot, achieving better results in emotional state inference and grounding response recommendation. I am currently leading a digital human project, creating a virtual human profile for COCO to ahieve better user experience. The integrated care approach COCO takes with AI-enhanced empathetic and therapeutic dialogs has the potential to address the critical needs of millions of family caregivers in an accessible, scalable, and cost-effective way.
- Presenter
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- Yasmin Landa, Senior, Psychology, Sociology McNair Scholar
- Mentor
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- Heather D. Evans, Disability Studies, Rehabilitation Medicine
- Session
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Session O-1B: The Health of the Public: Social, Physical and Emotional Well-being
- MGH 231
- 1:30 PM to 3:00 PM
The deinstitutionalization of massive psychiatric hospitals in the 1970s and 1980s improved the physical and social environment of psychiatric hospitals and aided in the transition away from prison-like hospitals. Still, there remains opportunities for growth if the psychiatry field aims to engage and provide patients with a fully therapeutic setting in psychiatric hospitals. This research explores the relationship between a patient’s social and physical experience in a psychiatric hospital and their engagement with mental health treatment after discharge. I analyze the physical environment of a psychiatric unit and explore mental health professionals’ views on guidelines for maintaining a therapeutic environment in these spaces. Using qualitative methodology, including ethnographic observations of psychiatric hospitals in the Seattle area, photographs, and interviews, I discuss the environmental factors of psychiatric rooms through the evaluation of room design and its effectiveness in creating a therapeutic environment. Preliminary findings point to a possible relationship between consent and a patient's receptivity to post-hospitalization treatment after being exposed to the psychiatric hospitalization environment. Additional results could indicate a negative relationship between a patient’s socio-physical experience in an inpatient psychiatric facility and their engagement in future treatment after discharge. These research findings will enable mental health providers to better understand the relationship of socio-physical aspects in psychiatric hospitals to the continuation of a patient’s treatment after discharge. This information will help providers improve upon these experiences and increase a patient’s receptivity to post-hospitalization treatment.
- Presenter
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- Rhea Sanghavi, Junior, Biology (Physiology), Public Health-Global Health Mary Gates Scholar
- Mentor
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- Manasi Kumar, Global Health, University of Nairobi/UW
- Session
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Session O-1B: The Health of the Public: Social, Physical and Emotional Well-being
- MGH 231
- 1:30 PM to 3:00 PM
Currently, it is not well understood how young people in Low and Middle-Income Countries (LMICs) access health services such as primary care and mental health services, which are easier to access in other parts of the world. Since adolescents are a significant, unique population in these countries, there is evidence to suggest that health services need distinct features and considerations to be adolescent-friendly and responsive. However, there is no universal, comprehensive definition of adolescent-friendly health services. To fill this gap in the body of knowledge, we are conducting a systematic review to collate, synthesize and identify the barriers and facilitators of adolescent-responsive health services. We worked closely with a research librarian to perform a robust search through a range of databases (CAB Direct, CINAHL, Cochrane, Embase, Global health Medicus, PsychINFO, and PubMed) which resulted in 4751 unique abstracts. During the title and abstract screening, two members of the team reviewed each article. Currently, 171 articles have been selected for full-text screening to confirm they are appropriate for inclusion and for analysis. Next, we will create a narrative synthesis of the features of service, keywords, factors, and outcomes identified. The research will provide a clear, comprehensive definition of adolescent-responsive health care and services in LMICs. This information will be particularly useful to international organizations, like the UN, healthcare providers, and policymakers as it will inform new programs, initiatives, or guidelines to improve the quality of adolescent health services in LMICs.
- Presenter
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- Peter Yu, Junior, Civil Engineering
- Mentor
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- Yinhai Wang, Civil and Environmental Engineering
- Session
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Session O-1C: Advances in Engineering
- MGH 238
- 1:30 PM to 3:00 PM
The conventional signalized diamond interchange provides numerous essential freeway-to-arterial connections. However, it tends to become operationally inefficient when high traffic demands exist on the arterial or off-ramps. To address this problem, diverging diamond interchanges (DDIs) have been implemented at many sites to replace conventional diamond interchanges (CDIs). While DDIs have been shown to outperform CDIs under high left-turn demands, their operational performance diminishes when through demands on the arterial become heavy. In this work, I proposed a new service interchange design named the “one-sided diverging diamond interchange” (one-sided DDI) as a replacement for congested CDIs and DDIs. Through a comprehensive series of microscopic simulation tests with the software PTV Vissim, I analyzed and compared the operational attributes of the one-sided DDI to those of the CDI and DDI over a range of traffic demands. Overall, the results from the simulation tests indicate that the one-sided DDI significantly outperforms both the CDI and DDI in vehicle travel time and throughput when through demands on the arterial are dominant. On the other hand, the one-sided DDI tends to modestly outperform the traditional DDI in travel time when handling moderate to high proportions of left-turning traffic.
- Presenter
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- Brett Alexander Emery, Senior, Astronomy, Physics: Comprehensive Physics Mary Gates Scholar, NASA Space Grant Scholar
- Mentors
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- Jeffrey Lipton, Mechanical Engineering, University of washington
- Daniel Revier, Computer Science & Engineering, Mechanical Engineering, UW CSE
- Session
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Session O-1C: Advances in Engineering
- MGH 238
- 1:30 PM to 3:00 PM
Traditional foams are fabricated via stochastic chemical processes that yield homogeneous material properties. Foams can exhibit a wide range of material properties by varying process controls allowing them to be used in many industrial and commercial applications. Previously, additive manufacturing could only produce foam approximations in the form of traditional lattice infill. My work employs viscous thread printing (VTP) of thermoplastic polyurethane (TPU) on a fused filament fabrication (FFF) printer, exploiting the semi-viscous nature of extruded filament to coil producing a new type of printed foam. Specimens were tested under compression to determine uniformity along principal axes and behavior under strain when compared to infill patterns, such as grid and cubic. My work establishes that VTP, using elastic materials, can be used to manufacture programmable stiffness foams as a function of density, suited to a variety of needs and should be considered as an alternative to traditional foams and other printed lattice geometries.
- Presenter
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- Milin Kodnongbua, Senior, Economics, Computer Science
- Mentors
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- Adriana Schulz, Computer Science & Engineering
- Jeffrey Lipton, Mechanical Engineering, University of washington
- Session
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Session O-1C: Advances in Engineering
- MGH 238
- 1:30 PM to 3:00 PM
This work proposes a novel generative design tool for passive grippers—robot end effectors that have no additional actuation and instead leverage the existing degrees of freedom in a robotic arm to perform grasping tasks. Passive grippers offer interesting trade-offs between cost and capabilities. However, existing designs are limited in the types of shapes that can be grasped. This work proposes to use rapid-manufacturing and design optimization to expand the space of shapes that can be passively grasped. Our novel generative design algorithm takes in an object and its orientation with respect to a robotic arm and generates a 3D printable passive gripper that can stably pick the object up. To achieve this, we address the key challenge by jointly optimizing the gripper shape and the insert trajectory to enlarge the set of objects that can be pasively grasped. We evaluate our method on a testing suite of 23 objects, all of which were evaluated with physical experiments to bridge the virtual-to-real gap. Inspired by the true cost of repurposing infrastructures in assembly lines following the recent changes in demand early in the COVID-19 crisis, our work allows a cost effective solution to rapidly generate, fabricate, and deploy custom passive grippers on the existing robot arms for the new products in demand.
- Presenter
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- Christina Nadine Williams, Senior, Speech & Hearing Sciences Mary Gates Scholar, UW Honors Program
- Mentor
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- Yi Shen, Speech & Hearing Sciences
- Session
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Session O-1D: Language, Communication, & Cognition
- MGH 287
- 1:30 PM to 3:00 PM
Noisy environments pose difficulty for efficiency of communication and understanding of conversation. However, some individuals are able to hear better in these environments than others, with age and hearing ability controlled. A contributing factor may be the natural rhythm of speech. All of speech contains rhythm, we speak at different paces with words timed at certain paces. When this rhythm is altered, it is shown to reduce speech understanding. This study investigates whether people are the same in terms of how much they rely on speech rhythm to decipher speech in background noise. The purpose of this study is to use these results to create more effective and customizable hearing aids catered to each individual's hearing differences. We looked at two promising factors in this study that may predict increased ability to use the natural rhythms of speech in order to better understand it: working memory and non-speech rhythmic abilities. We created remote tasks on an online platform, Gorilla, to measure these factors in normal hearing individuals. More specifically, these tasks included a working memory task, Reading Span; a rhythmic abilities task, Beat-Based Advantage; and a rhythmic speech in noise task. We used stepwise linear regression to analyze whether these two factors impact one’s reliance on rhythm in speech. The findings of this study support that better working memory skills and better rhythmic abilities improve speech understanding in noisy environments, as these participants utilized speech rhythm to do so. We can use this knowledge on future research with participants with hearing loss. We still live in a “one-size fits all” model for hearing aids. However, by understanding the factors that improve speech comprehension in noise, we can create individually-tailored hearing aids that adapt to people’s abilities and thus improve communication in all types of environments.
Poster Presentation 1
1:30 PM to 3:00 PM
- Presenter
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- Grace Duffy, Senior, Speech & Hearing Sciences Mary Gates Scholar, UW Honors Program
- Mentor
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- Yi Shen, Speech & Hearing Sciences
- Session
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Session O-1D: Language, Communication, & Cognition
- 1:30 PM to 3:00 PM
Despite trends in hearing technology, there is little understanding of how listeners judge quality of speech. The lack of understanding of these perceptual mechanisms prevents development of efficient approaches to improving speech quality technologies. The proposed research addresses this knowledge gap and is among the first studies to elucidate the differences in listening strategies between speech understanding and speech quality judgments. It is well established that the frequencies in speech contributing to speech understanding varies--certain frequencies are more essential than others. The relative importance of different frequencies, known as spectral weights, represents listeners' strategies when performing speech recognition tasks (i.e., repeating back the presented speech). We hypothesize the spectral weightings of listeners judging speech quality compared to speech understanding will differ--our preliminary results have proved our hypothesis true as frequencies are proving to contribute disparately for understanding versus recognition. Previous research demonstrates clarity of pitch being a key contributor to perceived speech quality, while speech understanding may be maintained when voice pitch is heavily distorted. Therefore, the frequencies carrying information in pitch may become more important in speech quality judgment. As research continues, I will test this hypothesis by analyzing the differences in the participants' spectral weightings of a speech recognition task and a speech quality judgment task. To discern the spectral weighting, a correlational analysis is done for each of the two tasks using averages in the responses. This correlational analysis averages data from the participants' responses to find how each frequency band of interest contributed to understanding versus recognition. This project provides one of the first estimates on the contribution of frequencies in perceptual judgments of speech quality, which is valuable for future hearing technology aiming to improve perceived speech quality in that it pinpoints the frequency regions requiring attention in audiological research to come.
Oral Presentation 1
1:30 PM to 3:00 PM
- Presenter
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- Lindsay Hippe, Senior, Speech & Hearing Sciences, Linguistics Mary Gates Scholar, UW Honors Program
- Mentor
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- Naja Ferjan Ramirez, Linguistics
- Session
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Session O-1D: Language, Communication, & Cognition
- MGH 287
- 1:30 PM to 3:00 PM
Early childhood language capability is closely tied to future success. Thus, it is vital to research how best to support the language acquisition process of young children. Extant literature emphasizes the role of children's parents but largely ignores the impact of other family members such as siblings. The primary goal of my research is to address this absence by investigating the effects of older sibling presence upon the language development outcomes of infants. I use a longitudinal dataset of audio recordings taken by Language ENvironment Analysis (LENA) software. This software uses a small device worn by a child over an entire day to record their naturalistic linguistic environment for up to 16 hours. I focus on two main indicators of language input quality: parentese and conversational turns (CTs), both of which have been shown to promote language acquisition. Commonly referred to as “baby talk,” parentese is the acoustically exaggerated speech style typically used while addressing infants. CTs are alternations between speakers in one-on-one conversation, and often include nonverbal aspects of communication upon which infants rely for learning. My present findings demonstrate that infants with older siblings experience lower levels of these variables compared to infants without older siblings. However, the differences between language outcomes of the two groups were not as pronounced as expected based on this difference. Thus, with the help of fellow undergraduate coders, I am now coding and transcribing segments of LENA recordings of infants with older siblings that have the highest amount of speech from other children. I hope to uncover sibling input variables that may help infants with siblings to "catch up" to those without siblings regarding language outcomes. My results will inform those involved in early childhood development regarding how to facilitate the language acquisition process of young children with older siblings most effectively.
- Presenters
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- Wendy Vanessa Garcia, Junior, Pre-Major (Arts & Sciences) McNair Scholar
- Yongyan Yue, Senior, Psychology, Chemistry
- Elizabeth Anne (Elizabeth) Li, Senior, Psychology
- Mentors
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- Ariel Starr, Psychology
- Taylor Petersen, Psychology
- Session
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Session O-1D: Language, Communication, & Cognition
- MGH 287
- 1:30 PM to 3:00 PM
There is often a stigma associated with bilingualism due to the mistaken belief that bilingual children develop language skills at a significantly slower rate than monolingual children. To combat this misconception, it is necessary to conduct research showing that bilingualism either helps or does not harm language acquisition when compared to monolingualism. This study attempts to meet that general need by determining how bilingual and monolingual children compare in metaphor comprehension. I decided to focus on metaphors because they can be challenging for children to interpret correctly, and I hypothesized that bilingual children would perform better on metaphor comprehension tasks than monolingual children because of their regular use of second labels. I investigated how 127 monolingual and bilingual children ages 2.5-4.5 years old responded to a set of metaphors by using a game-like format to gather data via Qualtrics. Specifically, I gave children a series of 10 metaphor questions in which they needed to choose which of two pictures best fit a provided metaphorical phrase. Children were also given 10 vocabulary questions derived from the metaphor questions to ensure that children knew the literal meaning of the words. Results showed that bilingual children performed slightly but significantly better than monolingual children on metaphor comprehension questions. Currently, I am also collecting data for a follow-up study to replicate and extend my findings. These results are important because they give us insight into how child language development differs between monolingual and bilingual children and counter negative stereotypes about bilingualism.
- Presenter
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- Kathryn Ann Duffy-Greslo, Senior, Psychology UW Honors Program
- Mentors
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- Shana Attar, Psychology
- Wendy Stone, Psychology
- Session
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Session O-1D: Language, Communication, & Cognition
- MGH 287
- 1:30 PM to 3:00 PM
Inequities in healthcare have led to disparities for many populations, including autistic individuals. One structural factor associated with health inequities for autistic individuals are the tools used to screen for autism, which do not work equitably within minority populations. There is, therefore, a great need for culturally sensitive screening tools. My study assesses the cultural sensitivity of “My Toddler’s Social Communication” (MTSC), a tool developed by UW’s ReadiLab to screen toddlers at autism risk. Unlike existing screening tools, MTSC employs photographs of toddlers engaging in social communication behaviors, along with brief behavioral descriptions. I used a sequential explanatory mixed-methods design to investigate whether caregivers of toddlers find MTSC to be feasible for use with culturally and linguistically diverse (CLD) families; and find the photos and behaviors culturally relevant. For the first phase, 10 caregivers of toddlers completed MTSC and answered questions regarding its acceptability and feasibility for CLD families. For the second phase, I interviewed 15 CLD caregivers. I then analyzed survey data using descriptive statistics and the interviews using thematic analysis. Survey results showed that 80% of caregivers found the photos representative of a broad range of cultures. However, only 30% of respondents agreed that MTSC was easy to complete for caregivers from diverse backgrounds. Thematic analysis revealed five themes: visual representation deficits, cultural relevance differences, accessibility to non-native English speakers, and accuracy challenges. Overall, results suggest that MTSC has fair visual representation, but can become more feasible and accessible by accommodating caregivers who utilize daycare services, and including photos with a greater range of races, cultures, and caregiver genders. This study is one step of many toward creating measures that can assess the cultural sensitivity of tools to make cultural sensitivity accessible for researchers developing instruments and improve the lack of diversity and equity in Clinical Psychology.
- Presenter
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- Jade Aaree Keimig, Senior, Linguistics UW Honors Program
- Mentor
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- Ana Fernandez Dobao, Linguistics, Spanish and Portuguese Studies
- Session
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Session O-1D: Language, Communication, & Cognition
- MGH 287
- 1:30 PM to 3:00 PM
In many languages, nouns have what is called "grammatical gender," which is a seemingly arbitrary gender that is assigned to each noun. A common example would be Spanish, where nouns with the article la are feminine and those with el are masculine. In German, these noun genders are notoriously difficult to learn. This is, in part, due to the fact that German has three grammatical genders (masculine, feminine, and neuter) compared to the more common two (masculine and feminine). In addition, there are often no markers at the ends of nouns to indicate whether the noun is masculine, feminine, or neuter, which means learners cannot tell the gender of the word simply by looking at it. For example, in Spanish, feminine nouns often end with -a and masculine nouns with -o, which make the gender relatively easy to identify. This is not the case in German. Learners must, for the most part, learn noun genders through rote memorization. In this study, I test three different methods of helping native English speakers acquire the grammatical gender of nouns in German. I investigate whether learners can effectively acquire the gender and meaning of twelve German nouns with three mnemonic devices: color association, images, and videos with gendered actors. Participants are split into four groups, one control and one for each mnemonic device, where they are exposed to the nouns. The short-term effects of these visual aids are then revealed through two post-tests following the session. Based on previous research, I believe that the video condition will be the most effective at helping learners acquire noun gender. Given that memorization of grammatical gender is crucial to effectively learning a language, it is worth exploring innovative ways of helping students acquire this feature, especially for speakers whose first language does not have gendered nouns.
- Presenter
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- Karun Thota, Senior, Economics
- Mentor
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- Michelle Turnovsky, Economics
Chokepoints are strategic, narrow passages that connect two large areas to one another. When it comes to maritime trade, these are typically straits or canals that see high volumes of traffic because of their optimal location. In March 2021, due to a strong wind, a large container ship called the Ever Given blocked the Suez Canal, a narrow trading waterway (a maritime chokepoint) that essentially connects Europe and Asia, while also handling approximately 12% of global trade. The blockage resulted in 9.6 billion dollars of goods and services to be delayed. Furthermore, it worsened the existing supply chain constraints that were caused by the COVID-19 pandemic. Nonetheless, this event displayed how reliant or dependent international trade is on a chokepoint and showed how easily the whole process can be disrupted because of an incident that could be considered by many as insignificant. This paper is an event study of the Ever Given blockage, which aims to see how it has impacted volume of trade between countries that are situated on either side of the Suez Canal. Using a gravity model of trade, I examine and compare the effect that the event had on the volume of trade of various countries bordering the Mediterranean Sea, with Saudi Arabia on the Asian side of the canal. The broader ambition of this paper is to stress the economic reliance of international trade, in terms of volume of trade, on major chokepoints in order to motivate us to find, create and develop alternative trading waterways that could be used at the event of future disruptions at strategic chokepoints.
- Presenter
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- Simon Lavassar Schumacher, Senior, Economics, Business Administration
- Mentor
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- Dennis O'Dea, Economics
While many fields of study, such as psychology and sociology, have long offered various investigations and explanations of crime, starting in the latter half of the Twentieth Century, economists have begun attempting to understand crime through an economics lens. Our research has furthered this inquiry by looking at how crime rates are driven by changes in compensation for legal work as affected by changes in state income taxes. Specifically, we examined how a four-year long increase in Illinois’s flat income tax that began in 2011 affected crime rates in the state in comparison to crime rates in similar states and nationally as well. We used a difference-in-difference analysis to understand how the change in state income tax rates led to a change in crime rates in our treatment state, Illinois, when compared to those states that represent our control group. Using data on tax rates levied in each state, crime data aggregated by the federal government, and other publicly available data to inform our analysis, we have an idea of the relationship between changes in state-level income taxation and changes in crime rates as observed in Illinois. We expect that an increase in taxation will put upward pressure on crime rates in Illinois as the returns to legal work will be comparatively decreased. The hope for such work is not necessarily to inform the conversation surrounding appropriate tax rates but to contribute to an economic model of crime. Such models empower policymakers to combat crime not as a function of some base flaw in a criminal’s humanity or cognition, but as the outcome of some malleable analysis of personal costs and benefits.
- Presenter
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- Fred Zhao, Senior, Geography: Data Science
- Mentor
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- Mia Bennett, Geography
This research compares the COVID-19 control policies and the use of Contact Tracing Apps (CTAs) in Shenzhen, China, and Seattle (King County, WA). The research examines the differences between local government's policies of pandemic control, contact tracing response, and the discrepancies between CTAs design, mechanism, and the ways of defining close contacts. This first part provides background for a better understanding of the differences in government policies and CTAs for the two metropolises. The second part of the research analyzes data available to show the effectiveness of contact tracing apps and the results of differences in government pandemic control policies and response time. Visualizations are created using existing data and construct timelines of the pandemic and usage of CTAs, demonstrating the effects of CTAs on certain indicators such as numbers of hospitalizations, people in quarantine, cases, and deaths. The timeline will be divided based on different COVID-19 mutations that were dominant in the areas, as well as the version updates on the CTAs. After analyzing the effectiveness of CTAs on pandemic control, the research explores the overall impacts of CTA, COVID-19, and government’s pandemic responses on society as a whole, including the inequalities between races, different income groups, and migrations. This research may generate insights on the possible policies and ways of utilizing CTAs that are beneficial to the pandemic control as well as the economy and residents' daily life. Besides, as there are few studies on CTAs’ effectiveness on COVID-19 control, this study can also suggest possible directions for other researchers. In the end, the research generates visualizations that tell a story from the beginning of how the government deals with the pandemic and how their responses and CTAs had an effect on the pandemic control and the society, especially on migration and inequalities.
- Presenter
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- Samantha June (Sam) Smith, Senior, Sustainable Urban Development (Tacoma), Law and Policy (Tacoma)
- Mentors
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- Anne Taufen, Urban Studies (Tacoma Campus)
- Cameron Collins, Interdisciplinary Arts & Sciences (Tacoma Campus), University of Washington Taoma
The Washington Creative Districts program, managed by ArtsWA, is a place-based investment strategy that offers state certification to geographically defined areas focused on cultural and creative enterprises. ArtsWA provides technical and professional assistance, marketing, and funding to certified Creative Districts to encourage localized economic development through tourism and hubs of economic activity. My research examines Washington Creative Districts policy to determine what unintended consequences may be felt by communities pursuing state certification. I identify potential unintended consequences by reviewing enacted legislation in the Revised Code of Washington, Creative Districts guidelines, academic literature, and recent Washington state employment and housing data. I find the state’s interpretation of the creative economy includes professions with high social capital, such as writers and photographers, and professions with high economic capital, such as software developers and computer programmers of the knowledge economy. This broad framing of the creative economy could result in Creative Districts using social capital of traditional artistic professions for branding while primarily courting the mobile, economic capital of the knowledge economy. I expect to find that communities pursuing state certification, some of which are in economically distressed regions, may accelerate cycles of gentrification in urban areas or introduce gentrification to rural ones, resulting in long-term resident displacement. Additional research is needed to document market, demographic, and population change trends present in Washington Creative Districts and determine if their relationship to state certification is causal or a correlation. Additional work is also needed to identify local and state policy changes that could better equip Creative Districts communities to mitigate any unintended consequences and focus state support and investment in areas of the local creative economy where it is most needed.
- Presenter
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- Stefan de Villiers, Senior, Economics UW Honors Program
- Mentor
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- Robert Halvorsen, Economics
In the last two decades, Chinese state lenders have been responsible for $153 billion in loans to African countries. Acknowledging assertions in the literature that this lending has had tangible negative effects on debt sustainability in several of those African countries, my research project analyzes the effectiveness of this lending in improving welfare through the financing of energy projects. This represents a first step in answering the broader question of whether official Chinese lending to African nations, in its current state, is worth the accompanying risks.
Combining data from Horn, Reinhart, and Trebesch (2021), William & Mary's AidData Initiative, and other macro-level datasets on national electrification, I build a comprehensive picture of Chinese lending to African energy generation projects, as well as the long-term success of those projects and their effects on national energy outcomes. My analysis will be based in part on descriptive statistics generated from my dataset and in part on an econometric analysis run on the dataset that factors in costs, energy output, and national debt and labor metrics.
This research is expected to yield the result that while Chinese investment is largely effective and prioritizes sustainable energy generation projects, opportunities exist for more accommodative lending practices and greater domestic labor involvement in project implementations.
- Presenter
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- Rachel Blair, Senior, International Studies Mary Gates Scholar, UW Honors Program
- Mentor
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- Angelina Godoy, Jackson School of International Studies
Between 1973 and 1990, Chile was ruled by Augusto Pinochet, a military dictator known for his persecution of leftists and political opponents. Although Chile transitioned to democracy, ratified the American Convention on Human Rights and joined the Inter-American System for the protection of human rights (IAHRS) in 1990, Pinochet's legacy of human rights abuse lingers. This is exemplified by the Chilean military justice system's ongoing jurisdiction over cases in which military personnel harmed civilians, which violates the Convention's guarantee of access to competent courts and fair trials. This research fills a gap in the existing literature on this violation by exploring the following question: how do the combined structural weaknesses of the Chilean judiciary and IAHRS limit the Chilean military justice system's compliance with the Convention? To address this question, I qualitatively analyzed the foundational documents of the Chilean judiciary and IAHRS with a focus on how vague or inconsistent language in the articles that are procedurally connected in the interactions between the two institutions overlap and create loopholes that allow for Chile's ongoing Convention violation. This thesis argues that ambiguous and contradictory language in the articles of the Chilean and IAHRS documents involved in the referral of human rights petitions to the Inter-American Court limits compliance by jeopardizing the legitimacy of petitions against Chile for inappropriate military jurisdiction and by creating significant deterrents for those considering petitioning against Chile. As many Latin American countries were ruled by military dictatorships and have since ratified the Convention, this research could illuminate tendencies central to understanding and rooting out dictatorial legacies in the region and inform more effective collaboration between the IAHRS and its member states in addressing impunity for human rights abuse.
- Presenter
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- Leah Ruth (Leah) Davis, Junior, Marine Biology UW Honors Program
- Mentor
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- Tim Essington, Aquatic & Fishery Sciences
- Session
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Session O-1F: Biology of Marine Organisms
- MGH 234
- 1:30 PM to 3:00 PM
Pacific herring (Clupea pallasii) play a critical ecological role in the Puget Sound food web and are experiencing declines throughout the Sound. Presently, no single cause has been identified, and consequently, no policy action has been implemented to reverse the declines. Here we evaluate the hypothesis that terrestrial landscape features govern the trends in local stocks (defined by aggregations during reproduction) through run-off, noise, light, and other indirect effects. We predicted that status of local stocks would show associations with terrestrial landscape features such as land use and human density. To test these predictions, we gathered a time series of spawning biomass estimates for sub-stocks throughout Puget Sound and used multiple metrics to evaluate the population status of each subpopulation. We then related these metrics with information on local land-use and other localized anthropogenic disturbances. Across all metrics, a majority of the 22 stocks showed impaired status over the past 15 years. However, we found no association between local status and landscape metrics. This result indicates that landscape level effects are not solely responsible for the impaired status of Pacific herring, but we caution that this may be because there are multiple, interacting causes for declines that need to be addressed to recover this valuable species.
- Presenter
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- Jordan Winter, Senior, Oceanography, Dance
- Mentor
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- Virginia Armbrust, Oceanography
- Session
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Session O-1F: Biology of Marine Organisms
- MGH 234
- 1:30 PM to 3:00 PM
Prochlorococcus is a cyanobacterium smaller than 1 μm that accounts for much of the primary production in nutrient-poor areas such as the North Pacific Subtropical Gyre (NPSG). In the transition from the NPSG to more productive coastal regions, there are fronts that have sharp changes in chemical, physical, and biological properties. In more coastal, nutrient-rich conditions, larger phytoplankton are more abundant, including Synechococcus and picoeukaryotes. Data previously collected on cruises going north from the NPSG (the Gradients cruises) were compared to data I collected on the TN398 cruise going east from the NPSG to the California coast. A SeaFlow flow cytometer measured small phytoplankton, including Prochlorococcus, Synechococcus, and picoeukaryotes. Prochlorococcus was most abundant in nutrient-poor conditions in the NPSG, reaching a concentration of 300 cells/μL, and larger phytoplankton, including Synechococcus and picoeukaryotes, were most abundant in the coastal ocean and subpolar region. The diameters of Prochlorococcus, Synechococcus, and picoeukaryotes varied on a diel cycle that was most strongly observed in the gyre. The average diameter of Prochlorococcus and Synechococcus increased by about 0.2 μm outside the NPSG, while the diameter of picoeukaryotes observed by SeaFlow decreased by about 0.4 μm. Prochlorococcus abundance was negatively correlated with nitrate and nitrite. In the future, these variables could be compared seasonally, annually, and across ocean basins to better understand how these populations are responding to climate change.
- Presenter
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- Tam Le Ta, Senior, Medical Laboratory Science
- Mentors
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- Sarah Converse, Aquatic & Fishery Sciences
- Amelia DuVall, Aquatic & Fishery Sciences
- Session
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Session O-1F: Biology of Marine Organisms
- MGH 234
- 1:30 PM to 3:00 PM
Scripps’s murrelets (Synthliboramphus scrippsi; hereafter murrelets) are an endangered seabird with one of the largest breeding colonies in the U.S. at Anacapa Island within Channel Islands National Park. Recent monitoring on Anacapa Island has revealed predation of adult murrelets by common ravens (Corvus corax) that target incubating individuals at their nests. Murrelets are long-lived seabirds, which suggests that adult survival is an important demographic parameter for the viability of this population. Our study will determine the efficacy of remote monitoring tools to detect predation events, predator visitation, and murrelet activity. We deployed camera traps and autonomous recording units (ARUs) at five known nesting caves during the 2021 breeding season. We will compare predator visitation and predation events captured on camera traps with acoustic data from the ARUs to determine the extent of predator vocalization; the same will be done to capture murrelet activity. ARU and camera trap detections will be compared to traditional monitoring methods where humans perform tri-weekly nest checks for predation evidence such as murrelet carcasses or feather piles. We anticipate camera traps will perform better than ARUs at detecting predator visitation and predation events, but groups of two or greater ravens will have higher vocalization rates. In contrast, we anticipate that ARUs will perform better than camera traps at detecting murrelet activity due to their small stature making them less likely to trigger the cameras. We hypothesize the combined power of both remote monitoring tools may be comparable to traditional monitoring methods. Our comparative analysis of monitoring methods will allow park management to make informed decisions for future monitoring protocols for murrelets. In addition, our results will provide the park with a better understanding of the impact of raven predation on murrelets as well as management options to mitigate this impact.
- Presenter
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- Kayley Meggan Hillhouse, Senior, Biology (Physiology), Marine Biology
- Mentor
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- José Guzmán, Marine Biology
- Session
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Session O-1F: Biology of Marine Organisms
- MGH 234
- 1:30 PM to 3:00 PM
In biomimetics, nudibranch sea slugs serve as a model for suction technology suited for rough and uneven surfaces. This study quantified and compared the attachment strengths of several nudibranch species [Dirona pellucid (n=12), Janolus fuscus (n=23), Hermissenda crassicornis (n=20), Aeolidia papillosa (n=13)] from the rocky intertidal of the San Juan Islands (SJI), WA on 3 different substrates – rough rock, smooth rock, and a plank of bull kelp. In individual trials, the substrate and each sea slug were placed in a mini flume tank (0.02 m3 volume) with a rotor engine generating a known current velocity to simulate wave exposure. Water velocity was increased in a stepwise manner (increments of 0.025 m/s to a maximum of 0.25 m/s) until the nudibranch fell from the substrate (referred to as the Critical Point Force, CPF) or until the full trial period (10 mins) elapsed. The hydrodynamic force on the nudibranch was calculated assuming negligible body mass and used as a proxy for nudibranch attachment force, standardized according to nudibranch body length. Attachment strengths were cross compared to calculated average hydrodynamic force in the SJI according to ocean current velocities obtained from NOAA. D. pellucid was the only species to have significantly greater CPF than the other 3 species. Few H. crassicornis individuals fell (n=3), so their CPF could not be accurately quantified. Estimated average hydrodynamic force for SJI currents on a model nudibranch was 56.4 mN while average experimental nudibranch CPF was 5.06 mN. This difference may be due to higher water velocities in the SJI channel than at the dock where the nudibranchs were collected. Across all trials, 54% of nudibranchs fell, so further research should incorporate experimental water velocities exceeding 0.25 m/sec. No significant difference in each species’ CPF across the varied substrates was detected, highlighting nudibranchs’ potential versatility in biomimetics.
- Presenter
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- Ishan Francesco (Ishan) Ghosh-Coutinho, Junior, Pre-Sciences
- Mentors
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- Trevor Dorn-Wallenstein, Astronomy
- Emily Levesque, Astronomy
- Session
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Session O-1G: Modeling Diverse Datasets at Every Scale
- MGH 251
- 1:30 PM to 3:00 PM
In order to compare observations of massive stars with theoretical predictions, stars must be classified accurately. Classification traditionally relies upon expensive new telescope observations. As the field of astronomy enters a new era of Big Data, Modern computational techniques may be used in place of these methods; however the results still require rigorous validation in order to be trusted. Recently, Dorn-Wallenstein et al. (2021) utilized a novel machine learning technique to classify a large sample of massive stars. This resulted in putative classifications for ~2550 stars. Our project serves as a follow-up to validate the results of Dorn-Wallenstein et al. and identify stars with rare evolutionary phases that are most useful for probing stellar evolution. We test the hypothesis that these classifications are reliable by obtaining new observations with the ARCES instrument mounted on the Apache Point Observatory 3.5-meter telescope. Using these data, we assigned classifications to the stars in our sample, focusing on identifying rare objects and evolved supergiants. To this end, we have developed custom software designed to navigate through the key features in our observations and allow for easy identification of an object's spectral type (i.e., its evolutionary stage). We find that our observations support the classifications made by Dorn-Wallenstein et al. Our future work will focus on expanding our sample with further observations in the Southern Hemisphere. This work is critical in order to prepare for the age of Big Data in astronomy.
- Presenter
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- Thomas Minh (Thomas) Do, Senior, Astronomy, Physics: Comprehensive Physics UW Honors Program
- Mentors
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- Federico Fraschetti, Astronomy
- Manpreet Singh, Earth & Space Sciences, University of Arizona
- Session
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Session O-1G: Modeling Diverse Datasets at Every Scale
- MGH 251
- 1:30 PM to 3:00 PM
Charged particles in the heliosphere can be continuously accelerated by interplanetary shocks and eventually escape from these shocks without returning to it. Acceleration and escape are highly intertwined and both contribute to the shaping of the particles’ momentum spectrum at the shock. The simplest model which describes this phenomenon is called Diffusive Shock Acceleration (DSA). DSA has been very successful in describing several observations. However, DSA does not include an energy-dependent escape from the foreshock region. We expand upon DSA by presenting a model for interplanetary shock acceleration which includes this energy-dependent particle escape. We analytically solve a one-dimensional transport equation with a diffusion coefficient and an escape time that describes both the turbulence self-generated by the shock and the far upstream pre-existing turbulence. We consider the case where a shock encounters a population of pre-existing charged particles with a power law energy distribution as measured by spacecraft. We find that at lower energies our solution is concave, whereas at higher energies it asymptotically approaches a power law whose slope depends on the original energy spectrum’s power law index and shock parameters. We fitted the solution obtained from this transport equation to shock data measured from multiple shock events collected by ACE/EPAM (the Electron, Proton, and Alpha Monitor aboard the Advanced Composition Explorer spacecraft). We find that for the shock events considered, our model’s best fit parameters match very well with the predicted values, obtained by using the measured shock parameters. From this model, we can better understand the mechanism of interplanetary shock acceleration and how this phenomenon energizes charged particles near the Sun and around other objects (for example, blazars and supernova remnants).
- Presenter
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- Erik Solhaug, Senior, Astronomy, Physics: Comprehensive Physics Mary Gates Scholar, UW Honors Program
- Mentor
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- Matthew McQuinn, Astronomy
- Session
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Session O-1G: Modeling Diverse Datasets at Every Scale
- MGH 251
- 1:30 PM to 3:00 PM
The circumgalactic medium (CGM) is the extended gaseous halo that typically surrounds the visible parts of a galaxy - the beautiful spiraling disks that one may recognize from an image captured by the Hubble Space Telescope. Although the CGM harbors no stars, making it only faintly illuminated by the interior galaxy and background sources, it is believed to contain far more mass than the galaxy itself. Understanding the CGM is thus key to understanding galaxy formation and address questions such as: Why are some galaxies red and some blue? Why are we only observing ~20% of the baryons (regular matter, not dark matter) we should observe in galaxies? How do galaxies like our own sustain star formation, enabling the particle diversity we see everywhere around us? The way we currently observe the CGM’s properties is through absorption spectroscopy by using a bright background light source (quasar) and observing how the light is absorbed as it travels through the CGM before reaching our telescopes. However, this limits our observations to only a “pinhole” view of the CGM’s properties. With the advent of instruments sensitive enough to observe the light emitted from the CGM, we will be able to create so-called “emission-maps” of the full state of the gas - including temperature, density, and element abundances. Our project has identified what wavelengths (ionic lines) are most observable with more sensitive telescopes, some of which are already underway. I have run computer simulations in the Cloudy program to identify these emission lines and developed models estimating their intensity. The culmination of our work shows that many of these CGM emission lines are detectable with feasible instruments in the near future, laying the groundwork to justify future missions targeting these specific lines in order to investigate the most pressing questions of galaxy evolution.
- Presenters
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- James Zheng Cao, Senior, Mathematics
- Duncan Du, Senior, Computer Science
- Mentor
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- Kirill Golubnichiy, Mathematics
- Session
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Session O-1G: Modeling Diverse Datasets at Every Scale
- MGH 251
- 1:30 PM to 3:00 PM
Mentored by Kirill Golubnichiy, this research project aims to apply mathematical finance and machine learning (ML) to forecast stock option prices. We create and evaluate new empirical mathematical models for the Black-Scholes equation to analyze data for 177,000 companies. For each company, we have 13 elements including stock and options’ daily prices, volatility, minimizer, etc. Because the market is so complicated that there exists no perfect model, we apply ML to train algorithms to make the best prediction. We first analyze several existing stock and option prediction models: Quasi-Reversibility Method (QRM), Binary Classification, and Regression Neural Network (RNN) ML. QRM is an analytical and analytical approach to find the minimizer by solving the Black-Scholes equation as an ill-posed problem; whereas the latter two combine QRM with ML. The current stage of research attempts to combine QRM with Convolutional Neural Networks (CNN), which learns information across a large number of data points simultaneously. Our current focus is to apply CNN to generate new results by programming, implementing, testing, and validating sample data. We will compare our CNN model with previous models to see if it is possible to achieve a higher profitable rate. If our CNN model successfully forecasts prices for a majority of stock options, it might be possible to deploy the model in the real world and help investors make better investment decisions.
- Presenter
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- Alexandra Maria (Alex) Dinu, Senior, Biology (Molecular, Cellular & Developmental), Biochemistry
- Mentor
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- Ram Savan, Immunology
- Session
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Session O-1H: Our War on Pathogens: From Understanding our Enemies to Building Better Defenses
- MGH 271
- 1:30 PM to 3:00 PM
During a microbial infection, cytokine and interferon communication downstream of JAK-STAT signaling molecules are critical for the activation of pro- and anti-inflammatory gene programs. The prevailing model relies on JAKs (Janus Kinases) activation upon cytokine or interferon docking with its receptor at the membrane, which phosphorylates STATs (signal transducers and activators of transcription proteins) and leads to their translocation into the nucleus to either activate or repress the transcription of genes. In this study, we have identified the role of an endocytic pathway responsible for JAK-STAT activation upon interactions between the IL-10 family proteins and the cytokine receptor. Using skin epithelial cell lines, I have performed experiments to show that clathrin-mediated endocytosis is required for the signaling of cytokines that use the IL-10R2 receptor. According to my preliminary results, the inhibition of clathrin-mediated endocytosis using chemical inhibitor dynasore, prior to treatment with IL-26, results in complete shutdown of pSTAT3, pSTAT1, and pErk1/2. These downstream molecules are required for activation of inflammatory gene programming. We now propose to investigate the roles of other inhibitors within the endocytic pathway including chloroquine, bafilomycin A1, and a Rab7a inhibitor on subsequent JAK-STAT signaling transduction. In order to visualize these results, confocal microscopy studies will be used to investigate trafficking in these vacuoles, followed by colocalization studies of JAK proteins with receptors in early endosomes. Our studies suggest that a change in receptor mobilization controlled through the endosomal trafficking mechanism modulates JAK-STAT signaling and downstream gene expression. This proposal is a paradigm shift which challenges the prevailing dogma that IL-10R2 dependent cytokines can activate JAK-STATs at the cell membrane to induce inflammatory responses. Furthermore, this new signaling model has the potential to impact pharmaceutical interventions as the IL-10 family plays a critical role in inflammatory bowel diseases as well as fungal and bacterial infections.
- Presenter
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- Tessa Mae Gardiner, Senior, Microbiology
- Mentors
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- Lucas Hoffman, Microbiology, Pediatrics
- Lauren Gonsalves, Microbiology
- Session
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Session O-1H: Our War on Pathogens: From Understanding our Enemies to Building Better Defenses
- MGH 271
- 1:30 PM to 3:00 PM
Cystic fibrosis (CF) is a genetic disease characterized by polymicrobial lung infections. Staphylococcus aureus, a Gram-positive pathogen, is commonly cultured from the secretions of people with CF (PwCF). Treatment for S. aureus infections requires antibiotics, such as the bactericidal antibiotic trimethoprim-sulfamethoxazole (SXT). SXT prohibits growth by targeting folate biosynthesis, a pathway important for DNA replication and maintenance and production of cell metabolites. In many PwCF, S. aureus generally persists despite antibiotic treatment. Our data shows that S. aureus can survive SXT treatment through the accumulation of adaptive mutations. In this project, we examined these adaptive mutations in S. aureus in vitro to better understand the mechanisms of resistance. We grew several S. aureus isolates with adaptive mutations in Luria Bertani (LB) broth. We sampled the culture tubes at several times in a 24-hour period, measuring viable bacterial counts on chocolate agar. We found that isolates with mutations in the sugar transport gene, ptsI, persisted better under SXT selection, relative to wild-type S. aureus. Other S. aureus isolates with mutations in pathways for aerobic respiration, including menaquinone (menB, thiN) and hemin synthesis (hemB), also better survived SXT compared to wild-type. Many of these mutations were also identified in S. aureus infecting PwCF. These results indicate that adaptive mutations in pathways associated with important metabolic processes may allow survival with folate inhibition. We hypothesize that limiting aerobic respiration may assist in S. aureus surviving SXT. As S. aureus can survive without oxygen, we are currently studying whether limiting oxygen and, consequently, aerobic respiration in wild-type S. aureus will improve survival with SXT. This work will help us understand the mechanisms of SXT action and S. aureus’ response, in an effort to improve treatment for S. aureus infections.
- Presenter
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- Kiersten Piper (Kikki) Tucker, Senior, Neuroscience Levinson Emerging Scholar, Mary Gates Scholar
- Mentor
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- Jennifer Lund, Global Health, Fred Hutchinson Cancer Research Center and University of Washington
- Session
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Session O-1H: Our War on Pathogens: From Understanding our Enemies to Building Better Defenses
- MGH 271
- 1:30 PM to 3:00 PM
Herpes simplex virus type 2 (HSV-2) is a sexually transmitted pathogen that is estimated to infect around 23 million people per year. Despite high global prevalence, there are not any approved vaccines that are therapeutic or preventative. Most vaccines that we use today rely on injecting antigens intramuscularly in order to elicit an adaptive immune response. However, given that most pathogens gain entry to the host across barrier surfaces, a focus on eliciting mucosal immunity may enhance protection; vaccine-induced local immunity at the site of first pathogen exposure may have the best chance at preventing the spread of infection beyond the pathogen portal of entry. We hypothesized that a mucosal immunization would prime memory T cells to reside in vaginal tissues and provide better protection against vaginal HSV-2 exposure than other routes of immunization. Our initial data suggests that intranasal immunization is effective in protecting mice from vaginal HSV-2 infection. Ongoing work focuses on characterizing the role of vaccine-elicited mucosal CD8+ T cells in preventing infection to provide insight into the mechanisms of protection induced by mucosal immunization for HSV-2. These findings contribute to the efforts to generate an effective vaccine to prevent HSV-2 infection and disease.
- Presenter
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- Skyler Lynn Niemeyer, Senior, Biology (Molecular, Cellular & Developmental), Microbiology
- Mentors
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- Deborah Fuller, Microbiology
- Megan O'Connor, Microbiology
- Session
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Session O-1H: Our War on Pathogens: From Understanding our Enemies to Building Better Defenses
- MGH 271
- 1:30 PM to 3:00 PM
In this study we developed a nonhuman primate model of simian immunodeficiency virus (SIV)-Zika virus (ZIKV) co-infection to understand how HIV infection impacts ZIKV pathogenesis and test our hypothesis that ZIKV pathogenesis is enhanced in people living with untreated HIV. Previously, we have found delayed viral clearance, as well as delayed and dampened expansion of whole blood monocytes, the ZIKV cellular targets, during SIV infection. Here, we sought to further characterize the innate immune responses of SIV-ZIKV co-infection, by assessing cytokine and chemokine release. Pigtail macaques (n=7) were infected with SIVmac239M and co-infected with ZIKV at 9 weeks post-SIV infection. Co-infected animals were compared to control animals (n=7) infected with ZIKV only. Longitudinal plasma and cerebral spinal fluid (CSF) were collected at timepoints pre- and post-infection and assayed using a multiplex immunoassay to quantify 24 different cytokine and chemokines ex vivo. SIV and ZIKV both induced pro-inflammatory responses, characterized by transient increases in interleukin-17 (IL-17A) and monocyte chemoattractant protein-1 (MCP-1), with no major differences between experimental groups. Plasma MCP-1 concentrations were also found to be consistent with dampened and delayed whole blood monocyte frequencies. Pro-inflammatory interleukin-8 (IL-8), a chemokine needed for recruitment of neutrophils, increased in the plasma during SIV infection but not following ZIKV infection, a result that is in contrast to our previous findings. Transient increases in IL-8 were detected in a few animals in the CSF after ZIKV infection, which may be evidence for neuroinflammation. Overall, no significant differences between SIV+ vs SIV- groups were found for any analytes detected in plasma or CSF during ZIKV infection. Collectively, our results demonstrate that both SIV and ZIKV infections induce a pro-inflammatory response, that is not enhanced by SIV-ZIKV co-infection. This suggests SIV induced immunosuppression does not impair pro-inflammatory cytokine responses during ZIKV infection.
- Presenter
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- Atharva Bhalerao, Senior, Microbiology
- Mentors
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- Deborah Fuller, Microbiology
- Justin Ulrich-Lewis, Microbiology
- Session
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Session O-1H: Our War on Pathogens: From Understanding our Enemies to Building Better Defenses
- MGH 271
- 1:30 PM to 3:00 PM
Nucleic-acid based vaccines, including RNA and DNA, provide protective immunity by eliciting antibody (Ab), and cytotoxic T lymphocyte (CTL) responses. FDA approval of mRNA vaccines against SARS-CoV-2 (COVID-19) provide ample evidence that mRNA vaccines are a viable vaccine platform. Once a mRNA vaccine enters a cells cytoplasm, mRNA encoded antigens are produced rapidly inducing an immune response. The production of mRNA encoded antigens will wane over time as mRNA degrades and transfected cells die. Alpha viruses, a RNA virus, have a unique replication process whereby this virus amplifies its RNA genome upon entering a cell. We, as well as others, have developed RNA vaccines that, like alpha viruses, self-amplify once inside of a cell to create more copies of mRNA than entered cell. This self-replicating RNA vaccine is called a replicon RNA vaccine (repRNA). RepRNA induces robust and sustained antigen production and immune responses. Currently, mRNA vaccines are administered as a homologous prime/boost vaccine regimen where the same mRNA vaccine is given as a priming vaccine and boosting vaccine, but antibody titers wane over time allowing for potential infections. This project aims to evaluate If utilizing a heterologous prime/boost regimen with DNA and repRNA vaccines confers more robust and longer lasting antibody and CTL responses than homologous regimens with DNA or repRNA. Mice will be vaccinated with DNA as a priming vaccine and repRNA as a boosting vaccine that encode SARS-CoV-2 spike protein. Anti-SARS-CoV-2 spike IgG antibody titers will be measured at 3-4 different timepoints, and CTL responses will be evaluated using an interferon gamma (IFN-γ) enzyme-linked immune absorbent spot (ELISpot) assay. The insights gained from this project will help to inform future DNA vaccine formulations and regimens as more DNA vaccines and repRNA vaccines enter clinical trials.
- Presenter
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- Flora Abrams, Senior, Bioengineering
- Mentors
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- Charles Murry, Laboratory Medicine and Pathology
- Silvia Marchiano, Laboratory Medicine and Pathology
- Session
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Session O-1H: Our War on Pathogens: From Understanding our Enemies to Building Better Defenses
- MGH 271
- 1:30 PM to 3:00 PM
Since the beginning of the Severe Acute Respiratory Syndrome-Coronavirus 2 (SARS-CoV-2) pandemic, a large number of COVID-19 patients have suffered a variety of cardiovascular complications. In a previous study from the Murry Lab, human pluripotent stem cell-derived cardiomyocytes (hPSC-CMs) were infected with live SARS-CoV-2 alpha variant, resulting in increased cell death and functional abnormalities. Once infected with SARS-CoV-2 delta variant, hPSC-CMs showed reduced cell death, compared with the ones infected with alpha. The SARS-CoV-2 genome has at least 14 open reading frames (ORFs), which is the transcribed part of a gene. A difference in expressed ORFs can create new variants. The delta variant has 60 amino acid deletions in the ORF7a sequence, resulting in the absence of the ORF7a protein. Thus, I hypothesized that this protein might play a role in cardiomyocytes’ cell death. To demonstrate that this protein has a direct effect on hPSC-CMs cell death, I have created a lentivirus plasmid construct that expresses only ORF7a protein. To assemble the virus, I transfected HEK-293 cells with the ORF7a plasmid with two other plasmids encoding for the packaging and the replication of the lentivirus. Once the virus is ready, I will then infect hPSC-CMs with the lentivirus. If the ORF7a protein is responsible for cell death, we expect to see increased cell death in the hPSC-CMs infected with the ORF7a lentivirus. Showing support of the ORF7a protein inducing harmful effects on cardiomyocytes has the potential to provide valuable insight for scientists to target this particular protein for drug development to combat cardiovascular complications in COVID-19 patients.
- Presenter
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- Diana Lei, Senior, Biology (Molecular, Cellular & Developmental) Mary Gates Scholar
- Mentor
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- David Shechner, Pharmacology
- Session
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Session O-1I: Immunology, Cancer and Biomedical Sciences
- MGH 288
- 1:30 PM to 3:00 PM
Decades of research have demonstrated that RNA molecules can serve as architectural scaffolds, templating the assembly of subcellular compartments in all kingdoms of life. In mammals, architectural RNAs scaffold an array of subnuclear structures that are essential to cellular function including metabolism, DNA repair, and epigenetic programming. Many of these architectural RNAs are causally dysregulated in diseases, including cancer and neurodegenerative disorders. However, the molecular mechanisms of these architectural RNAs remain poorly understood, partially because technologies for identifying the molecules (proteins, DNAs, other RNAs), with which RNAs interact are lacking. To address this challenge, the Shechner Lab has developed a technology termed Oligonucleotide-Directed Biotinylation (ODB), a universal method for elucidating RNA subcellular interactions. ODB applies a powerful method called proximity-biotinylation to individual RNAs. In proximity-biotinylation, a promiscuous biotinylating enzyme (e.g. Horseradish Peroxidase, HRP) is targeted to a subcellular compartment of interest. This enzyme then tags nearby (~10 nm) molecules with biotin, enabling their straightforward isolation and analysis. ODB advances this technology by using RNA-in situ Hybridization (RNA¬–FISH) methods to precisely deploy HRP to individual RNAs. Ongoing work, using a series of model RNA targets, has demonstrated that ODB can reveal the proteins, RNAs, and genomic loci near a target RNA at exceptional depth and precision. My goal is to generalize this ODB protocol, developing methods that can be applied to any RNA target. To examine how RNA abundance influences ODB experimental design, I use pulse-chase, RNA decay experiments to manipulate the expression of the architectural RNA NEAT1, and examine how to adjust parameters of the ODB protocol to compensate for this altered expression. Likewise, I am using imaging-based assays to investigate how ODB's biotinylation radius varies with labeling conditions, increasing the range of ODB’s target radii. Collectively, this establishes general guidelines for adapting ODB to novel RNA targets.
- Presenter
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- Evan Yuen Fei Yip, Senior, Bioengineering: Data Science Mary Gates Scholar
- Mentors
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- Herbert Sauro, Bioengineering
- Lucian Smith, Bioengineering
- Session
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Session O-1I: Immunology, Cancer and Biomedical Sciences
- MGH 288
- 1:30 PM to 3:00 PM
Cancer is a disease that is characterized by uncontrolled cell growth and proliferation. As these cells spread throughout the body they can invade and damage major organs resulting in death. It has been shown that most cancers arise from genetic changes in the signaling pathways that control the cell growth and proliferation. One major challenge cancer researchers face is to understand the behavior of these pathways. As an example, the behavior of the Endothelial Growth Factor receptor (EGFR) pathway, a commonly mutated pathway in cancer, has a broad range of behaviors. Under different conditions, the pathway can exhibit bistability, amplification and even oscillations in protein levels. Predicting such behaviors can significantly aid our understanding of how cancer arises as well as provide us with insights to therapeutically treat patients. The goal of this project was to develop a high accuracy machine learning model that is capable of predicting the behaviors of signaling pathways. Over the first quarter, I generated over 3000 artificial signaling networks utilizing existing software written by the lab. For each of these networks I then extracted the network architecture, the connections and relationships between species in the pathways, into matrices such as the stoichiometry matrix and scaled Jacobian matrix. These matrices were then treated as pseudo-images and used to train a convolutional neural network to predict oscillatory behavior. We expect this model to have greater than 70 percent accuracy given preliminary models trained on similar smaller datasets. The development of this high accuracy model provides cancer researchers with valuable insights into the behavior of these signaling pathways and how they can best therapeutically treat patients.
- Presenter
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- Olivia D'costa, Senior, Medical Laboratory Science
- Mentor
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- Juliane Gust, Neurology
- Session
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Session O-1I: Immunology, Cancer and Biomedical Sciences
- MGH 288
- 1:30 PM to 3:00 PM
Chimeric antigen receptor (CAR) T cell therapy is a highly effective treatment for blood cancers; however, it is correlated with neurotoxicity in about 40% of cases. Neurotoxicity manifests as headaches, delirium, and in more severe cases, seizures, coma, and death. In a mouse model of CD19-directed CAR T cell therapy, we observed that mice developed behavioral changes, as well stalled blood flow in over 10% of brain capillaries. This was caused by circulating leukocytes becoming stuck in the capillaries. My goal for this project was to investigate the underlying mechanism of capillary stalls in the context of CAR T cell therapy. We predicted that capillary stalls are caused by increased expression of adhesion molecules, such as Intercellular Adhesion Molecule-1 (ICAM-1) and Vascular Cell Adhesion Molecule-1 (VCAM-1), by the endothelial cells that comprise the capillary walls. These adhesion molecules grip onto molecules on the surfaces of leukocytes, creating plugs and halting blood flow through the vessels. To test this hypothesis, I used immunohistochemistry to compare the expression of ICAM-1 and VCAM-1 between 4 treatment groups: mock, tumor, CAR T, and tumor+CAR T. Mice from each treatment group were perfused and their brains were collected and sectioned. I incubated mouse brain sections in a primary antibody solution targeting ICAM-1 and VCAM-1, and then in a secondary fluorescently conjugated antibody solution that bound to the previous antibodies, enabling specific labeling of the molecules of interest. I then imaged the sections with a confocal microscope and analyzed them using ImageJ software. I quantified the brightness of fluorescence of ICAM-1 and VCAM-1 to determine the relative expression of these molecules between control mice and those receiving CAR T. The findings from this project have contributed to our overall understanding of the mechanisms of neurotoxicity associated with CAR T cell therapy.
- Presenter
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- Aitong Ruan, Senior, Biology (General)
- Mentors
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- Shannon Oda, Pediatrics, Hematology/Oncology
- Edison Chiu, Seattle Children's Research Institute
- Session
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Session O-1I: Immunology, Cancer and Biomedical Sciences
- MGH 288
- 1:30 PM to 3:00 PM
Adoptive cell immunotherapy (ACT) with engineered T cells has shown impressive efficacy against some cancers, particularly CD19+ leukemias. However, ACT efficacy in solid tumors can be limited by restrictive tumor microenvironments (TMEs), with increased inhibitory signals, reduced T cell infiltration/accumulation, and inadequate metabolic substrates. We engineer T cells with novel switch receptors that combine an inhibitory ectodomain with a costimulatory signaling endodomain, to “replace a break with an accelerator”. FasL is a death receptor ligand that is overexpressed in the majority of human TMEs and can protect tumor cells from immunity by giving T cells inhibitory signals upon binding. We engineered a Fas-4-1BB switch receptor to convert the Fas death signal to a costimulatory 4-1BB signal and demonstrated enhanced Fas switch-receptor-T cell in vivo persistence and therapeutic efficacy in a murine pancreatic cancer model (KPC). We developed new switch receptor candidates by combining CD200R, an inhibitory signaling receptor, ectodomain with various co-stimulatory endodomains. Our aim is to screen for CD200R switch receptors that exhibit the best expression on T cells, best ability in tumor-lysis and proliferation with the least exhaustion in TMEs, and test the best candidates in KPC models. We are able to transduce mouse T cells to express our CD200R constructs, which is verified by flow cytometry, and ready to start in vitro killing assay to assess their ability in tumor-lysis. This T cell engineering strategy may help overcome the restrictive TMEs, catalyze an endogenous immune response, and greatly improve T cell anticancer efficacy.
- Presenter
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- Jesus Cabrales Quintanilla, Junior, Pre-Sciences UW Honors Program
- Mentors
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- Shyril O'Steen, Fred Hutchinson Cancer Research Center, Fred Hutch
- Damian Green, Medicine, Fred Hutchinson Cancer Research Center
- Session
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Session O-1I: Immunology, Cancer and Biomedical Sciences
- MGH 288
- 1:30 PM to 3:00 PM
Non-Hodgkin's Lymphoma (NHL) is the most common malignancy of the blood and bone marrow, responsible for about 4% of all cancers. The anti-apoptotic MCL-1 and BCL-xL proteins have been linked to the development of various types of NHL. Radiation is an effective treatment, as it is known that lymphomas are generally highly sensitive to radiation, but toxicity can limit the dose. Our goal is to use different treatments in varying combinations to find points of synergy where the effect of the treatments surpasses the expected additive response. We first tested in vitro response of NHL cell lines to the BCL-xL inhibitor A1155463 and the MCL-1 inhibitor S63845. We then evaluated combinations between the two inhibitor drugs with radiation treatments. To date we have tested cytotoxicity of these treatment combinations in six NHL cell lines. All lines tested with the combination of the MCL-1 and BCL-xL inhibitors demonstrated an increase in cell death attributable to a synergistic effect between the two drugs. Furthermore, when treated with radiation prior to the two drug treatments, three out of the six lines demonstrated a synergistic response to the triple treatment combination. The other three lines displayed an additive response to the triple combination. Moving forward we aim to test a total of 14 NHL cell lines, and given the positive results to date, will also expand the work into mouse models. These largely synergist results show promise because they suggest that this triple combination treatment could reduce treatment side effects while also improving the curative response for NHL patients.
- Presenter
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- Marlene Probst, Senior, Biology (Molecular, Cellular & Developmental), Neuroscience UW Honors Program
- Mentors
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- Thomas Reh, Biological Structure
- Marina Pavlou, Biological Structure
- Session
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Session O-1J: Towards a Better Understanding of Neuro-Related Disorders
- MGH 284
- 1:30 PM to 3:00 PM
Retinal diseases such as macular degeneration and glaucoma lead to various forms of blindness as neurons in the retina die. Unlike amphibians or fish, the neurons of the mammalian retina cannot regenerate on their own and any damage is permanent. Previous research has shown that we can recover some of the lost regenerative capacity in mammalian retinas by mimicking the regeneration process in other species. This is possible by overexpressing transcription factor Ascl1 in Müller glia (MG), which are the main support cells in the retina. However, expressing Ascl1 alone can only lead to the neurogenesis of one type of neuron in the retina. This limits the therapeutic applicability of this approach because in diseases like macular degeneration or glaucoma, specific neuronal cell types are lost such as photoreceptors and ganglion cells respectively. Therefore, to regenerate these neurons we need to identify the right cocktail of transcription factors for MG reprogramming. Recent single-cell analysis from our lab has identified candidate developmental factors that could push reprogrammed cells to photoreceptors or retinal ganglion cells. This project aims to investigate the role of these factors in influencing cell fate after MG cells have been pushed to a progenitor state with Ascl1. Using lentiviral vectors, I will induce the overexpression of these candidate genes in primary cultures of young adult mouse MG that have been engineered to express Ascl1. In order to identify the nature of resulting neurons from these cultures I will perform immunocytochemistry paired with confocal microscopy, and to better understand changes in functionality of these cells I aim to perform calcium imaging. Since the electrophysiological responses of glia and neurons are distinct, cultures with reprogrammed neurons would record differently. Overall, this analysis evaluates the influence of new transcription factors on mammalian retinal regeneration.
- Presenter
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- Abby Elizabeth Nesper, Senior, Environmental Science & Resource Management
- Mentor
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- David Butman, Environmental & Forest Sciences
- Session
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Session O-1K: Turf 'n Surf: Science of Earth and Ocean
- MGH 258
- 1:30 PM to 3:00 PM
Freshwater wetlands are the largest natural source of methane, a powerful greenhouse gas (GHG), to the atmosphere. However, the mechanisms and magnitude of wetland methane (CH4) emissions are not well understood. There is significant variability of flux estimates between field sites and a lack of agreement between top-down and bottom-up estimations of methane flux, indicating a high level of uncertainty. This study provides the first estimation of aquatic methane flux in the Union Bay Natural Area (UBNA). This site can be categorized as a freshwater wetland and is an urban site that is adjacent to a former landfill. We hypothesize that the flux will be dominated by ebullition (bubble released) emissions and that the total emissions will decrease as depth increases. To measure the total CH4 flux, we measured diffusive emissions using a flux chamber and LGR portable greenhouse gas analyzer and ebullition emissions with bubble traps that were left in the field site for 48 hours. In addition to these measurements we collected water parameter measurements using an Exo sonde and dissolved gas samples at each diffusive sampling location. With this data, we were able to calculate the measured CH4 flux and model the flux so that the two values could be compared. This study indicates the spatial variability and depth-dependent patterns of methane flux in the UBNA. There are multiple possible extensions of the research. If more sampling campaigns were conducted throughout the year, the data could be used to describe temporal variability in flux. Additionally, if gas samples are collected from the ventilation systems on the landfill, an isotopic analysis could reveal the percentage of methane emissions that can be attributed to decomposition in the landfill.
- Presenter
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- Nicole Lauren Ferrie, Senior, Atmospheric Sciences: Climate, Earth & Space Sciences (Environmental)
- Mentors
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- Cailey Condit, Earth & Space Sciences
- Jason Ott, Earth & Space Sciences
- Session
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Session O-1K: Turf 'n Surf: Science of Earth and Ocean
- MGH 258
- 1:30 PM to 3:00 PM
The deformation processes in the brittle-ductile transition region are poorly constrained and critical to understanding both the magnitude of earthquakes within the subduction seismogenic zone, and slow slip and tremor downdip of this region. Here we present field observations and microstructural data in the form of photomicrographs, thin-section scale x-ray maps and electron backscatter diffraction (EBSD) to constrain the rheology of a paleosubduction interface in the Central Alps during deformation and fluid-rock interaction. We studied three samples across a 10 meter transect within the lowest 10 meters of the overring Austroalpine plate at the contact with the Penninic subduction plate shear zone. Our granodiorite samples are exhumed from paleodepths of 30-35 km. Cataclasites, microfractures, and crack-seal quartz ± calcite veins are evidence of brittle deformation while a ductile foliation fabric indicates viscous deformation at conditions of 400-430ºC & 0.80-0.95 GPa. EBSD data shows progressive increase in viscous deformation and mineralogic changes closer to the contact. As the samples progress towards the shear zone the crystallographic preferred orientation and grain misorientation of quartz and albite decreases suggesting the controlling deformation process changes from dislocation creep to diffusion creep due to pinning of the albite and quartz by phengite. This coincides with progressive fluid-rock modification observed in photomicrographs and chemical x-ray maps. We observe a decrease in albite replaced by an increase in quartz and phengite across the three samples. The breakdown of albite, and its replacement with more water rich minerals like phengite, the quartz +/- calcite veins, and the progressive shift from dislocation to fluid-aided diffusive mechanisms demonstrates increased fluid-rich interactions nearer to the plate interface contact. Increased fluid-rock interaction impacts the viscous deformation mechanisms and strength of these rocks. Diffusion creep occurs in low stress environments, suggesting that fluid- rock interactions lead to a low stress environment below the locked seismogenic zone.
- Presenter
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- Caleb Flaim, Junior, Environmental Studies, Oceanography
- Mentors
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- John R. Delaney, Oceanography
- Anna Sulc, Interdisciplinary Arts & Sciences (Bothell Campus), Oceanography, University of Washington Seattle
- Session
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Session O-1K: Turf 'n Surf: Science of Earth and Ocean
- MGH 258
- 1:30 PM to 3:00 PM
Ocean conveyor belt circulation is conceptually foundational in oceanographic education. It is the idea that oceans slowly overturn through the movement of deep water toward the equator and surface water toward the poles. Introductory courses often spend the majority of a semester building the skills required to understand the basics of this theory. Ocean circulation is also typically covered through multiple courses to build upon its complexity through different study lenses. The multi-dimensional concept of ocean circulation is commonly conveyed through 2D diagrams and animations rather than presenting ideas in a 3D space that allows students to form connections between theory and physical space. Students were asked to interact with a 3D printed model that recreates circulation diagrams by connecting cross-sections of oceanographic data to specific locations on the model. Furthermore, students were asked to describe how perturbations to surface conditions could change ocean stratification and how water circulates based on its temperature and salinity. Previous 3D printing experience allowed us to expand students’ experiences while struggling to parse these interdisciplinary oceanographic topics. Here we show that using a physical model in teaching thermohaline circulation enhances the speed and depth at which students understand ocean circulation compared to the traditional 2D approach. Surveys were given to assess students’ understanding of the driving factors behind thermohaline circulation prior to and after interacting with the model. Preliminary results show that students can better connect oceanographic concepts taught in lectures to data and locations essential to ocean circulation after completing exercises that ask them to interact with the model. We anticipate students to exhibit further proficiency in concepts related to ocean circulation after interacting with this model. We also expect to find that students will express a desire to see the utilization of similar models in more of their core oceanography courses.
- Presenter
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- Jazzy Marie (Jazzy) Shepard, Senior, Oceanography
- Mentor
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- Jan Newton, Oceanography
- Session
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Session O-1K: Turf 'n Surf: Science of Earth and Ocean
- MGH 258
- 1:30 PM to 3:00 PM
Community composition and structure of modern benthic foraminiferal assemblages are commonly used as indicators of integrative water quality. The San Juan Archipelago is a tidally mixed estuarine environment located in the Salish Sea. This is an oceanographically complex area due to ocean input from the Strait of Juan de Fuca and estuarine input from the Fraser River. To assess the feasibility of using foraminifera as water quality indicators, foraminiferal assemblages from four oceanographically distinct locations in the San Juan Archipelago were collected and subsequently identified to pair water conditions with associated differences in assemblage. I carried out a survey of foraminiferal tests from Rosario Strait, Strait of Juan de Fuca, and San Juan Channel. Density of the number of tests decreased in high current environments and water-column stratification had no impact on assemblage. Abundance of Lobatula lobatula and Rotalinoides gaimardii were significantly correlated with oxygen, temperature, salinity, and nitrate. Depth and individual water conditions were observed to impact diversity of foraminiferal assemblage more than stratification. Foraminifera are incredibly resilient and present in most sediments of the San Juan Archipelago allowing foraminiferal assemblage to be used as a tool for water quality assessment in the San Juan Archipelago based on the abundance of species like L. lobatula and R. gaimardii.
- Presenter
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- Rebecca Victoria Leveque, Senior, Japanese
- Mentor
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- Justin Jesty, Asian Languages & Literature
- Session
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Session O-1L: Narratives of Transformation
- MGH 228
- 1:30 PM to 3:00 PM
In this project I completed last spring, I examine both reception and textual content of renowned author Matsuura Rieko's 1987 short story collection Natural Woman to explore what makes the work an affirmative portrayal of queer women, focusing on the joy, pain, and growth the women themselves derive from their relationships (rather than painting them in a scandalous or pornographic light). I first review reception from both queer women in Japan and literary critics at the time of the work's release, revealing that the work was embraced by queer women at the time for its true-to-life portrayals but generally overlooked by literary critics for its queer themes. I then explore three main aspects of the work - the protagonist YÅko's position as a first person narrator of the three stories, the nonlinear ordering of the stories, and the use of space in the stories - to depict lesbianism as something that is intrinsic to YÅko's character and allows her to explore her identity and grow. These three aspects show YÅko’s growth as a character, all while her continued attraction towards women is not seen as a barrier to her growth, but rather, a means of growth. Additionally, they make the perspective of YÅko and the emotions of the women she is involved with the focal point of the story, giving queer women voices and depicting pleasure for their own sake. As works of contemporary Japanese literature depicting same-sex relationships between women have largely yet to be examined in depth, my hope is that this research brings attention to the potential for visibility of queer women in contemporary Japanese literature that is gained by examining what makes for portrayals of queer women that are affirmative.
- Presenter
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- Eve Yixuan (Eve) Wang, Senior, Comparative History of Ideas, Landscape Architecture
- Mentor
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- Elizabeth Umbanhowar, Built Environment, Landscape Architecture
- Session
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Session O-1L: Narratives of Transformation
- MGH 228
- 1:30 PM to 3:00 PM
We are living in a world of gender, but it’s difficult to grasp its shape because of its fluidity and complexity. And yet, many of us are taught to believe that gender only exist as “either-or”, or that it is merely about our own identities. My research about gender in my gender and sexuality course GWSS 200 and GWSS 390 have offered me the tools to better articulate historic and current ideas and experiences related to gender and place. With this interactive zine project, I invite my audiences to question and interrogate assumptions about gender and our gendered world through words and images. I introduce a series of terms and their definitions accompanied by abstract graphics based on my own understanding and experiences. During the reading process, I encourage my readers to embrace and embody those terms through their deeply personal lenses and experiences, as well as through guided intentional practices, like making art pieces or writing poems with the terms and ideas provided in the zine. in so doing, participants examine their own vulnerabilities around gender in a safe space. Unfamiliar vocabularies are intended to evoke questions if not some confusions, but that’s the point. I hope to deepen our awareness of gender-related topics and ongoing issues through a humane, educational, and playful strategy, and eventually, cultivate more empathy within us.
- Presenter
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- Marshall Vincent Bender, Junior, History, Germanics UW Honors Program
- Mentors
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- Stephanie Smallwood, Comparative History of Ideas, History
- James Gregory, History
- Session
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Session O-1L: Narratives of Transformation
- MGH 228
- 1:30 PM to 3:00 PM
The Civil Rights Movement of the 1960s in the United States galvanized millions of Americans to fight for a more free and democratic society, banding together to protest racial segregation and other forms of systemic racism such as police violence against minorities. Newspapers covered these actions extensively, spreading the message of civil rights across the US. People eager for change in cities far from the centers of civil rights activism in the South, such as Seattle, responded to this national political fervor by fighting for change locally. In Seattle, activists sought an end to job and housing discrimination, de facto school segregation, and police violence through non-violent direct action. Seattle’s major print newspapers, The Seattle Times and the Seattle Post-Intelligencer covered these issues extensively, spreading news and controversial developments to their readers. In my research, I analyze newspaper coverage on activism and cases of police violence which garnered a strong public demand for justice. With the support of other sources, such as the biographies of Seattle activists, the histories of local civil rights organizations, and studies on media coverage of the police, I construct an analysis of how these newspapers shifted their coverage of civil rights activism and police violence throughout the 1960s as a response to community activism. This critical angle focuses on how the actions of Seattle’s activist community influenced newspaper media, prompting the newspapers to include more activist perspectives in their news coverage. This research, therefore, displays the power that local activists held in influencing print media coverage of their actions, and with that, the influence that activists had to shift the public perspective towards activism in the 1960s in Seattle.
- Presenter
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- Ethan Benson, Junior, History UW Honors Program
- Mentors
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- Nathan Roberts, History
- Stephanie Smallwood, Comparative History of Ideas, History
- Session
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Session O-1L: Narratives of Transformation
- MGH 228
- 1:30 PM to 3:00 PM
Mount St. Helens shook local communities and spewed volcanic ash into the sky for two months before it finally had its major eruption. In those two months newspapers eagerly tracked the activity, crafted a story, and relayed it to their audiences. When the mountain erupted on May 18, 1980, the world caught a glimpse of nature’s power and found a dramatic climax to their two-month story. In the immediate aftermath, accounts of what had happened took various forms, ranging from personal hymns to films, with each of them showing a different response to the eruption. These responses showcase a population reconsidering what it means to live alongside nature. Today, forty years later, Mount St. Helens’ story is still being told through a wide array of sources. In my research, I analyze works approaching the eruption, reacting in the immediate aftermath, and those which have come out in memory. I note the content of these sources as well as their framing to construct an analysis of how changing treatment of the Mount St. Helens story reveals society’s approach to nature before the eruption and how that approach changed in response to the events of May 18. I specifically focus on sources consumed and produced by the broader public, such as films and songs, using private correspondence or scientific conferences only as a source of what does not make widespread narratives. This approach encapsulates how people of various communities make sense of living alongside the natural world, and especially how they conceptualize sudden change events like volcanic eruptions. My research uncovers both flaws in the population’s conceptual relationship to nature as well as their tendencies to remember natural events, specifically Mount St. Helens, in a way that maintains or minimally changes the way the see themselves in the world.
- Presenter
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- Jasmine Mae Alindayu, Junior, Extended Pre-Major Mary Gates Scholar
- Mentors
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- Maria Elena Garcia, Comparative History of Ideas
- José Antonio Lucero, International Studies
- Adam Warren, History
- Lydia Heberling, English, University of Washington, Seattle
- Session
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Session O-1L: Narratives of Transformation
- MGH 228
- 1:30 PM to 3:00 PM
The Philippines is experiencing a new kind of era ever since the onset of Rodrigo Duterte’s presidency. Although the Philippines deems itself as a republic, the president exhibits an authoritarian nature. His tactics, rhetoric, and worldview have garnered attention and controversy, leading to a reevaluation of the country. Despite disagreement and condemnation from human rights groups and other entities, for many people Duterte stands as an effective leader in the Philippines. Even with his brutality, there is a strong presence of approval. In this project, I aim to explore and uncover what makes Duterte such a likable figure among Filipino citizens. A review of the literature reveals many plausible reasons. Duterte veils himself as a ‘common man.’ His efforts to combat the war on drugs are also admirable to many Filipinos; they feel much safer with some of his policies. Initially, my research was supposed to manifest in an academic paper. However, I found that one of my parents shared the same sentiments as other Filipinos. To highlight my findings, I chose to interview my dad and borrowing from the work of Ocean Vuong, I utilized the form of a letter to my father. With this project, I aimed to connect with my dad in hopes of understanding more about my people. Additionally, I was able to hear the genuine thoughts and background of my dad. This brought me closer to my roots, and my dad. This research contributes further to the broader question of what makes dictators and authoritative leaders, such as Duterte, ‘likable’ people to their citizens.
- Presenter
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- Anita Anni Mean, Senior, Psychology, Sociology UW Honors Program
- Mentors
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- Judith A Howard, Gender, Women, & Sexuality Studies, Sociology
- Daniel Nolan, Sociology
- Session
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Session O-1L: Narratives of Transformation
- MGH 228
- 1:30 PM to 3:00 PM
Becoming an adult is a significant life course transition which brings much uncertainty to an individual's life. Previous studies attribute this uncertainty to navigating a growing sense of agency, with more outlets to explore emerging adulthood and personal identities. As young adults increasingly engage with these opportunities, more time is spent away from their families. As a result, they are less susceptible to the parental, familial, and cultural pressures in the home, where parents enforce their expectations for adulthood onto their children. The lifestyle of young adults of Asian immigrant parents who identify as a gender or sexual minority (AAGSM) often conflicts with their parents' ideal of a successful transition into adulthood. Yet, they find themselves poorly represented within gender and sexual minority (GSM) spaces, often downplaying their racial or ethnic identities to feel accepted. Scholars are only beginning to examine the outcomes of this identity conflict with AAGSM young adults, and so far, none have made a clear connection between the transition to adulthood literature and the (in)visibility of Asian-American coming-out narratives. The goal of my study is to understand how parental closeness and expectations for emerging adulthood affect how AAGSM young adults perceive their preparedness for adulthood. This goal will be met by conducting semi-structured interviews, asking participants to reflect on their parents' and their own expectations for adulthood with the consideration of their AAGSM identity and relational closeness. As I am using grounded theory to conduct my analysis, the anticipated results of my study have yet to be determined. Focusing on AAGSM young adulthood is a promising area for future research, as it holds important implications on how to accomodate the intersectional experiences of individuals as culture continues to evolve.
- Presenter
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- Adeline Laura Ellison, Senior, Political Science
- Mentors
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- Rebecca Thorpe, Political Science
- Ryan Goehrung, Political Science
- Session
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Session O-1M: Crisis Politics in the 21st Century Global Order
- MGH 082A
- 1:30 PM to 3:00 PM
My research paper investigates whether the Supreme Court is influenced by public opinion. It is important to be aware of whether the Court is inclined to uphold laws that have been passed by legislative majorities or overturn them. Is the Supreme Court restrained or does it have a tendency for judicial activism? The question that guides my work is: During the period of approximately the last six decades, has the Supreme Court been influenced by public opinion when deciding politically important (i.e., salient) cases? My theory is that the Supreme Court is influenced by public opinion when deciding cases that are salient due, in part, to the Court’s inherent political nature. Justices ascend through a partisan appointment process that is predicated on the sharing of power between the President and the Senate. Consequently, justices and their institution cannot uncouple from the political ecosystem. Specifically, I posit that fear of non-implementation constrains a justice’s decision-making. Non-implementation would occur if the Court’s ruling was not enforced by either a lower court or a non-judicial authority. And the potential consequence of recurring non-implementation is to degrade the Court’s legitimacy. To test my hypothesis systematically, I will use multivariate regression analysis to examine the relationship between the ideological direction of Supreme Court case decisions and prevailing public opinion, while accounting for the influences of other factors. My analysis incorporates data from (approximately) 5,000 individual Supreme Court cases, extending from 1958 to 2018. I predict that public opinion does influence Supreme Court decision-making when rulings will ‘resolve’ the national debate around issues that have significant public policy implications.
- Presenter
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- Bella Lin, Senior, Political Science, Philosophy
- Mentors
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- Rebecca Thorpe, Political Science
- Ryan Goehrung, Political Science
- Session
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Session O-1M: Crisis Politics in the 21st Century Global Order
- MGH 082A
- 1:30 PM to 3:00 PM
This paper uses national data collected through China’s population census to estimate the effect of housing prices on fertility rates between 2000-2020 across 31 provincial-level administrative regions in mainland China. I theorize that higher housing price would lead to a decrease in fertility rates. I take housing price as a proxy for the overall costs of living. As houses become more expensive, younger generations are forced to save money for years to afford buying a house. When individuals’ income remains unchanged, higher housing prices lower people’s purchasing ability. This lowered purchasing ability leaves people less financially capable of raising a child and results in individuals being less willing to have a child. This paper employs a multivariate regression model and controls for other relevant variables. I expect to find that with the continuous increase in housing price, there is a steady decrease in fertility rates in each administrative region. Furthermore, since a more rapid rise in commodity prices is associated with fast economic development especially in Beijing and Shanghai, the fertility rates in these two regions would be the lowest, corresponding with a weak per capita purchasing power of individual households. This analysis of the relationship between housing price and fertility rate is important because it explains why there is a fertility decline despite robust economic growth in a developing country. This paper calls for changes in maternity policy to accommodate possible decline in workforce and productivity in China and its aging society in the next 20 years.
- Presenter
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- Sam Barbezat, Senior, Political Science
- Mentors
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- Rebecca Thorpe, Political Science
- Ryan Goehrung, Political Science
- Session
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Session O-1M: Crisis Politics in the 21st Century Global Order
- MGH 082A
- 1:30 PM to 3:00 PM
Recent years have seen a great expansion in the public consciousness of human impacts on global environment, as well as wider acceptance of the reality of anthropogenic climate change. Although individual willingness to take pro-environmental action is a crucial component to real progress on the climate dilemma, it is a phenomenon whose antecedents are complex and diffuse. While much of the literature on this topic focuses on the identity characteristics which may account for individual pro-environmental behaviors, in this research project I build on research in environmental psychology and other disciplines to hypothesize that spending time in nature impacts the pro-environmental behaviors of individuals. I argue that, because it facilitates deeper connection and measurable psychological changes toward cooperative behaviors, time in nature is likely an influence on future actions on behalf of the natural world. I further theorize that although time in nature may impact Democrats and Republicans differently, there is an effect regardless of partisanship. To test this hypothesis, I employ a multivariate regression analysis which tests the relationship between time spent in nature and pro-environmental behaviors while controlling for possible confounding variables including income, education, gender, and partisanship. To investigate the effects of partisanship, I also run a model testing whether time in nature influences the behavior of Democrats and Republicans differently. I expect to find in each case that the relationship between time in nature and pro-environmental behaviors is statistically significant. Such findings could serve to emphasize the importance of access to natural spaces for the future of environmental attitude formation and activism.
- Presenter
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- Taylor Pedersen, Senior, Psychology Mary Gates Scholar
- Mentors
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- Jeffrey Iliff, Psychiatry & Behavioral Sciences, University of Washington School of Medicine
- Samantha Keil, Psychiatry & Behavioral Sciences
- Session
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Session O-1N: Neural and Mental Health: From Preclinical Models to Humans
- MGH 242
- 1:30 PM to 3:00 PM
Chronic sleep disruption, present in 25-60% of patients suffering from Alzheimer's Disease (AD), often precedes cardinal disease symptoms. While little is known about the mechanisms underlying chronic sleep disruption and the development of clinical pathology, both acute and chronic sleep deprivation have been found to increase biomarkers of AD including neuroinflammation and amyloid-beta accumulation. Additionally, in people without AD, sleep deprivation can result in a deterioration of working memory and attention. In this study, we examine the impact of chronic sleep disruption on cognition both at baseline and in the 5xFAD mouse model of AD. The 5xFAD mouse model is a transgenic mouse model of familial amyloidosis which expresses neurocognitive impairment as early as 2 months. To define the effect of chronic sleep disruption on cognition in the absence of AD pathology, 60 wild type mice were exposed to chronic sleep disruption or sham procedure for 8 weeks between 10 and 18 weeks of age. At 18 weeks of age, I evaluated the animals for changes in spatial memory (Barnes maze), short-term memory (Y-maze), locomotion and anxiety (open field test), and activities of daily living (burrowing trials). To test whether chronic sleep disruption specifically exacerbates AD-related neurocognitive decline, the same cognitive tests were performed on 60 5xFAD+ animals exposed to 8 weeks of sleep disruption or sham treatment. I then analyzed the collected data to isolate any trends of cognitive performance, finding that chronic sleep disruption impaired cognitive performance in 5xFAD+ and littermate controls, with a more significant impact on 5xFAD+ animals. These findings highlight the critical association between dysfunctional sleep and the development of cognitive impairment with AD disease progression which then guides us toward better preventative care and treatments.
- Presenter
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- Mathew Sevao, Senior, Neuroscience
- Mentors
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- Jeffrey Iliff, Psychiatry & Behavioral Sciences, University of Washington School of Medicine
- Molly Braun, Psychiatry & Behavioral Sciences
- Session
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Session O-1N: Neural and Mental Health: From Preclinical Models to Humans
- MGH 242
- 1:30 PM to 3:00 PM
Mild traumatic brain injury (mTBI) is a major public health issue, frequently resulting in long-term sequelae such as sleep disruption, headaches, and cognitive impacts. In recent years, mTBI has emerged as a risk factor for the development of neurodegenerative diseases, such as Alzheimer’s disease (AD). Blast-related mTBI has been experienced by large numbers of Servicemembers during the conflicts in Afghanistan and Iraq; therefore, their potential vulnerability to downstream neurodegeneration is a major concern among Veteran populations. Recent evidence demonstrates that TBI impairs the glymphatic system, a brain-wide network of perivascular channels along which cerebrospinal fluid (CSF) and interstitial fluid (ISF) exchange facilitates the clearance of interstitial solutes such as amyloid β and tau. However, these findings were in an impact TBI model, which is a brain injury caused by a blow to the head; therefore, relatively little is known about the possible effects of blast mTBI. Here, we hypothesize that glymphatic function is impaired following repetitive blast mTBI. Using a murine blast model, we measured glymphatic function at both 7-day and 28-day timepoints following a repetitive blast induced TBI. Glymphatic function was quantified using intracisternal fluorescent tracer injection and measuring the fluorescent intensity of CSF tracer movement. We found a delayed impairment in glymphatic function at 28 days post-injury. These findings may provide further insight on the mechanisms that may render the blast-injured brain vulnerable to neurodegeneration and may give rise to improved treatments for patients exposed to blast injury.
- Presenter
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- Ron Vered, Senior, Biology (Physiology)
- Mentors
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- Jeffrey Iliff, Psychiatry & Behavioral Sciences, University of Washington School of Medicine
- Deidre Jansson, Psychiatry & Behavioral Sciences, University of Washington/VA Puget Sound Health Care System
- Session
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Session O-1N: Neural and Mental Health: From Preclinical Models to Humans
- MGH 242
- 1:30 PM to 3:00 PM
Alzheimer’s disease (AD) is an age-related neurodegenerative disease characterized histopathologically by amyloid plaques and neurofibrillary tangles in the brains of affected individuals. The impairment of cerebrospinal fluid (CSF)-mediated clearance of proteins including amyloid beta and tau from the brain is proposed to underlie the development of AD pathology. Sleep and circadian disruption are both linked to the development of AD. CSF clearance is regulated through both sleep and circadian processes, while CSF production by the choroid plexus (CP) is diurnally regulated. The CP acts as a blood-CSF-barrier, provides nutrient delivery, and clears toxic proteins. Studies to date document reduction in CSF production, impaired blood-CSF-barrier function, and altered protein uptake in both aged and AD conditions. It is currently unknown whether the CP is itself regulated by sleep and circadian rhythms and whether disruption of these two governing processes contributes to disease development. Our initial analysis across awake, asleep, and acutely sleep-deprived young mice indicated no gene expression differences between sleep states; however, significant circadian-dependent transcriptional changes were observed. We then examined the circadian-dependent gene expression profile of the CP in aged (12-14 months) mice and in an AD mouse model. Preliminary analysis reveals a shift in the transcriptional profile of aged mice and a near complete loss of circadian regulation in the AD model. Ongoing analysis and validation are being carried out to reveal functional pathways disrupted in the CP that could provide a further understanding of AD pathology.
- Presenter
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- Anamika Nanda, Senior, Anthropology: Medical Anth & Global Hlth, Anthropology: Human Evolutionary Biology UW Honors Program
- Mentors
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- Alvin Logan, Anthropology, Burke Museum
- Robert Tennyson, Anthropology
- Session
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Session O-1N: Neural and Mental Health: From Preclinical Models to Humans
- MGH 242
- 1:30 PM to 3:00 PM
Regular physical activity protects against cellular aging, but a recent study found shorter telomere length (TL) in professional swimmers compared to less active controls. Shorter TL is associated with increased cellular senescence and functional decline with age, suggesting swimmers may be at increased risk for age-related morbidity. Previous studies reported competitive swimmers face high levels of psychosocial stress, which, in turn, is posited to accelerate TL shortening. I hypothesize that competitive collegiate swimmers experience increased psychosocial stress, leading them to have shorter TL despite their active lifestyles. I conducted a mixed-methods study to examine whether TL differs between Division-1 and Division-3 National Collegiate Athletic Association, NCAA, swimmers (N=28 respectively) and their non-athlete counterparts (N=15) and if differences in TL is associated with psychosocial stress (Total N=43). Collegiate swimmers face a unique set of stressors to perform for scholarships and professional opportunities while simultaneously continuing their responsibilities as students. Accordingly, I measured overall psychosocial stress (Cohen’s Perceived Stress Scale; PSS) to compare swimmers and non-athletes as well as sports-related psychosocial stress (The Student Athletes’ Motivation toward Sports and Academics Questionnaire; SAMSAQ) to compare D-1 to D-3 swimmers. Further, I conducted semi-structured qualitative interviews to better contextualize how student-athletes perceive how the psychosocial stress they experience impacts their lives and performance. I expect swimmers to report higher levels of overall psychosocial stress (PSS) and have shorter TL compared to non-athletes. Further, I expect that D-1 swimmers will report higher levels of psychosocial stress (SAMSAQ) and have shorter TL compared to D-3 swimmers. There are over 10,000 NCAA swimmers across the country and minimal studies have looked at their physical and mental health simultaneously. This study hopes to highlight the areas we can better support and improve both the physical and mental health of our collegiate swimmers, and NCAA student-athletes as a whole.
- Presenter
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- Sanjana Agarwal, Senior, Biology (Physiology) Mary Gates Scholar
- Mentors
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- Jeffrey Iliff, Psychiatry & Behavioral Sciences, University of Washington School of Medicine
- Samantha Keil, Psychiatry & Behavioral Sciences
- Session
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Session O-1N: Neural and Mental Health: From Preclinical Models to Humans
- MGH 242
- 1:30 PM to 3:00 PM
The glymphatic system, which is primarily active during sleep, is a network of astroglial perivascular channels within the brain that allow for Cerebrospinal Fluid (CSF) influx and exchange. Glymphatics play a crucial role in the waste clearance of amyloid beta, a hallmark in the development of Alzheimer’s Disease and neurodegeneration. Recently, a bidirectional relationship between Alzheimer's Disease and sleep has also been suggested with the aggregation of amyloid beta associated with mid-life sleep disruption. However, the mechanistic link between sleep disruption, particularly over chronic time scales, and the development of Alzheimer’s pathology remains unclear. This study investigates whether chronic sleep disruption, similar to that experienced in humans, will impact downstream neuropathology. We hypothesize chronic sleep disruption will result in decreased glymphatic function and subsequently increased amyloid plaque burden. This experiment utilizes a chronic sleep fragmentation model in 120 5xFAD mice from 8 weeks to 16 weeks of age. In the Lafayette Sleep Fragmentation chambers, 60 animals are disturbed every two minutes during normal sleeping periods (daylight hours). 60 mice were placed in normal sleeping conditions. After eight weeks of sleep fragmentation or sham exposure, glymphatic function is assessed by in vivo near infrared imaging following stereotactic CSF tracer injection. Animals are perfusion fixed, cryosectioned, and glymphatic function is assessed by measurement of fluorescent cerebrospinal fluid tracers in brain tissue. Aquaporin-4 localization, amyloid plaque deposition, and markers of astroglial and microglial activation are assessed by immunofluorescence. In this project, I specifically work on cryosectioning the tissue, and understanding glymphatic function through the processes of immunofluorescence imaging and analysis. The collected data demonstrated that sleep disruption did increase neuropathological outcomes.The measured impact of glymphatic function was also correlated with these downstream pathological effects. These findings could be an indicator of interactions between neurological disease progression and an inflammatory expression after sleep disruption. They can also shed more light on the complex relationship between Alzheimer’s disease progression, the glymphatic system, and chronic sleep disruption.
- Presenter
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- Emmers Klein, Senior, Biology (Molecular, Cellular & Developmental) Mary Gates Scholar
- Mentors
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- Jeffrey Iliff, Psychiatry & Behavioral Sciences, University of Washington School of Medicine
- Samantha Keil, Psychiatry & Behavioral Sciences
- Session
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Session O-1N: Neural and Mental Health: From Preclinical Models to Humans
- MGH 242
- 1:30 PM to 3:00 PM
Alzheimer’s Disease (AD) is a neurodegenerative disease that affects more than 5 million Americans. The glymphatic system (a network of perivascular spaces that facilitate fluid movement and solute clearance from the brain) and its dysfunction associated with aging has been implicated in the development of AD. The water channel aquaporin 4 (AQP4), located in astrocytic endfeet bordering the perivascular spaces, is crucial for the proper functioning of the glymphatic system. Data suggests that loss of AQP4 localization results in amyloid-ß deposition, a hallmark of AD pathology, and loss of AQP4 localization accompanies aging in rodents as well as AD in humans. In this study, we quantitatively analyze the expression of aquaporin- 4ex (AQP4ex)—a translational readthrough variant of AQP4 believed to play a role in its localization—to identify any correlation with aging and AD pathology. Selective deletion of AQP4ex results in the mislocalization of AQP4 all over the astrocytic membrane, indicating that AQP4ex is a crucial element in the localization of AQP4. We analyze young, old and AD groups in the murine (mouse) brain as well as AD versus control in a human case series. Currently, we see a trend towards decline in cortical perivascular AQP4ex in the AD group, with more analysis ongoing. This is the first characterization of AQP4ex expression in the murine brain and in a human case series, and these data will contribute to the small but growing body of research on AQP4ex and its relationship with AQP4 localization, creating opportunities to identify a new novel mechanism and novel target in AD pathology.
- Presenter
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- Jerry Cao, Senior, Applied Mathematics, Computer Science (Data Science) Levinson Emerging Scholar, Mary Gates Scholar, UW Honors Program
- Mentors
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- Jennifer Mankoff, Computer Science & Engineering
- Adriana Schulz, Computer Science & Engineering
- Session
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Session O-1O: Real World Challenges of Software and Hardware
- MGH 295
- 1:30 PM to 3:00 PM
The NIH 3D Print Exchange is a public and open source repository for primarily 3D printable medical device designs with contributions from expert-amateur makers, engineers from industry and academia, and clinicians. In response to the COVID-19 pandemic, a collection was formed to foster creative submissions of low-cost, locally manufacturable personal protective equipment (PPE). To understand trends from this extraordinary occurrence of medical making, we performed a mixed-methods analysis of this collection. We used a combination of qualitative data from a thematic analysis and quantitative data from web scraped details of over 600 submissions. From this analysis, we found a disconnect between the NIH’s intention for the platform and how it was used. Instead of generating a diverse array of designs, the submission requirements and rating designations led to a rapid convergence of the design space. In this presentation, I present our findings for what we believe resulted in this disconnect and provide suggestions for how to improve upon the repository’s design. This work contributes valuable insights into the outcomes of distributed, community-based medical making and how platforms can support regulated maker activities in high-risk domains such as healthcare. Furthermore, many of our recommendations could be applied to non-health focused maker repositories such as Thingiverse and Instructables.
- Presenter
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- Xuweiyi Chen, Senior, Informatics, Applied & Computational Mathematical Sciences (Statistics) CoMotion Mary Gates Innovation Scholar
- Mentors
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- Ka Yee Yeung, School of Engineering and Technology (Tacoma campus), University of Washington Tacoma
- Ling-Hong Hung, School of Engineering and Technology (Tacoma campus)
- Session
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Session O-1O: Real World Challenges of Software and Hardware
- MGH 295
- 1:30 PM to 3:00 PM
The Biodepot-workflow-builder (Bwb) is a cloud-enabled platform that provides a customizable and interoperable application to enable accessible and reproducible analyses of biomedical data. Analytical workflows in biology typically consist of a sequence of computational tasks. Each widget in the Bwb represents a different module that performs a computational task. Users can use a drag-and-drop user interface to connect these graphical widgets in order to specify the flow of data and sequence of computational tasks. Currently, signals are generated by calling functions to modify states, and a Python GUI toolkit called PyQt is used to manage signals and connections between each module in Bwb. In this work, I developed a new extensible software engineering framework leveraging a chief and worker architecture to manage signals and connections in the specified sequence of computational tasks. My new framework uses microservices which arrange a task as a collection of services. Specifically, I develop a microservice framework using FastApi, a Python framework to develop REST API, and a PostgreSQL database which will save the history of connections, current signals and connections. FastApi will be responsible for communicating and coordinating the source service. This new framework is flexible, easy-to-maintain and modifiable, so that new services can be easily added to Bwb. For example, as future work, we will convert all the visualization code to a web-based service that will be managed by FastApi. By converting Bwb from a monolithic, static design to a dynamic microservice architecture, we make the platform more robust, maintainable and easily modifiable. Bwb can now adapt and scale to the increasing complexity of biomedical analyses and the increasing size of biomedical datasets.
- Presenter
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- Felicia Yan, Senior, Business Administration, Computer Science
- Mentor
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- Amy Zhang, Computer Science & Engineering
- Session
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Session O-1O: Real World Challenges of Software and Hardware
- MGH 295
- 1:30 PM to 3:00 PM
Open-source communities are central to facilitating the development of collaborative computing projects online. In any community, there are often policies that govern how the community functions, and as such communities become larger, projects have slowly seen more variety in their governance systems, making it no longer possible to just assume the governance structure of a project. The emergent practice of GOVERNANCE.md files in online collaborative code repositories such as GitHub works to close that gap by clearly defining the governing rules of what role contributors play and what guidelines they should be following. In this project, we developed a python script to scrape all the public GOVERNANCE.md files on GitHub in order to understand what the landscape of governance on GitHub looks like according to these files. Then, we analyze these files by creating data visualizations to compare different features of these files and characteristics of the community or repository (number of collaborators, creation date, number of edits to file, etc). This can then help develop answers to other key questions—how community governance files and models have changed over time, what aspects have changed and the driving factors/rationale behind these trends, and whether or not the changes in these models are following any specific trends (such as becoming more democratized).
- Presenter
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- Cameron James Norris, Senior, Electrical Engineering (Bothell) Mary Gates Scholar
- Mentor
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- Sunwoong Kim, Electrical Engineering (Bothell Campus), University of Washington Bothell
- Session
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Session O-1O: Real World Challenges of Software and Hardware
- MGH 295
- 1:30 PM to 3:00 PM
The IEEE 754 standard, established in 1985, provides the most widely used formats for real number arithmetic. These formats use a floating radix point, and therefore they support a wide range of real numbers. However, these formats require greater computational complexity and hardware circuit area than the integer format. Many modern applications, such as multimedia signal processing and machine learning, are tolerant of approximate calculations. Thus, many custom hardware designs have been proposed for approximate arithmetic, especially for real number multiplication, that can calculate faster and with higher area efficiency at the cost of accuracy. This research is based on an existing approximate multiplier hardware architecture for 32-bit single-precision floating-point numbers. As this architecture uses an iterative approach, it has great advantages in reducing the circuit area. We extend the architecture to be used for the 64-bit double-precision floating-point number format and the recently devised Posit number format. The proposed approximate multiplier hardware designs are then applied to real-world applications, such as histogram stretching. Applications are developed on a hardware/software codesign platform, which has been optimized for cooperation between hardware and software components. In particular, real number multiplications are processed by the proposed hardware designs, and the rest is processed by an ARM processor on the platform.
Poster Presentation 2
1:00 PM to 2:30 PM
- Presenters
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- Lyndsy Vasquez- She, Her, Fifth Year, Nursing Mary Gates Scholar, UW Honors Program
- Melinda Schultz,
- Mentors
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- Tatiana Sadak, Nursing, UW SON
- Emily Ishado, Biobehavioral Nursing & Health Systems
- Session
-
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Poster Session 2
- MGH 241
- Easel #72
- 1:00 PM to 2:30 PM
Undergraduate nursing students—the next generation of health care providers—play a pivotal role in caring for people living with dementia (PLWD) as their numbers continue to rise. Unfortunately, new graduates may not be adequately prepared by their educational programs to care for PLWD. This study aimed to capture students’ current attitudes about and barriers to working with older adults and PLWD post-graduation, especially related to their desire for receiving additional clinical and didactic curricular content. We also evaluated students’ interest in enrolling in the elective dementia and Long-Term Care (LTC) Externship. An initial survey was distributed to first and second-year bachelor of nursing (BSN) students at the University of Washington School of Nursing (SoN) in April 2021. The survey consisted of 20 questions modified from the Dementia Attitude Scale (DAS) and 8 questions related to respondents’ health care experience and attitudes about nursing care of older adults. The survey was completed by 76 first and second-year BSN students. The survey focused on students’ comfort level working with PLWD and their willingness to expand geriatric and dementia care skills. To gather more illustrative qualitative data, we conducted a focus group with 8 BSN students. The survey results indicated low self-reported knowledge of nursing care for PLWD as well as a lack of desire to work in the discipline immediately following graduation. However, the majority of focus group members (N= 6) expressed interest in acquiring additional knowledge and hands-on learning opportunities in care for older adults and PLWD. Key components that would attract students to geriatrics training and a LTC externship included: structured seminar; access to interactive, relevant pre-study materials developed by professionals; and 4-6 hour clinicals of hands-on skills. Conclusions: The findings from these surveys have informed the development of a LTC Externship, which is currently being piloted and evaluated.
- Presenters
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- Ofir Horovitz, Senior, Public Health-Global Health
- Noa Etzyon, Junior, Public Health-Global Health
- Eiden Harel (Eiden) Brewer, Junior, Pre-Sciences
- Mentor
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- Naomi Sokoloff, Near Eastern Languages & Civilization
- Session
-
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Poster Session 2
- Commons West
- Easel #7
- 1:00 PM to 2:30 PM
Preserving the stories of Holocaust survivors is vital to remembering the inhumane and harrowing events that transpired during the Nazi Era as well as preventing them from ever occurring again. This project aimed to translate a collection of narratives from Holocaust survivors from Mizoch, a village in Ukraine. These stories consisted of personal memories, folklore, short tales about cultures and customs, written accounts of the genocide, images, and more. These Hebrew texts were published in 1961 and needed to be translated into English to increase access to these stories. One of the greatest challenges we faced was finding a balance between maintaining the literal integrity of the text and preserving the poetic and stylistic nature of the writing(s). Cultural, religious, and generational differences in language prevented direct verbatim equivalences. Was a literal translation with choppy flow better or worse than an English version that lost some of the original interpretation? In working together, we were able to combine our varying linguistic skills and understandings to solidify our writing. We found that the most powerful and complete translations both retained the tone of the original text and allowed for relatively easy reading. Our work has been published online and is accessible to all for free. This aligns with our goal to help disseminate these Mizoch narratives. Additionally, our translations have been used by a Ukrainian university scholar to create Ukrainian versions that have also been published online. As these English texts continue to serve as sources for future translations, protecting the authenticity of these stories is critical.
- Presenter
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- Linh Vu, Senior, Earth & Space Sciences (Environmental), Atmospheric Sciences: Climate Mary Gates Scholar, NASA Space Grant Scholar
- Mentors
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- Cecilia Bitz, Atmospheric Sciences
- Robin Clancy, Atmospheric Sciences
- Session
-
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Poster Session 2
- Commons East
- Easel #38
- 1:00 PM to 2:30 PM
Polar cyclones are extremely common, but their relationship to sea ice melt and growth is not always clear. They survive longer than midlatitude cyclones and thus have significant impacts on the seasonal variability of sea ice. Sea ice can have major impacts on ocean circulation, local ecosystems, and is sensitive to important feedback systems that affect global climate. No comparison has been made between the two hemispheres of sea ice response to cyclones. I use data from a combination of ERA5 reanalysis for cyclone tracking and observed sea ice concentrations to select intense cyclones and compare their effects on sea ice. Atmospheric data is ‘regridded’ so that Antarctic cyclones are central to the area of analysis. This allows for further study into atmospheric features that make up cyclone structure and spatial patterns in the sea ice response. Atmospheric features show similar spatial patterns in both Antarctic and Arctic cyclones, however differences in temperature, water vapor, and cloud cover are much greater in Antarctic cyclones. Typically, Antarctic cyclones are considered to be more intense than Arctic cyclones, however I show that when differences in latitude and typical background sea level pressure values are accounted for, cyclone intensity is similar in both hemispheres. In both hemispheres, sea ice growth is found to the west of cyclones and loss is found to the east, however greater east-west differences are found in the Antarctic. Understanding the impact of polar cyclones can improve short-term sea ice forecasting and paint a clearer picture of the variables that control the climatology and variability of the polar atmosphere.
- Presenters
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- Jodi Yoshimi, Senior, Anthropology
- Juliet Oreste, Senior, Anthropology: Archaeological Sciences
- Lillian Williamson, Senior, Political Science, Environmental Studies Mary Gates Scholar, UW Honors Program
- Quinn Matthew Habedank, Senior, Environmental Studies UW Honors Program
- Mentor
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- Ben Marwick, Anthropology
- Session
-
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Poster Session 2
- Balcony
- Easel #59
- 1:00 PM to 2:30 PM
Madjedbebe is the earliest known site of human activity in Australia with artifacts dating to 65,000 years ago. However, the presence of termite mounds in the landscape of the site have led some to question this notable date. Termites have the potential to affect the stratigraphic integrity of archaeological sites, their subterranean movements mixing sediments from deposits of different ages. Such activity may have led to the overestimation of the age of artifacts at Madjedbebe. Our study investigates the extent to which termites disturbed Madjedbebe’s archaeological deposits, thereby providing key insight into the reliability of the ages of the site’s sediments and artifacts. We used micro X-ray fluorescence (μXRF) to quantify and compare elemental concentrations in blocks of resin-impregnated archaeological sediments and sediments collected from termite mounds. We analyzed the μXRF data using log ratio analysis. Our research seeks to identify whether chemical traces of termite activity exist within sediments at Madjedbebe. Our results indicate that termite-impacted sediments have distinctive chemical signatures that distinguish them from archaeological deposits; generally, this signature is not present in any of the Madjedbebe samples. There is therefore little evidence for termite activity and mixing in the archaeological deposits. Our findings are indicative of high stratigraphic integrity at the site, suggesting that the proposed 65,000-year-old ages of the Madjedbebe artifacts are sound. This is important for understanding the timing of the arrival of humans in Australia, the earliest movement of humans out of Africa, and the chronology of human interactions with Denisovans and Neanderthals. Our research also demonstrates the applicability of material science methods to archaeological questions.
- Presenters
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- Caroline Jane Johnson, Senior, Electrical Engineering UW Honors Program
- Trinh Nguyen, Senior, Electrical Engineering
- Oleh Kondratyuk, Senior, Electrical Engineering
- Mentors
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- Scott Hauck, Electrical & Computer Engineering
- Shih-Chieh Hsu, Physics
- Anatoliy Martynyuk, Electrical & Computer Engineering
- Geoffrey Jones, , University of Cambridge
- Session
-
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Poster Session 2
- Commons East
- Easel #44
- 1:00 PM to 2:30 PM
High-Level Synthesis for Machine Learning (HLS4ML) has created an open-source library to optimize the resources and time needed to run machine learning inference on hardware devices. This library has converted common machine learning algorithms into C files and subsequently into Verilog code that can be uploaded onto these devices. This process works on creating efficient techniques to produce neural networks and convolutional neural networks that can be mapped to Field-Programmable Gate Arrays (FPGAs). Our group seeks to analyze the strengths and weaknesses of this process through exploring the performance, resources, time, and other criteria of models derived from a high-level neural network library, Keras. We have chosen to explore the KERAS1_Layer and KERAS_conv2d models. To evaluate the efficiency of the low level code produced by HLS4ML, we implemented our own SystemVerilog versions that mimic the machine learning algorithms. In doing so, we are able to understand what HLS4ML is doing that is replicable in just Verilog, and what is not. We are currently working on matching HLS functionality, but preliminary results show that our KERAS_1Layer implementation has faster clock speeds while lagging behind in terms of resource usage and latency. This is due to a higher number of pipeline stages and we are working on rectifying this. We expect to see similar results for the KERAS_conv2d model.
- Presenter
-
- Claudia Sun, Senior, Biology (Molecular, Cellular & Developmental) Mary Gates Scholar
- Mentors
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- Daniel Promislow, Biology, Pathology, University of Washington School of Medicine
- Ben Harrison, Pathology
- Session
-
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Poster Session 2
- Commons West
- Easel #19
- 1:00 PM to 2:30 PM
Why do identical twins have different lifespans? Beyond genes, what else might influence the aging process? Variation in any phenotype is due to the combined effects of genetic variation and environmental variation. In fact, there are two types of environmental variation—one is extrinsic environmental variation, such as food, temperature, etc., and the other is intrinsic environmental variation, which can lead to subtle differences in behavior, such as how much an individual eats, how long it sleeps, etc. We hypothesize that these differences can be predicted by an individual’s underlying metabolism. There are thousands of molecules that make up the structural and functional building blocks of all organisms, a domain known as the metabolome. Previously, many studies have shown that genotypes vary in lifespan, but even within a single genotype there is enormous variation in lifespan. Here we address how intrinsic environmental variation influences aging by controlling the genetic and extrinsic environmental variation under lab conditions. We designed an experiment using Drosophila melanogaster, and since Drosophila has a natural tendency to climb upwards against gravity, and climbing ability of flies decreases with age, we hypothesized that we might use climbing ability as a biomarker of future mortality risk. Using mid-life climbing ability, we separated genetically-identical flies and then analyzed each group’s lifespan. We found that within a genotype, strong climbers had a longer lifespan than non-climbers. Finding strong support for this hypothesis led us to propose that the metabolome between climbers and non-climbers might be different. Our goal is to understand the role of intrinsic variation in aging. If we can find metabolites that associate with climbing ability, and as we have shown, climbing ability is associated with aging, we might be a step closer to explaining how intrinsic environmental variation influences aging.
- Presenter
-
- Kriti Bhardwaj, Senior, Biology (Molecular, Cellular & Developmental)
- Mentor
-
- Rania Hussein, Electrical & Computer Engineering
- Session
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Poster Session 2
- Commons East
- Easel #43
- 1:00 PM to 2:30 PM
An ostomy is a surgery performed to create an opening in the abdomen called a stoma. The purpose of this procedure is to divert the body waste in cases of injury or disease in the intestine. Living with a stoma requires that the patient carries a pouch that is attached to the stoma to collect the body waste. A plastic disk called a wafer goes around the stoma to secure the pouch and protects the skin surrounding the stoma from the corrosive output by acting as a barrier. To prevent any leakage, the patient must accurately cut the wafer to fit around the stoma and needs to know the exact size and shape of the stoma. An inaccurate stoma measurement and wafer cut can result in leaking bags, bleeding, infection, pain, diet changes and anxiety in public environment. As a potential solution, the innovation of a telehealth mobile application utilizing 3D imaging in modern smartphones will allow the patients to scan and measure their stoma shape by just using their phone cameras. In my research, I conducted interviews asking questions regarding the daily struggles of an ostomate and where the stoma application fits as a novel and effective solution. As a result, I gained insights showing that while patients with ileostomies (stoma in the small intestine) face more challenges because of increased chances of stoma leakage, patients struggling with obesity, dexterity issues, and disabilities have a hard time carrying out stoma care on their own. Moreover, patients with irregularly shaped stomas as opposed to perfectly round stomas go through the trial-and-error process of accurately cutting a wafer more often. Therefore, a convenient and cost-effective stoma scanning app will make it easier and faster for the patients to have an accurate wafer cut that will fit perfectly around their stoma.
- Presenter
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- Megan N. Stoppler, Senior, Biochemistry UW Honors Program
- Mentors
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- Nina Salama, Microbiology, Fred Hutchinson Cancer Research Center
- Sophie Sichel, Fred Hutchinson Cancer Research Center, Laboratory Medicine and Pathology, Fred Hutch, Human Biology Division
- Session
-
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Poster Session 2
- Commons East
- Easel #25
- 1:00 PM to 2:30 PM
H. pylori is a gram-negative, helical shaped bacteria that infects more than 50% of the world's population. The shape of bacteria is determined by the peptidoglycan cell wall, which is a macromolecule composed of glycan strands cross-linked by short D-amino acid containing peptide stems. The Salama Lab has identified multiple cell-shape-determining proteins that are required for the helical cell shape of H. pylori, including Csd5. Csd5 is a transmembrane protein and loss of Csd5 causes cells to be straight rods instead of helical. The C-terminal bacterial SH3 domain of Csd5 binds directly to the peptidoglycan cell wall. This project aims to identify whether the SH3 domain of Csd5 binds to a specific feature of the peptidoglycan cell wall. We hypothesize that the SH3 domain binds specifically to tetrapeptides in the peptidoglycan cell wall. To investigate whether the SH3 domain binds to tetrapeptides, we performed a pull-down experiment with purified SH3 domain and purified peptidoglycan from mutants that have varying tetrapeptide content. From this we confirmed that peptidoglycan with higher tetrapeptide content pulls down purified SH3 domain from Csd5 at a higher level than peptidoglycan with lower tetrapeptide content, suggesting that the SH3 domain of Csd5 preferentially binds to the tetrapeptides in the sacculus. In addition, we are visualizing where tetrapeptides are localized in H. pylori cells and identifying whether purified SH3 domain incubated with purified cell walls localizes to the same location by 3D microscopy. By investigating how the SH3 domain of Csd5 interacts with the peptidoglycan cell wall, we will learn more about how Csd5 controls the helical cell shape of H. pylori cells.
- Presenter
-
- Katherine Hackney, Senior, Environmental Sci: Geosciences (Tacoma)
- Mentor
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- Erik McDonald, Interdisciplinary Arts & Sciences (Tacoma Campus)
- Session
-
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Poster Session 2
- Commons East
- Easel #31
- 1:00 PM to 2:30 PM
With continued population growth in urban areas, salmon populations along the coastal margins of the United States are being increasingly impacted by stormwater runoff. Urban stormwater has been linked to pre-spawn mortality events in Coho salmon (Oncorhynchus kisutch), killing them just hours after exposure. This phenomenon is known as urban stormwater mortality syndrome (USMS) and has been shown to affect large portions of Coho populations in heavily developed watersheds (≥ 60% of entire run). This study is a continuation of research that started in 2017, focusing on the incidence of USMS in Swan Creek (Tacoma, WA), which is a tributary stream that feeds into the lower Puyallup River. Live salmon and carcasses were counted weekly from October 1-December 15 and used for estimating annual spawner abundance in 2017-2021. Female Coho carcasses were examined for evidence of USMS (≥50% egg retention). Additionally, this research included community engagement efforts in collaboration with The Pierce Conservation District to educate local middle school students on the salmon life cycle, water quality, and human impact on ecosystem health. The results of this study have not yet been analyzed but will be presented visually via poster during oral presentation. Little is known about the incidence of USMS in the Puyallup River watershed, this research will support future projections for Coho populations and contribute to better understanding the implications of USMS.
- Presenter
-
- Elizabeth Paige (Lizzy) Theirl, Senior, Geography, Neuroscience Mary Gates Scholar, UW Honors Program
- Mentor
-
- Kessie Alexandre, Geography
- Session
-
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Poster Session 2
- Commons East
- Easel #33
- 1:00 PM to 2:30 PM
Historically, one’s social and geographical position can result in disproportionate levels of exposure to harmful environmental toxins and contaminants. The field of Environmental Justice aims at addressing this inequality by redistributing both the environmental burdens and benefits among all members of society. My research focuses on access to “blue spaces,” or public spaces built around bodies of water that confer health benefits and promote active lifestyles, as an environmental justice issue. Given that Minnesota prides itself with being the land of “10,000 lakes” on every license plate, my research aims to see if the state slogan may be misleading as these lakes may only be accessible to some members of my community. Exploratory in nature, my research intends to reveal possible inequalities regarding access to blue space—even if not clearly visible in the everyday landscape. Through the formulation of a Blue Space Equality Index, which includes several proxy variables for accessibility such as transportation routes, water quality, sidewalks and bench availability, and recreational usages, I will examine three blue space regions in Minneapolis. Using this index in conjunction with demographic and property values data, I intend to represent the local environment surrounding these spaces. A closer investigation of Minneapolis is relevant and timely considering the several high-profile cases of systematic racism in the city’s recent past which have made global headlines; Minneapolis is just a snapshot of what is occurring across the country and that closer examination of the environment is needed to better understand the forces underlying environmental and socioeconomic disparities in Minneapolis. My investigation of blue space accessibility will shed light on how the residents of Minneapolis connect with the environment around them and potentially expose the harsh realities for some community members who call the Twin Cities home.
- Presenter
-
- Gladys Wang, Senior, Mathematics (Philosophy), Linguistics Mary Gates Scholar
- Mentor
-
- Jing Xu, Anthropology
- Session
-
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Poster Session 2
- Balcony
- Easel #61
- 1:00 PM to 2:30 PM
Current research in Anthropology of children and their agency is generally lacking as they are often viewed as passive appendages to adults. This study seeks to study the moral agency of children from a gender perspective in a conventionally patrilineal, patriarchal cultural context. To investigate the ways in which gender interacts with and exert influence on children's moral development, we examine an unpublished archive of interviews and observations of rural Taiwanese children compiled by the late anthropologist Arthur P. Wolf in the 1950s using modern computational methods. For this research, I apply techniques such as statistical modeling and social network analysis to explore children’s interpersonal behaviors. Our preliminary findings show that although boys and girls exhibit different behavioral patterns, gender does not seem to be a factor that affects a child’s centrality in the network based on co-occurrence. My future analysis will focus on children's conflict and cooperation, the dark and bright side of moral development, by studying the general behavioral patterns within and across gender and/or age group, but will also highlight representative or epicentic individual observation entries. By looking into the social life of school-age and pre school-age children of rural Taiwanese children in the 1950s, this study also sheds light on the influence of gender on children's moral development in a non-Western historical and cultural context.
- Presenter
-
- Hanna Jordis Moss, Senior, Biology (Physiology)
- Mentors
-
- Emily Knaphus-Soran, Sociology
- Elizabeth Litzler, Sociology
- Daiki Hiramori, Sociology
- Session
-
-
Poster Session 2
- Commons East
- Easel #36
- 1:00 PM to 2:30 PM
Campus safety issues are not typically included in institutional diversity efforts. However, it's important to understand how students with diverse ranges of social identities perceive campus safety; promoting safety should be prioritized. To understand marginalized student perceptions of campus safety and policy, I analyzed focus group transcripts (31 participants) from PNW LSAMP (Pacific Northwest Louis Stokes Alliance for Minority Participation) students and recent alumni from the University of Washington, Washington State University, Oregon State University, Portland State University and Boise State University. Data was coded deductively in NVivo by a pre-determined coding scheme guided by the research question but allowing for inductive coding as other themes emerged. My findings indicate that gender identity has a high impact on perceived safety. Women and non binary individuals tended to discuss feeling uncomfortable in campus areas at night and mentioned taking preventative safety measures like carrying tasers. Participants identified emergency blue lights and safe rides as initiatives which maintained or improved safety feelings. This indicates that on some level, universities are already protecting marginalized students. Little discussion on policy improvement emerged, but instead how universities can use clarity and police presence (or absence) to show students they value their safety. Namely, several Black/African American participants expressed preference for more detailed notifications on how to take action when safety threats are alerted to the university community. Participants generally expressed that police did not improve their safety perceptions or that police presence could detract from other students’ safety depending on their race. These findings suggest that universities are protecting marginalized student safety to some degree. Next steps include clarifying safety notifications, expanding safe ride and emergency blue light operations, and conducting broader surveys on perceptions of campus and municipal police, given police brutality incidents and mixed literature.
- Presenter
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- Kayla Vay Tran, Senior, Microbiology, Public Health-Global Health
- Mentors
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- Hassan Eldesouky, Microbiology
- David Sherman, Microbiology
- Session
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Poster Session 2
- Commons East
- Easel #26
- 1:00 PM to 2:30 PM
Mycobacterium abscessus (MABSC) is a species of rapidly growing nontuberculous mycobacteria (NTM) that is most frequently encountered in human NTM infections and is very difficult to treat. Active MABSC disease commonly emerges from pulmonary infections, to which populations with underlying lung disease and depressed immune systems are most susceptible. There is no official standard of care for MABSC infections and current treatment regimens lack efficacy and are met by challenges of intrinsic and acquired resistance mechanisms. Studies evaluating pulmonary disease outcomes report unsatisfactory treatment success rates of approximately 45%. Thus, there is an urgent clinical need for novel antibacterial agents and drug combinations to efficiently and effectively cure MABSC infections. Repurposing FDA-approved drugs can help us economically discover new treatment options with a shorter drug development time, which is critical for antibiotics as the emergence of resistance often outpaces drug development. We approached the repurposing of approved drugs to treat MABSC infections through the whole-cell screening of a drug library of about 2400 FDA-approved compounds and clinical molecules, followed by the selection and characterization of the activity of the most promising hits. Our data revealed a novel antiemetic compound, netupitant, that exhibited a potent anti-MABSC activity (MIC 4-16 µg/ml) and was able to interact synergistically with standard first-line MABSC therapeutics. Netupitant has a good safety profile and accumulates preferentially in lung tissues, making it suitable for treating pulmonary MABSC infections. Additionally, our screen revealed two promising antibiotic drug combinations: eravacycline/clarithromycin and bedaquiline/amikacin that were able to exhibit potent synergistic interactions against clinical MABSC isolates, as determined by checkerboard microdilution assays. Further mechanistic and in vivo studies are needed to evaluate these hits as potential treatment options to improve the current clinical outcomes for MABSC patients.
- Presenter
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- Nathan Uhry Mitchell, Senior, Anthropology: Archaeological Sciences
- Mentor
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- Ben Marwick, Anthropology
- Session
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Poster Session 2
- Balcony
- Easel #58
- 1:00 PM to 2:30 PM
Patterns in three dimensional artefact orientation can provide insights into the environmental and cultural processes that form archaeological deposits. A range of post-depositional processes can be inferred from non-random patterns of artefact orientations. We apply statistical and graphical techniques to artefact orientation data from Madjedbebe, a site in northern Australia with evidence of human activity at 65 thousand years ago. The three-dimensional positions of artefacts were recorded in situ using a total station (survey equipment), and analysed following McPherron’s (2018) methods. Through this I investigate how accurate the site's dates are through analyzing deposition processes and site formation processes. I compare the orientations of the archaeological artefacts to orientations of experimentally trampled artefacts, and to orientations from simulated slopes and terrains. I found that the archaeological orientations are significantly different from the trampled artefacts, which have a strongly linear orientation. The orientations of archaeological artefacts are most similar to simulated orientations from sloped and irregular surfaces. The upper phases at Madjedbebe present more isotropic orientations than the lowest phases, which are strongly planar. These patterns suggest minimal post-depositional disturbance in the deposits containing the earliest artefacts at Madjedbebe, which provides support for a stable stratigraphy, which provides added confidence for the association of stone artefacts and the dates of 65 kya. This methodology can be used to reinforce conclusions about site dates in other sites with questionable stratigraphy.
- Presenter
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- Will Marek, Senior, Biochemistry
- Mentors
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- Daniel Promislow, Biology, Pathology, University of Washington School of Medicine
- Ben Harrison, Pathology
- Session
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Poster Session 2
- Commons West
- Easel #20
- 1:00 PM to 2:30 PM
Throughout our lives, we generally base our idea of age upon someone’s ‘chronological age’, or how many years they’ve been alive. This, however, is not always the best indicator of aging, as people reach social and biological milestones at different ages. As an alternative, someone’s ‘biological age’ can be more representative of their progression through life. As such, research has focused on identifying biomarkers of biological age to help us better understand aging. Recent work in our lab has sought to determine the impact of several metabolites - biomolecules used for metabolism - on the biological age of the fruit fly, Drosophila melanogaster. Among the metabolites studied, histamine - a neurotransmitter involved in wakefulness and visual processing - had one of the strongest correlations with lifespan, suggesting that it plays a role in aging. In this study, we attempted to manipulate the biological age of female D. melanogaster by altering either their metabolic levels of histamine, or their perception of histamine. To do this, flies were given food supplemented with histamine or with the antihistamine hydroxyzine, a competitive inhibitor of histamine receptors. These experimental conditions were compared to control food that lacked additives. Treatment was administered continuously starting at 4 weeks and the lifespans of flies in each condition were measured. Based on our previous results, we expected to see a negative effect of added histamine on lifespan and an increase in lifespan in response to antihistamine. Our study could highlight histamine’s role in aging and lay the foundation for demonstrating that biological age can be influenced by a single metabolite.
- Presenter
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- Naomi Moresi, Senior, Psychology
- Mentors
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- Renee Geck, Genome Sciences
- Maitreya Dunham, Genome Sciences
- Session
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Poster Session 2
- Commons East
- Easel #23
- 1:00 PM to 2:30 PM
Target of rapamycin (TOR) signaling is a nutrient-sensitive pathway that plays a role in cell growth and aging. Caffeine is a factor that inhibits TOR signaling and growth, compromising overall cellular fitness. The budding yeast S. cerevisiae is an ideal organism to study TOR signaling in relation to caffeine tolerance as there are many resources available to study yeast genetics, and yeast shares many basic biological properties with other eukaryotic cells. Additionally, yeast allows us to study TOR signaling using experimental evolution, where under a defined selective pressure - here, caffeine - we observe what rare beneficial mutations arise and increase in frequency. While many inputs to the TOR signaling pathway are known, others are yet to be identified. Furthermore, how other pathways compensate for TOR signaling inhibition is not completely understood. Our goal is to identify factors involved in TOR signaling by growing yeast in inhibitory concentrations of caffeine to select for better growing mutants with increased resistance. We will then sequence the resistant strains’ genomes and study the resultant mutations to determine how they connect to TOR signaling and caffeine tolerance. We evolved yeast for 5-10 weeks in increased doses of caffeine, and sequenced clones from the evolved populations. Our yeast evolved increased caffeine tolerance, and mutations arose in drug-response pathways including in the Pdr1 transcription factor. We also observed mutations in processes regulated by TOR, such as nutrient sensing. With further genome sequencing of more evolved populations we aim to identify novel mutations and factors involved in caffeine tolerance and TOR signaling. Ultimately, these findings increase our understanding of how caffeine impacts TOR signaling and how other cellular processes are regulated by TOR signaling. More broadly, this research can aid in the continued development of how cell signaling pathways are related to nutrient response, aging, and growth.
- Presenter
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- Zoe Lu (Zoe) Chau, Senior, Bioengineering Innovations in Pain Research Scholar, Washington Research Foundation Fellow
- Mentor
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- Kushang Patel, Anesthesiology & Pain Medicine
- Session
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Poster Session 2
- MGH 241
- Easel #82
- 1:00 PM to 2:30 PM
Chronic pain -- pain that continues beyond expected healing time that may or may not be linked with tissue damage -- is a common condition among older (≥65 years) adults, often caused by osteoarthritis (OA) in weight-bearing joints, such as the knee. Older adults with knee OA often experience movement-evoked pain that is associated with reduced mobility, activity avoidance, and social relationship disruption. Knee OA is also associated with increased falls risk, which is a leading cause of injury and mortality among older adults. However, the role of movement-evoked pain in knee OA and falls risk is unclear. It is conceivable that movement-evoked pain contributes to falls risk via impaired neuromuscular function and knee buckling. Thus, better understanding movement-evoked pain might help identify rehabilitation targets to reduce falls risk. While literature demonstrates differences between movement-evoked pain and pain-at-rest, current assessments cannot accurately discern which surveyed pain levels are movement-evoked. Example methodologies that correlate activity and pain levels include pain diaries, accelerometers, or ecological momentary assessment (EMA) surveys. Such methodologies are often dependent on a participant’s ability to recall and differentiate pain experienced in relation to movement, and do not directly assess what movements evoke specific pain levels. The proposed pilot project: (1) develops a protocol for novel trigger-based smartphone EMAs using the Move 4 accelerometer, (2) evaluates the protocol’s feasibility when implemented in older adults with knee OA, and (3) analyzes relationships between movement-evoked pain, knee buckling, and falls. We anticipate that EMA collection will be acceptable for most participants, but are concerned about the accelerometer. The non-invasive Move 4 is capable of triggering EMAs when specific movement thresholds are achieved in real time. Thus, the proposed project addresses a major shortcoming in the field that currently relies on participant recall and does not capture pain levels immediately following specific movement patterns.
- Presenter
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- Alia Johnson, Senior, Biology (Molecular, Cellular & Developmental) Levinson Emerging Scholar
- Mentors
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- Daniel Promislow, Biology, Pathology, University of Washington School of Medicine
- Ben Harrison, Laboratory Medicine
- Session
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Poster Session 2
- Commons West
- Easel #22
- 1:00 PM to 2:30 PM
The mechanistic target of rapamycin (mTOR) is a protein kinase that is closely linked to growth and nutrient control in a multitude of organisms. Inhibiting TOR with the drug rapamycin has been shown to increase lifespan in many species. In the fruit fly, Drosophila melanogaster, rapamycin slows development, an outcome that is perhaps closely related to its effect on lifespan. Recent work in the Promislow lab on larval development has shown that the effect of rapamycin varies greatly across different genotypes, from no impact in the time of development to a nearly doubling of development time. However, it has not yet been determined which of the three larval stages is most sensitive to rapamycin. My project attempts to answer this question. I tested the delay in larval development of larvae treated with rapamycin across six different fly genotypes, four that are known to be sensitive to rapamycin treatment, and two that are resistant. After transferring eggs to food containing rapamycin or control food, I collected larvae over three days and staged them based on specific characteristics of each stage. The data were compared between treatments and genotypes to see if there was a delay in specific larval stage development that resulted in the overall delay seen in previous experiments. These data were analyzed using R, and the results indicate that there is a significant delay in development of the first instar larvae of the sensitive strains, and no delay in the resistant strains. Based on these results, I will next use single cell sequencing of first instar larvae raised on rapamycin-treated or normal food, with the goal of better understanding the specific mechanisms by which rapamycin leads to a decrease in larval development time, and the genetic basis of variation in the response to this treatment.
- Presenter
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- Nathan Forest (Nathan) Greenwood, Junior, Pre-Sciences
- Mentors
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- Adam Steinbrenner, Biology
- Antonio Chaparro, Biology
- Session
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Poster Session 2
- Commons West
- Easel #12
- 1:00 PM to 2:30 PM
Herbivory is a concern for agriculture because it results in loss of crops. Plants have innate immune systems that allow them to defend against pests that once better understood, can be utilized to help mitigate this loss. In Steinbrenner et al.’s 2020 work, the authors identified an herbivore-specific immune receptor termed INR in Vigna unguiculata (cowpea) which induces plant defenses upon perception of the protein inceptin, found in the oral secretions of caterpillars. To further investigate the herbivory defense signaling pathway, we acquired EMS (ethyl methanesulfonate) mutagenized seeds, which contain mutations called single nucleotide polymorphisms (SNPs). These F1 parent seeds were allowed to self-propagate, producing M2 seeds. We did this because the F1 seeds likely have a SNP in only one allele of their chromosome, thus being heterozygous at a particular loci where the SNP occurred. When the F1 seeds self-propagate, we expect to get a ratio of 1:2:1 of homozygous for the wildtype allele (HH), heterozygous (H*H) and homozygous for the mutated allele (H*H*). This would give us a more varied phenotypic response when screened for sensitivity to inceptin. Individuals that exhibited a compromised inceptin response will be further investigated to determine causative mutations. We identified a number of families with abnormal immune responses, rescreened those families and verified specific families. Next we will self-propagate individuals from verified families, and expect phenotypes to segregate in a 3:1 ratio if a single dominant mutation is causative. Then bulked segregant resequencing will be used to determine which mutations are co-associated with phenotype. After knowing the genotype, we can begin to determine the molecular mechanisms behind the phenotype. This would further our understanding of plant immune responses, which we can harness to better develop more resilient crops, thus mitigating crop loss due to herbivory.
- Presenter
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- Ashley Thapa, Senior, Public Health-Global Health
- Mentor
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- Nicolette Zhou, Environmental & Occupational Health Sciences
- Session
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Poster Session 2
- Commons West
- Easel #10
- 1:00 PM to 2:30 PM
The gut microbiota, or the microorganisms that live in the gastrointestinal tract (GI), play a significant role in both gut and overall health. In LMICs (Low-Middle Income Countries), diarrheal diseases are among the leading causes of death in children under five. The ongoing EcoMiD (Enteropatógenos, Crecimiento, Microbioma, y Diarrea) project aims to study the interaction between infants' gut microbiomes and viral, bacterial, and parasitic enteric pathogens along a rural-urban gradient in Ecuador through a cohort study of 600 mother-child dyads. The objective of this portion of the study was to validate a method for assaying multiple enteric pathogens in stool samples simultaneously using TaqMan Array Cards (TAC). Before samples can be analyzed using TAC, each of the 56 pathogenic targets of interest must be validated to determine the limit of detection, limit of quantification, inhibition effect of the stool matrix on detection, repeatability and reproducibility. The TAC Positive Control validation process initially involves growing up each of the organisms of interest, extracting its' total nucleic acids (TNA) and quantifying this through (RT)-qPCR and Qubit. Analysis of this data enables seeding the positive controls at known concentrations to quantify target TNA for TAC. Of the 56 targets, we have completed this work with 35 targets (26 reference organisms, 9 gBlocks). For targets that are time/cost intensive to work with or not culturable, gBlocks are utilized in place of reference organisms. gBlocks are synthetic gene fragments with a known sequence. Next steps of this process includes validation of the 21 remaining pathogens, some of which involves working with anaerobic organisms. Analysis of this data will inform seeding concentrations to validate the developed TAC and enable quantification of these targets in stool samples from Ecuador.
- Presenter
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- Anika Rajput, Junior, Biochemistry
- Mentor
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- Alison Paquette, Pediatrics, Seattle Children's Research Institute
- Session
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Poster Session 2
- MGH 241
- Easel #79
- 1:00 PM to 2:30 PM
For 9 months, a human fetus is fully dependent on the placenta which provides oxygen and nutrients, regulates waste transport, and acts as an immunological barrier. These 9 months are critical as the placenta has been linked to various health outcomes later in life. Glial Cells Missing Transcription Factor 1 (GCM1) is a transcription factor (TF) that plays a crucial role in placental development. We hypothesize that reducing the expression of GCM1 will affect placenta-specific genes such as the placenta growth factor gene (PlGF), and pathways that control embryonic development such as the sonic hedgehog. Studying how GCM1 alters gene expression in the placenta will reveal specific biological pathways that are affected by GCM1. Primary villous trophoblast cells were collected from 4 male and 5 female placentas following routine c-sections and a siRNA knockdown was conducted to decrease GCM1 expression. High-quality RNA has been isolated and sequenced from these samples. I am using the RNA sequencing data to compare gene expression between two groups: normal placental cells and cells where GCM1 has been knocked down. Using standardized differential gene expression approaches in R, I have identified genes with statistically significant differences between the two groups. Preliminary results indicate that 15 genes are decreased and 2 are increased. A sex-stratified analysis has been performed to determine if fetal sex plays a role in the different placental expression levels between the two conditions. I also performed a pathway enrichment analysis to determine if certain biological pathways are enriched for genes whose expression was associated with a reduction in GCM1. These results will help us better understand the molecular changes that occur due to a reduction of GCM1 and potentially how that contributes to maternal health conditions such as preeclampsia which harms both the mother and fetus.
- Presenter
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- Rose Schoenfeld, Senior, Atmospheric Sciences: Meteorology, Atmospheric Sciences: Climate Mary Gates Scholar
- Mentor
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- Abigail Swann, Atmospheric Sciences, Biology
- Session
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Poster Session 2
- Commons East
- Easel #39
- 1:00 PM to 2:30 PM
Over the past decade, we have seen major forest loss due to events like deforestation and tree die off. Previous studies have examined ways in which the distribution of plant types and how they function impact local and global climate. Local climate can be impacted because plants alter fluxes of water, energy, and momentum between the land surface and the atmosphere. Global climate can be impacted because local changes influence atmospheric response in clouds, humidity, and gradients in energy which drive changes in circulation. This project aims to identify if observed forest loss has a measurable effect on the noisy climate system. We have compiled spatial data of actual forest loss derived from satellite observations and test the climate impact of forest loss in simulation experiments using an Earth system model. We will assess differences between simulations with and without forest loss to identify how forest loss impacted the atmosphere and surface climate over land. We use the identified impacts as hypotheses for the expected climate response to forest loss and will subsequently analyze if these patterns can be seen in observed environmental conditions following forest loss. We expect to see some effect in the climate due to the observed forest loss. This project serves to advance our understanding of the effect of forest loss on global climate, atmospheric circulation, and energy balance, and thus will help to coordinate efforts to mitigate climate change by identifying potential unwanted impacts of forest change due to human actions.
- Presenter
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- Stephanie Neys, Senior, Biology (Molecular, Cellular & Developmental) Mary Gates Scholar
- Mentors
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- Kristina Kooiker, Cardiology
- Farid Moussavi-Harami, Medicine
- Session
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Poster Session 2
- MGH 241
- Easel #68
- 1:00 PM to 2:30 PM
Dilated cardiomyopathy (DCM) is one of the most common causes of heart failure and is often associated with mutations in sarcomeric proteins. The sarcomere is the basic contractile unit of the heart and depends on Ca2+ for force generation. Two sarcomeric protein mutations, D230N in tropomyosin and I61Q in cardiac troponin C, have been shown to decrease force production and Ca2+ sensitivity of the sarcomere, leading to DCM. We are investigating if the small molecule, Danicamtiv, is effective at improving Ca2+ sensitivity in D230N and I61Q mouse models. Danicamtiv binds to myosin and has been previously shown to enhance force production capacity in cardiac muscles. Using demembranated D230N and I61Q tissue positioned between a force transducer and length controlling motor, we move the tissue between different solutions of varying Ca2+ concentrations in the presence and absence of Danicamtiv. We experimentally determine Ca2+ sensitivity for each solution by calculating the calcium concentration (pCa = -log[Ca2+]) required for half maximal force (pCa50). Additionally, we measure the rate at which the tissue is able to redevelop force (ktr). By exposing each tissue preparation to physiological solutions both with and without Danicamtiv, we can determine how maximal force, pCa50, and ktr are affected. Preliminary results suggest that Danicamtiv increases pCa50 in both D230N and I61Q tissues, and also decreases ktr by about half. Data gathered in this project will contribute to our understanding of the mechanism by which Danicamtiv improves cardiac function. In the future, these data will also help build and strengthen computer models of the sarcomere that can predict the effects of different mutations or small molecules on force production and contractile kinetics.
- Presenter
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- Evonne Aguirre, Senior, Biology (Plant) McNair Scholar
- Mentors
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- Caroline Strömberg, Biology, Burke Museum
- Alex Lowe, Biology, Department of Biology and the Burke Museum
- Session
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Poster Session 2
- Balcony
- Easel #45
- 1:00 PM to 2:30 PM
In this study I investigate potential changes in plant community ecology in response to Earth’s most recent major global warming event, the Miocene Climatic Optimum (MCO). During the MCO (from 17-14 million years ago) global temperatures increased by approximately 8° C and CO2 levels increased by 300-400ppm. In assessing these ecological changes, I use minor leaf vein density (mLVD), a leaf functional trait correlated with photosynthetic rate, as a proxy for understanding plant community strategies. This trait corresponds with the spectrum of “fast” versus “slow” growing strategies described in plant physiology, with high mLVD in fast-growing plants facilitating higher photosynthetic rates, and low mLVD reflecting slow-growing persistence strategies with lower rates of photosynthesis. I hypothesize that global warming led to long growing seasons that enabled the dominance of ecological strategies that prioritize persistence over productivity (i.e., slow growing strategies), and more favorable climates increased the diversity of ecological strategies present within the community. Currently, I am measuring fossil leaf mLVD from specimens collected in the Pacific Northwest from sites representing before, during and after MCO. I examine the community-level distribution of this trait (mean, variance, kurtosis) and compare these values between sites, and thus across the MCO. I predict that plant community ecological diversity would increase during this global warming event; I also expect to see higher variance in distribution of mLVD values as warming temperatures opened new ecological niches, while mean mLVD would decrease due to an increase in persistence strategies correspondent with low mLVD. This work will help us not only to understand how plant communities responded to rising temperatures in the past but also how plant communities could potentially respond to changing climates in the future.
- Presenters
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- Ahram Lee, Senior, Biology (Physiology)
- Erin Hong, Sophomore, Pre-Major (Arts & Sciences)
- Mentors
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- Julia Cui, Environmental & Occupational Health Sciences
- Youjun Suh, Environmental & Occupational Health Sciences
- Session
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Poster Session 2
- Commons East
- Easel #34
- 1:00 PM to 2:30 PM
Perfluorinated carboxylic acids (PFCAs) such as perfluorooctanic acid (PFOA), perfluoronanoic acid (PFNA), and perfluorodecanoic acid (PFDA) are worldwide environmental pollutants that are used in many consumer products due to their thermal and chemical stability. They are commonly found in products that resist sticking, water, stains, and grease (e.g. stain-resistant carpet, fire-proof products, paper, and cardboard packaging). The goal of the study was to determine how these PFCA compounds regulate the hepatic transcriptome and especially transporters that are involved in the absorption, disposition, and excretion of drugs, environmental toxicants, and endogenous nutrients. Fully differentiated human liver-cancer-derived HepaRG cells were incubated with 45 μM in the following PFCAs: PFOA (perfluorooctanoic acid), PFNA (perfluorononanoic acid), and PFDA (perfluorodecanoic acid) for 24 hours. The advantage of using HepaRG cells as compared to other common immortalized human hepatocyte cell lines is that HepaRG cells retain more characteristics of human livers and express most drug-metabolizing enzymes, thus serving as an excellent tool to recapitulate toxicological responses in vivo where the research is done within the organism. Total RNA was isolated from vehicle and PFCA-treated HepaRG cells (n=3 per group) and was subjected to RNA sequencing. Pathway analysis showed that PFCAs with increasing carbon chain lengths up-regulated the mRNAs of many amino acid transporters, which are essential for protein synthesis. PFCA compounds with longer carbon chain lengths also down-regulated several uptake transporters for xenobiotics and bile acids, but up-regulated several efflux transporters - likely as a compensatory mechanism to limit further toxic exposures and pump out toxic substances, respectively. Overall, our study is significant because the regulatory responses may function as biomarkers of PFCA exposures in the liver even at low doses; this can help prevent liver injury such as inflammation and possibly liver cancer.
- Presenters
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- Emma Bingham, Senior, Anthropology, Biology (Molecular, Cellular & Developmental)
- Navneet Birk, Senior, Anthropology: Medical Anth & Global Hlth
- Mentors
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- Diwaker Tripathi, Biology
- Arnold Bendich, Biology
- Session
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Poster Session 2
- Commons West
- Easel #14
- 1:00 PM to 2:30 PM
Organisms are required to maintain genome stability for the correct propagation of genetic information. Glycation damage is one of the most important types of DNA damage that cause genome instability. Glycation damage in organisms is caused by the covalent attachment of parts of sugar molecules to proteins and DNA. Accumulation of the Advanced Glycation End (AGE) products may cause Parkinson's disease, cancer, and other oxidative stress-induced diseases. The protein deglycase, known as DJ-1 in plants and Parkinson Disease Protein 7 (PARK7) in animals, can prevent glycation damages in many organisms. In maize, plastid genome stability is maintained by Whirly ssDNA-binding proteins. Our lab recently showed that the demise of plastids and their DNA is associated with increased DNA damage due to oxidative and glycation damages during maize seedling development. Here, our objective is to understand the role of Whirly proteins in glycation damage. Our approach involves quantifying the glycation and deglycation levels in maize plastids. We isolated plastids and their proteins from the wild-type (wt) and whirly (why) mutant maize seedlings and performed glycation and deglycation assays. We find a significant difference in deglycation levels between wt and why mutant plants. Our study should provide a better understanding of the role of ssDNA binding proteins in glycation damage.
- Presenters
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- Rhonda Hasan Osman, Senior, Biology (Physiology)
- Garvit Mittal, Senior, Biochemistry
- Mentors
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- Colleen Craig, Chemistry
- Jacob Finney, Chemistry, Tacoma Community College
- Session
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Poster Session 2
- Commons West
- Easel #1
- 1:00 PM to 2:30 PM
Test questions are commonly written with the intent to assess a student's higher level thinking skills, but the phrasing of a question may not align with this intention. One way to remedy this is to assess the cognitive complexity of existing test questions, and use these findings to reform instructional materials and subsequent examinations. We used Marzano’s Taxonomy to characterize a bank of multiple-choice exam questions from general chemistry by the level of cognitive complexity required of students' thinking. Marzano’s Taxonomy has been applied to introductory physics questions to characterize quantitative thinking and problem-solving skills (Teodorescu et al., 2013), and to general chemistry curricula to guide course and assessment development (Toledo & Dubas, 2016). Here we will describe our implementation of Marzano's Taxonomy in the context of large-lecture general chemistry, and our development of a rubric that chemistry instructors can utilize to evaluate their own exam questions. The development team included an undergraduate biology major and former general chemistry peer mentor; a chemistry graduate student and experienced general chemistry teaching assistant; and a chemistry faculty member. When applied to multiple choice questions, we found that the cognitive level of most questions was lower than expected, even for lengthy questions that are normally considered challenging by students and instructors alike. We will discuss ways to increase the cognitive complexity of problems to allow instructors to elicit the intended level of thinking from the student, and to align the cognitive levels of assessment and instruction. This can also improve the clarity of expectations of the cognitive complexity that is required of the student and promote higher-order thinking.
- Presenter
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- Alli Miller, Senior, Oceanography
- Mentor
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- Kathleen Newell, Oceanography
- Session
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Poster Session 2
- Commons East
- Easel #29
- 1:00 PM to 2:30 PM
Plastic pollution is a growing concern in the microecology of the oceans. Studying bacteria colonization rates on plastic provides one way of understanding of how toxic debris can move through the food chain through ingestion. This process of toxins moving through the food chain is called biomagnification and can eventually reach humans. To evaluate bacterial colonization rates, I collected seawater in the coastal waters of Hawaii and near the Pacific garbage patch (GPGP). Seawater was intermixed with 5 different kinds of clean plastics then timed to determine how long it took bacteria to colonize the plastic surfaces. Bacteria on the plastic were counted under an epifluorescence microscope then divided by the time of colonization to determine the rate. Alongside the colonization rate, surface microplastics were collected with a manta net; then sized and classified with a dissection microscope. Seawater was collected from a Niskin bottle attached to a CTD (Conductivity, Temperature, and Density sensors) rosette to calculate bacterial abundance with the use of a Guava flow cytometer. The findings of the research displayed little to no correlation between surface bacterial abundance and plastic density, with an R2 value of 0.1072. Bacteria were found to colonize plastics at 48 and 96 hours in the waters near the Pacific garbage patch with a rate of 7.4E+04 cells/mm. The colonization rates and plastic abundance support evidence of plastics being integrated into the ocean ecology.
- Presenter
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- Kurtis Alvarado, Senior, Biochemistry, Philosophy
- Mentors
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- Murat Maga, Pediatrics, Seattle Children's Research Institute
- Kelly Diamond, Seattle Children's Research Institute
- Session
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Poster Session 2
- MGH 241
- Easel #78
- 1:00 PM to 2:30 PM
Genome Wide Association Studies enable researchers to identify which genes are associated with human diseases. Once genes are identified, gene editing of zebrafish models allows researchers to further examine the link between genotype and phenotype, with the long-term goal of treatment development. One such gene is MEOX1, which encodes for transcription factor Mesenchyme Homeobox 1. MEOX1 mutations in humans have been associated with Klippel-Feil syndrome, a congenital disorder with the most frequent symptoms being a shortened neck caused by the fusion of cervical vertebrae, leading to a decreased range of motion. Previous studies have established that zebrafish with loss-of-function meox1 mutations present with similar phenotypes in the axial skeleton. However, fusion of the vertebral column could also impact other aspects of fish morphology. The goal of this study is to test if a semi-automated screening tool can be used to quantify craniofacial variations in meox1 crispant zebrafish. Here, I utilized micro-CT scans of CRISPR-modified zebrafish with meox1 mutations (n=12) and compared them to wild type zebrafish (N=12) from the same clutch. I used 3D Slicer to manually landmark 23 major anatomical points on each individual wildtype and crispant zebrafish. I then used a semi-automated process to distribute pseudolandmarks on the surface of each zebrafish. Anatomical differences between the groups were quantified using a geometric morphometrics approach. Preliminary results show that meox1 mutations are associated with a wider posterior section of the skull and a shorter skull length. There were also differences found in the degree of asymmetry between groups. This last result in particular aligns with previous human studies of Klippel-Feil syndrome. The findings from this investigation are important for the understanding of how diseases from meox1 mutations present clinically as well as the testing of a semiautomated pipeline that will be used as a screening tool for crispant zebrafish.
- Presenter
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- Amanda (Mandy) Jackson, Senior, Earth and Space Sciences: Geology UW Honors Program
- Mentor
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- Owen Callahan, Earth & Space Sciences
- Session
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Poster Session 2
- Commons East
- Easel #41
- 1:00 PM to 2:30 PM
Hot and cold spring travertine (calcite mineral) deposits record integrated histories of climate and tectonism. Describing the evolution of these features informs our understanding of the driving forces behind major changes in local hydrology. Dixie Valley, Nevada, hosts abundant active hot springs, fossil spring deposits, once extensive lakes, and records of large earthquakes. We present results from a geologic and geochemical investigation of Cottonwood Travertine, a large, enigmatic, mid-Pleistocene (<200 ka) deposit recording some of the oldest spring activity in the region. Of particular interest is the temperature of spring water that precipitated the Cottonwood Travertine; determining whether the spring was hot or cold has implications for the relative effect of hydrothermal versus climatic processes influencing the formation and cessation of this massive deposit. Cottonwood Travertine covers 24 acres of a steep canyon wall 1.5-2 km upcanyon from range front faults, the modern hydrothermal field, and the shores of ancestral Lake Dixie. Several generations of calcite-filled veins and faults are exposed at the base. Three samples from distinct fracture or vein systems were analyzed: centimeter wide subvertical veins with fibrous calcite in altered rocks below the travertine, low angle veins with banded calcite below thick travertine sheets, and a subvertical, decimeters-wide fault vein. Average isotopic values of ð18Ocalcite(VPDB) are -29.42‰, -14.45‰, and -14.88‰. Assuming ð18Owater(VSMOW) values of spring fluids similar to values measured in modern surface and spring water, the higher ð18Ocalcite values suggest deposition between 10-12oC. Analysis of fibrous, sub-travertine veins suggests deposition at 99oC; these veins are likely older and unrelated to the deposit. Ongoing work will provide independent constrains on Cottonwood Travertine temperature and fluid composition with clumped isotope thermometry. Now extinct, this massive cold spring deposit suggests changes in local hydrology were driven by climate change rather than migration of the modern high temperature hydrothermal system.
- Presenter
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- Emily Yahui (Emily) Chen, Senior, Biology (General) Mary Gates Scholar
- Mentors
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- Daniel Promislow, Biology, Pathology, University of Washington School of Medicine
- Su-Yee Lee, Physiology & Biophysics
- Session
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Poster Session 2
- Commons West
- Easel #21
- 1:00 PM to 2:30 PM
In humans, gait changes with age; changes that have been associated with the onset of disease. We also see age-related changes in the fruit fly, Drosophila melanogaster, which shows a decrease in the ability to climb vertically. However, the effects of age on walking patterns of flies on a flat surface, which more closely mimics human walking, have not been fully characterized. In my research, I use D. melanogaster as a model to investigate such effects. During the past year, I followed cohorts of D. melanogaster over their lifespans and recorded videos of them walking in an enclosed arena. A wide-field camera captured the entire arena while a higher resolution camera captured the leg movements of individual flies. I analyzed the trajectories of each fly from the wide-field videos to evaluate walking velocity and duration. Based on my preliminary analysis, I have discovered that flies walk less frequently and at slower average speeds with increasing age. As a next step, I am analyzing the high resolution videos to investigate the possibility that changes in gait might explain the slower walking velocities at older age. To do this, I trained a neural network using multi-pose animal estimation software to track the movement of individual legs in relation to the fly’s thorax. This will allow me to look at gait (step length, swing duration, stance duration) as well as coordination. I expect to see age-related changes in gait and a loss of limb coordination over fly lifespan, which might explain why flies walk slower with increasing age. With the findings from my study, I hope to establish a foundation for how gait changes with age in D. melanogaster.
- Presenter
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- Ej Brannan, Senior, Chemistry (ACS Certified)
- Mentors
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- Dianne Xiao, Chemistry
- Ashlyn Kamin, Chemistry
- Session
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Poster Session 2
- MGH 241
- Easel #65
- 1:00 PM to 2:30 PM
Metal–organic frameworks (MOFs) are crystalline, porous extended solids that are formed through coordination between metal cations and bridging organic ligands. Since their discovery in the late 1990s, MOFs have been a topic of acute interest in the scientific community due to their intrinsic porosity, high surface area, and precise tunability. However, MOFs are typically insulating, which limits the scope of their applications. The recent development of electrically conductive MOFs has opened the door to exciting multifunctional applications in electrocatalysis, advanced electrochemical energy storage, chemical sensing, and much more. However, a molecular-level understanding of charge transport in MOFs remains lacking. My research aims to address this knowledge gap through the investigation of one-dimensional (1D) metal organic chains. These 1D chains can be thought of as the primary subunit of higher-dimensional MOFs; they allow for high synthetic and electronic tunability, making them ideal model materials for studying the genesis and tuning of electronic properties in conductive MOFs. Here, I will present the synthesis of a series of highly-tunable 1D metal–organic chains that exhibit delocalized π systems and high electrical conductivity along with our studies of how structural parameters such as metal identity, chain structure (linear vs. zig-zag), and metal/ligand oxidation state can influence the overall electrical and magnetic properties of the resulting chain.
- Presenter
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- Elizabeth Maya Fong Karas, Senior, Biochemistry
- Mentor
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- Jesse Zalatan, Chemistry
- Session
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Poster Session 2
- MGH 241
- Easel #66
- 1:00 PM to 2:30 PM
The Wnt signaling pathway plays a critical role in mammalian cell development and regulates cell growth and differentiation. Two central proteins in this pathway are glycogen synthase kinase 3β (GSK3β) and β-catenin. Another protein, Axin, is responsible for holding these two proteins in close proximity in order to promote the reaction between them. The kinetic mechanism for the Axin-mediated reaction is well understood, but the relationship between this function and Axin’s structure is poorly characterized. I am currently generating a cryogenic electron microscopy (Cryo-EM) structure of Axin bound to GSK3β and β-catenin in order to investigate this mechanism. Cryo-EM is a technique for determining the structures of proteins that is especially suitable for large protein complexes, such as the one I have produced. Inital results indicate that the stoichiometry of the complex is much more complicated than initially assumed and does not follow the predicted 1:1:1 complex. Elucidating this structure will provide insight into how the structure of Axin promotes the reaction between GSK3β and β-catenin as well as how it provides Wnt signaling specificity. This structure will also be important for understanding and intervening in diseases such as cancer where Wnt signaling is dysregulated.
- Presenter
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- Caroline Read Rawls, Senior, Biology (General) Mary Gates Scholar
- Mentor
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- Daniel Promislow, Biology, Pathology, University of Washington School of Medicine
- Session
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Poster Session 2
- Commons East
- Easel #27
- 1:00 PM to 2:30 PM
The human brain is highly sophisticated and its functions are influenced by a multitude of factors, many of which play a role in the complex aging process. Certain individuals appear to possess more resilience to environmental and biological stressors as they age compared to others. However, why they are more resilient is not understood. Resilience refers to an individual's capacity to respond to stress (physically, psychologically, emotionally) by resisting damage and bouncing back. In my research in the Promislow lab, I use the fruit fly, Drosophila melanogaster, to explore the intricate process of aging. In this experiment, I applied a biological stressor on the flies halfway through their lives and examined mortality and motor function as measures of health to study resilience throughout the fly’s lifespan. I stressed the flies with a sublethal dose of paraquat, a neurotoxin that causes oxidative stress and mitochondrial dysfunction upon acute exposure. If the stressed flies return to the mortality and motor function levels of the control flies, this tells us the flies are resilient. I hypothesize that all of the flies that receive the paraquat dosage will experience an increase in mortality and a decrease in motor function when compared to the control flies. While I think the majority of the flies will fail to recover from these stressed levels, I hypothesize a small number of flies will return to the mortality and motor function of the control flies, demonstrating resilience. In my project, I aim to understand how flies can recover from biological stressors, and how their ability to recover changes throughout their lives. My long-term goal is to understand how exposure to biological stressors affects the aging process, and in particular, how and why resilience varies with age.
- Presenter
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- Shelby Elise Albrecht, Senior, Astronomy, Physics: Comprehensive Physics UW Honors Program
- Mentor
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- Benjamin Williams, Astronomy
- Session
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Poster Session 2
- Commons East
- Easel #37
- 1:00 PM to 2:30 PM
Massive binary star systems influence the formation and evolution of galaxies through production of energy and heavy elements. These systems can evolve into X-ray producing high mass binaries: a neutron star or black hole accreting material from a high-mass companion. While high-energy mass accretion makes these sources especially important, it makes them exceedingly difficult to model. One extremely useful characteristic for testing models of their formation and evolution is their temporal variability. By observing the properties of these sources over time, we can directly compare observed variability against predictions from models. M33, a large spiral galaxy just under three million light-years away from the Earth, is home to a collection of these X-ray binaries, last catalogued in 2015. With the goal of constraining the variability of the binaries, I have analyzed five separate epochs of Chandra imaging data taken after the production of this catalogue. I compiled a preliminary list of observed X-ray sources in the images and used positions of the previously cataloged sources to correct the astrometry, ensuring consistent alignment among observations. I then selected the most accurate position estimate for each source by-eye. Combining data from all aligned observations, I have now extracted a catalogue of reliable source detections, as well as source properties such as position and flux. With these values, I have assessed source validity and created lightcurves to study their variability characteristics. Through this work, I have found a total of 56 bright sources that meet my criteria for validity, of which 49 sources were previously identified in literature and 7 sources are new, appearing only in our observations. Looking at the characteristics of both new sources and previously observed sources, I will constrain source variability to determine how much the X-ray binaries of M33 changed in brightness over the course of the observations.
- Presenter
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- Sharlene Shirali, Senior, Neuroscience Goldwater Scholar, Washington Research Foundation Fellow
- Mentors
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- Jennifer Chao, Ophthalmology
- Rayne Lim, Ophthalmology, UW Medicine
- Session
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Poster Session 2
- MGH 241
- Easel #73
- 1:00 PM to 2:30 PM
Age-related macular degeneration (AMD) is the leading cause of vision loss for people aged 50 years and older. Variants in the complement factor H (CFH) gene are associated with an increased risk of developing AMD, making it one of the main drivers for disease progression. Rare mutations that affect the expression of CFH protein and its isoform - Factor H-like protein 1 (FHL-1), have been linked to early-onset macular drusen (EOMD), an inherited degenerative disease with similar clinical characteristics to AMD. Our lab recently found a novel CFH variant of two family members with EOMD. This single nucleotide polymorphism (SNP) in the conserved splice site of intron 3 resulted in a frameshift with premature stop codon and no translation, causing ~50%reduction in CFH/FHL-1 production. Since CFH/FHL-1 are cofactors for C3b cleavage in the alternative pathway of the complement system, this haploinsufficiency will likely affect complement regulation in retinal pigmented epithelial (RPE) cells, hence contributing to the development of AMD-like pathology. Using patient specific iPSC-derived RPE cells, this study aims to investigate the role of CFH/FHL-1 in maintaining complement homeostasis. I will examine the expression levels of several active complement components and multiple regulators of complement activation (RCA). ELISA and Western blots will be used to quantify protein expression, and protein localization was revealed through immunostaining. RPE cells will also be exposed to normal human serum and stained for the membrane attack complex (MAC) to assess the susceptibility of cells to complement-mediated damage. I will also examine reversal of phenotype in EOMD RPE supplemented with exogenous CFH or FHL-1, as well as in Crispr-corrected EOMD iPSC-RPE cells. Results from this study will provide insights into the role CFH/FHL-1 plays in regulating players of the complement pathway RPE cells and its contribution towards progression of AMD.
- Presenter
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- Isabelle Ami Osuna, Junior, Oceanography
- Mentor
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- Ben Marwick, Anthropology
- Session
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Poster Session 2
- Balcony
- Easel #60
- 1:00 PM to 2:30 PM
In Southeast Asia, it is common for there to be a lack of clear typological categories in stone artefact archeology, but this is typically informally observed rather than empirically demonstrated. In Northern Vietnam, Mau A, an open air site located near the Red River in Yen Bai Province, Northern Vietnam, stone artefact flakes were excavated and analyzed in order to answer these questions: What variation exists within the assemblage of flakes, and are there distinct typological groupings corresponding to different tool categories? 1058 stone artefacts were excavated from four square meters using hand tools. The artefacts were measured using calipers, and these measurements were converted into outlines that we analysed using geometric morphometry and Principal Components Analysis (PCA). The PCA plot we made revealed that there was a great amount of overlap between reduction categories with a lack of typological groupings distinct from one another, although there was high variation in the amount of dorsal scarring. Primary flakes (the flakes that have been worked upon the least) have the least variability in terms of shape, with tertiary flakes having the most variability. We also created additional boxplots which revealed a lack of shape and material variation as well as confirming the PCA's results that dorsal scarring impacts flake variation. Our results suggest that flake shape is sensitive to assemblage reduction intensity, and may give useful comparative insights when other attributes show little variation. These results are important for understanding stone artefact assemblages from Southeast Asia which often yield little variation when analysed with traditional approaches.
- Presenter
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- Nicolas Avendano, Junior, Chemistry
- Mentors
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- Elizabeth Litzler, Sociology
- Emily Knaphus-Soran, Sociology
- Daiki Hiramori, Sociology
- Session
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Poster Session 2
- Commons West
- Easel #9
- 1:00 PM to 2:30 PM
Universities hold expectations of students to possess forms of cultural and social capital in order to be successful in their educational careers. This may include knowledge of the financial aid process, an ability to build relationships with faculty, and an understanding of cultural norms of the middle-class. While research shows that underrepresented students may be less likely to possess this capital, institutional expectations regarding social/cultural capital, specifically among first-generation (FG) students, seems largely unexplored in educational research. The goal of our research is to identify the hidden things FG students are expected to learn in higher education, and how they are able to learn those things. We conducted focus groups of students enrolled in LSAMP (a program that supports underrepresented students in STEM) across 5 universities in the Pacific Northwest over Zoom. Our research focuses on how the hidden curriculum, through the lense of cultural norms and the Federal Application for Student Aid (FAFSA), serves as a barrier to self-identified first-generation students in STEM. Focus groups were conducted by LSAMP students across three universities affiliated with LSAMP and researchers at the University of Washington. Focus groups were recorded and transcribed through Zoom, and later coded and analyzed. Our analysis focuses on identifying common barriers among FG STEM students. In our focus groups, FG students spoke about how relationships with faculty and peers were hard to establish because of their FG background, or because of different/potentially intersecting identities, and also how the FAFSA served as a barrier to them. Our findings support the idea that knowledge of the hidden norms and processes may be expected of students by universities, and that FG students may not possess this knowledge. By developing a better understanding of the experiences of FG students with the hidden curriculum, we can better learn how to support these students.
- Presenter
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- Chloe Dahleen, Senior, Neuroscience Mary Gates Scholar
- Mentors
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- Brian Kraemer, Medicine
- Sarah Benbow, Medicine
- Session
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Poster Session 2
- MGH 241
- Easel #67
- 1:00 PM to 2:30 PM
Several age-related neurodegenerative diseases include abnormal protein deposition of tau, amyloid-β (Aβ), and TDP-43. The most common dementia, Alzheimer’s Disease (AD), is tauopathic, meaning it is mainly characterized by tau deposition. In neurons, tau normally functions to bind and stabilize microtubules (MTs), proteins made of tubulin dimers that provide neuronal structure and assist in molecular transport along axons. However, in AD, tau becomes hyperphosphorylated, resulting in disassociation from MTs and aggregation in the cell. Previous genetic screening identified several new mutations in genes encoding tubulin proteins that ameliorate the effects of tau toxicity in tauopathy models of Caenorhabditis elegans; however, the various genes confer suppression to varying levels. Given that tubulin genes are expressed differentially in neurons, I hypothesized that the level of gene expression may correlate with the level of tau toxicity suppression for a given gene. To test this, we constructed transgenic C. elegans strains overexpressing mutant tubulin at differing levels. I characterized age-matched worms for tau-induced motility defects and assessed tubulin transgene expression by qPCR, observing that higher levels of mutant tubulin gene expression correlated with higher levels of toxicity suppression. Additionally, since previous work showed that tubulin mutations could confer suppression in a tau-Aβ copathology model, I sought to elucidate whether this result is generalizable to a copathology model with tau and TDP-43. To test this, I generated strains of worms expressing human tau and TDP-43 as well as mutant tubulin, and assessed them for motility defects. I expect that suppression will be conferred in these animals, although not to the same extent as in a model without copathology. These experiments will help increase our understanding of the molecular mechanisms underlying mutant tubulin mediated tau suppression. Additionally, we will gain knowledge about the mechanisms behind tauopathic disease progression in models of pure tauopathy and copathology.
- Presenter
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- Devany Ann Shikiar, Senior, Psychology
- Mentors
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- David Perkel, Biology
- Kathryn Stanchak, Biology
- Kimberly Miller, Biological Sciences
- Session
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Poster Session 2
- Commons West
- Easel #15
- 1:00 PM to 2:30 PM
From their ability to perch perfectly on nearly any surface to their capability of balancing on any perch, birds are phenomenal animals. Avian anatomy includes mysterious features like the lumbosacral organ (LSO) within the spinal cord. Research surrounding the LSO has led to the discovery of a mysterious network of nerve fibers that seem to cross the midline of the spinal cord only in the LSO. The goal of my research was to identify the neuron cell bodies giving rise to these axons and to track their targets. To do so, I used immunohistochemistry (IHC) and tracing. A tracer was injected into the glycogen body, where the surrounding neurons took up the tracer and transported it both retrogradely, toward the cell body, and in the anterograde direction, toward the axon endings. Tracing revealed the structure of the circuit. IHC was subsequently used to test if proteins indicative of sensory nerves were present in the glycogen body, such as CGRP and substance P. These methods, thus far, have indicated the presence of CGRP and substance P in nerve fibers across the glycogen body. These findings suggest the mysterious nerve network in the LSO is a network of sensory neurons abundant in substance P and CGRP, also implicating the glycogen body as a facilitator for the passing of these nerve fibers.
- Presenter
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- Angela Elvira Munoz, Senior, Anthropology: Medical Anth & Global Hlth
- Mentors
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- Patricia Kramer, Anthropology
- Hannah Zaehringer, Anthropology
- Session
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Poster Session 2
- Balcony
- Easel #56
- 1:00 PM to 2:30 PM
A comparison of rates of osteoarthritis in the spine by occupation allows us to understand the impact of different jobs on spine health. This study will compare the rates of spinal osteoarthritis between non-manual labor workers (such as retail/service and information technology workers) and heavy-lifting occupations (such as agricultural, building, and manufacturing laborers). We will be evaluating the spines of decedent individuals with known occupation categories, available through the New Mexico Decedent Image Database, for spinal disk space narrowing and osteophytosis with a grading scheme of 0-3. For disk degeneration, 0 = normal disk spacing, 1 = mild disk space narrowing, 2 = moderate disk space narrowing, 3 = severe degeneration of the disk space. To assess osteophytosis, we will grade the anterior side of each vertebral body for the presence of osteophytes on the 0-3 scheme (0 = no osteophytes, 1 = mild osteophytosis, 2 = moderate osteophytosis, 3 = severe osteophytosis) with a score for each vertebral body and intervertebral space. We will calculate the prevalence of osteoarthritis and perform regression analyses between the occupation categories to determine the relationship between occupation and spinal osteoarthritis. As osteoarthritis is positively correlated with age, age categories will be established for the analyses. In addition, we anticipate that different trends in the development, location, and prevalence of osteoarthritis within the spinal column may exist between the occupation groups due to differences in biomechanical loading and areas of "wear and tear." We will perform regression analyses to determine if any such pattern is present in our sample. The results of this study will increase our understanding of the prevalence of osteoarthritis by occupation, aiding health care providers in developing preventative care and treatment plans for their patients and occupational health officials find effective ways to protect their employees.
- Presenters
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- Damielle Hieber, Senior, Biochemistry McNair Scholar
- Meg G. Takezawa, Senior, Biochemistry Washington Research Foundation Fellow
- Grant William Hassan, Senior, Biochemistry
- Mentors
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- Ashleigh Theberge, Chemistry
- Sanitta Thongpang, Chemistry
- Session
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Poster Session 2
- Balcony
- Easel #46
- 1:00 PM to 2:30 PM
Standard diagnostic tests for common bacterial infections such as strep throat are invasive and uncomfortable, especially for children. Difficulty performing these tests may delay or prevent diagnosis, which leads to more severe consequences, such as secondary conditions or organ damage. To address these barriers to care, we developed the CandyCollect, a novel saliva collection platform that is child-friendly, effective at pathogen collection, and suitable in at-home and clinical settings.The purpose of this study is to test the feasibility of our device’s bacteria capture for home use in healthy people. Staphylococcus aureus and Streptococcus mutans are common oral bacteria that are targeted in this study to assess our device’s ability to capture and detect bacteria. The findings in this study will inform our ability to use the CandyCollect for the bacterial pathogen responsible for strep throat, Streptococcus pyogenes, in future studies. We initally recruited 5 participants (>18 years) nationwide to test our CandyCollect device against oral swabs and spit tubes to compare the efficacy and user feedback of CandyCollect with traditional methods of saliva collection. The study is continuing with additional participants. qPCR analysis and fluorescent imaging were used to detect the target oral bacteria in collected samples. Responses from the user feedback survey indicated that the majority of the participants were satisfied with the design and were optimistic about implementing this device for children. Future applications include quantitative determination of bacteria concentration as well as targeting S. pyogenes. We aim to expand this human subjects study to recruit younger participants, especially children (> 3 years), which will help us achieve the ultimate goal of delivering a comfortable saliva collection platform to pediatric patients.
- Presenters
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- Jennifer Chen, Senior, Biochemistry
- Sheharbano Jafry, Senior, English, Biochemistry Mary Gates Scholar, UW Honors Program
- Mentor
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- Jennifer Doherty, Biology
- Session
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Poster Session 2
- Commons East
- Easel #28
- 1:00 PM to 2:30 PM
The COVID-19 pandemic caused many college courses to shift to emergency remote instruction and instructors had to alter their in-person teaching methods for an online format. For example, some active-learning instructors opted to embed questions in recorded lectures, asking students to pause the video and attempt to answer on their own, and then continue playing the video to hear the answer. We hypothesize that if a professor has a video “autopause” before the video provides the answer (instead of asking the students to pause a video themselves), then students will be more likely to try the question on their own. Further we hypothesize that if students generate their own answer, they will develop a stronger understanding of the material. We investigated these hypotheses in Introductory Biology III. Students (n=550) completed “lecture follow alongs (LFAs)” assignments as they watched the video. Half of the students were randomly assigned to the control group, in which they were asked to pause lecture videos and answer the questions. The other half were part of the treatment group, in which lecture videos autopaused, and the students had to positively affirm they answered the question before the video continued. We are investigating differences in exam performance, LFA responses, interview transcripts, Panopto video data, and pre- and post-surveys. Preliminary statistical analyses show that autopause did not impact student exam performance. However, preliminary analyses of LFAs indicate that autopausing can decrease copying behavior and increase the chance that students try to answer a question on their own. Through further analysis, our results can give insight into the effectiveness of autopause questions in reducing copying, which can help encourage independent student thinking. At the same time, our results will teach us how to adapt autopause questions, so they might improve student performance, in addition to encouraging student thinking.
- Presenter
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- Liz Platin, Senior, Biology (Molecular, Cellular & Developmental)
- Mentors
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- Alexandr Baryshev, Electrical & Computer Engineering
- Georg Seelig, Electrical & Computer Engineering
- Session
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Poster Session 2
- Commons East
- Easel #42
- 1:00 PM to 2:30 PM
A high-throughput yeast two-hybrid method has recently been developed within the Seelig Lab at the University of Washington to measure thousands to millions of pairwise protein-proteins in a single tube. In each yeast cell, only one pair of proteins is expressed from the same single copy plasmid. Currently, the plasmid in each cell is assembled from 5 double stranded DNA fragments using yeast homologous recombination machinery upon yeast transformation. Particularly, 2 fragments encode for a pair of proteins and the other 3 fragments form the backbone of the single copy plasmid. To optimize the protocol and reduce the number of transformed DNA fragments, 3 of the aforementioned 4 fragments that form the backbone can first be assembled together into a separate accessory plasmid that is subsequently linearized using a restriction enzyme. This reduces the number of transformed fragments that assemble into the single copy plasmid to just 3, which increases the efficiency of the overall transformation. In my research with other members of the Seelig Lab, I have already assembled the accessory plasmid, and am now running the optimized version of the experimental protocol to confirm that this strategy leads to the same results as the established protocol when applied to a control set of coiled coil proteins. Upon completion of this optimization step, I will further try to optimize the protocol by investigating whether the two double stranded DNA fragments that encode for a pair of proteins as well as assemble the single copy plasmid, can be made from a pool of single stranded oligonucleotides rather than ordered as two separate fragments from a DNA synthesis company. This optimization should further reduce the labor and the cost of materials while performing the protocol, and will allow a broader range of individuals to successfully complete yeast transfections with limited resources.
- Presenter
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- Yixuan Zhou, Senior, Chemistry
- Mentors
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- Ashleigh Theberge, Chemistry
- Jian Wei Khor, Chemistry
- Tammi van Neel, Chemistry
- Ulri Lee, Chemistry
- Session
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Poster Session 2
- MGH 241
- Easel #64
- 1:00 PM to 2:30 PM
Microfluidics is the technology of systems in which microscale channels are used to manipulate small quantities of fluids (microliter to picoliter or less). Open microfluidics provides a platform to control the movement of microscale volumes of liquid in open space, making every position more accessible than conventional closed microfluidics. In many applications–including cell culture, chemical synthesis, and high throughput screening–merging droplets is essential for the experimental workflow. For example, merging droplets containing reagents can initiate a chemical reaction, or adding a drug to a cell culture can stimulate cells. In conventional closed droplet-based microfluidics, merging techniques often rely on external components such as merging by electrofusion using electrodes. In other cases, like merging using hydrophilic strips in a channel, the merging method is built into the device and the location of merging must be determined in advance. Therefore, the ability to easily initiate droplet merging in an open microfluidic system would be beneficial to researchers and offer flexibility in experimental design and applications. In this study, I developed an easily accessible droplet fusion technique with the prick of a needle at the liquid interface; my method fuses multiple droplets simultaneously (2-15 droplets). Importantly, this fusion method can be used on-demand at any point in the open microfluidic device and does not require external equipment nor features built into the device. This presentation characterizes the experimental parameters required for successful and controlled droplet fusion and explores the physics behind this phenomenon.
- Presenter
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- Sanford Eugene (Sanford) Leake IV, Senior, Biology (Molecular, Cellular & Developmental)
- Mentors
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- Murat Maga, Pediatrics, Seattle Children's Research Institute
- Kelly Diamond, Seattle Children's Research Institute
- Session
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Poster Session 2
- MGH 241
- Easel #77
- 1:00 PM to 2:30 PM
Advances in molecular techniques have allowed for genome-wide studies to examine which genes are associated with many different human diseases, including those of the skeletal system. In one such study, mutations in the human SOST gene were linked to the skeletal disease Sclerosteosis 1, which presents as hyperostosis in the skull and long bones of the axial skeleton. Functional SOST genes influence the production of sclerostin, a protein which inhibits osteoblastic bone formation. The homologous gene in zebrafish is hypothesized to have a similar function based on ongoing work examining the axial skeleton in mutant zebrafish. Our goal for the current study is to test how the zebrafish cranial skeleton is affected by the SOST gene. I used the open-source 3DSlicer software to place landmarks on micro-CT scans of 27 zebrafish (9 SOST mutants, 9 SOST heterozygotes, and 9 wildtype fish) from the same clutch. I also used 3DSlicer to generate digital models of the cranial skeleton as well as to place 308 pseudolandmark points on the models. From here, I used geometric morphometric methods implemented in R to analyze the complex shape differences between the three groups. Preliminary results suggest that SOST mutants have narrower posterior cranial skeletons than heterozygous or wildtype fish, and that groups may vary in their degree of cranial asymmetry. In addition to quantifying the effect of SOST on zebrafish cranial morphology, this study is part of a larger project to establish a baseline craniofacial analysis method, and create a screening tool for examining genotype-phenotype relationships in genes associated with human skeletal diseases within zebrafish models.
- Presenter
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- Patrick Hoang, Senior, Biology (General)
- Mentor
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- Sujata Jana, Biology, Fred Hutch
- Session
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Poster Session 2
- Commons East
- Easel #24
- 1:00 PM to 2:30 PM
This research aims to explore the link between mRNA translation and cancer growth specifically in bladder. Using genetically engineered mouse models, this work demonstrates that protein synthesis is essential for efficient urothelial cancer formation and growth but dispensable for bladder homeostasis. Through a candidate gene analysis for translation regulators implicated in this dependency, we discovered that phosphorylation of the translation initiation factor eIF4E at serine 209 is increased in both murine and human bladder cancer, and this phosphorylation corresponds with an increase in de novo protein synthesis. Employing an eIF4E serine 209 to alanine knock-in mutant mouse model (in vivo), we show that this single posttranslational modification is critical for bladder cancer initiation and progression, despite having no impact on normal bladder tissue maintenance. Using murine and human models of advanced bladder cancer and immunostaining techniques, we demonstrate that only tumors with high levels of eIF4E phosphorylation are therapeutically vulnerable to eFT508, the first clinical-grade inhibitor of MNK1 and MNK2, the upstream kinases of eIF4E. Our results show that phospho-eIF4E plays an important role in bladder cancer pathogenesis, and targeting its upstream kinases could be an effective therapeutic option for bladder cancer patients with high levels of eIF4E phosphorylation.
- Presenter
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- Sarah Aline Crumrine, Senior, Environmental Science & Resource Management (Landscape Ecology & Conservation) UW Honors Program
- Mentor
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- Bernard Bormann, Environmental & Forest Sciences
- Session
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Poster Session 2
- Commons East
- Easel #30
- 1:00 PM to 2:30 PM
The Washington Department of Natural Resources (DNR) publishes statewide predictions of various forest characteristics—diameter, density, height, age, species composition—in publicly-available spatial datasets called RS-FRIS (Remote Sensing Forest Resource Inventory System). Digital aerial photogrammetry is used to produce this model because of its relative ease of acquisition as compared to active remote sensing (LiDAR). However, the point clouds extracted with this method provide less detail and may be less representative of forest conditions in areas with more vertical variation. Additionally, the RS-FRIS model is an empirical model best suited to predict forest conditions reflected in field plots used in model development. I investigate how forest metrics reported by RS-FRIS compared to ground data in the Long-Term Ecosystem Productivity (LTEP) experiment in Sappho, WA. The purpose of my comparison is to evaluate if the RS-FRIS data can make reasonably accurate predictions of treatments in the LTEP experiment site and the feasibility of using this in other research sites with novel silviculture treatments. I expected the RS-FRIS to work well on the areas of our site that are likely represented in the DNR’s field plots, and my results do show more agreement between the datasets in metrics for tree diameters greater than 15.2 cm (6”) and broadly in the Douglas-fir treatment and unthinned control. I find that RS-FRIS does differ from ground measurements for predicted basal area, trees per acre, and species, particularly in the thinned treatments and where predictions account for hardwood. These results suggest that RS-FRIS is less suitable for inventory of areas that may not be well represented in the DNR’s land base. Thus, for remote sensing to be used in monitoring, additional models must be developed.
- Presenter
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- Karina Flores, Senior, Sociology McNair Scholar
- Mentor
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- Michael Spencer, Social Work/Public Health
- Session
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Poster Session 2
- Balcony
- Easel #55
- 1:00 PM to 2:30 PM
In 2020, the COVID-19 pandemic caused students living in rural areas to experience exacerbated educational disparities. This included familial financial stresses, which also pushed many migrant students living in rural communities to prioritize work over school. The pandemic shed light on educational disparities featured in rural public-school education systems. The purpose of the study was to examine how the education trajectory of students in rural communities had been affected by the social and economic impacts of COVID-19. To accomplish this purpose, we examined the extent to which familial needs impacted students’ post-high school educational plans, how financial strain influenced their post-graduation choices, and how students practiced resourcefulness and resilience despite experiences of economic hardship. In this community-based qualitative research project, we conducted semi-structured interviews with Eastern Washington high school seniors who are 18 years of age or older and used a phenomenological thematic analysis to gather themes related to our research questions. As part of the research, we collaborated with a community advisory committee composed of teachers and recent high school graduates from Eastern Washington communities to develop the project’s research methods and to ensure the analyses and interpretation of interviews are reflective of the students’ experiences. We predicted that students will plan to alter their post-high school paths to accommodate their families’ needs. Anti-racist, strength-based frameworks were used to make academic support recommendations for students in rural communities. Ultimately, our study can help inform collaboration with community members to find solutions so we can best support students and encourage them as they navigate pathways after high school graduations.
- Presenter
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- Abril Beretta, Senior, Psychology McNair Scholar
- Mentor
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- Emily Dworkin, Psychiatry & Behavioral Sciences
- Session
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Poster Session 2
- Balcony
- Easel #53
- 1:00 PM to 2:30 PM
Sexual minority women, and bisexual women in particular, are at greater risk of experiencing sexual assault and other types of traumas and stress, as well as heightened symptom severity than heterosexual women. Among sexual minority women, bisexual women in comparison to lesbian women have shown a higher risk of reporting worse mental health. To our knowledge, only three studies have looked at differences in mental health in bisexual and lesbian women who have been sexually assaulted, but their results have been contradictory. As such, the purpose of this study is to investigate the symptom differences between bisexual and lesbian women following sexual assault to better understand their differences. To do this, I conducted a secondary analysis of an existing national data set that surveyed 1057 sexual minority women. I used bivariate statistics tests to compare lesbian and bisexual women regarding their mental health following sexual assault with a focus on anxiety, depression, and PTSD symptoms. No statistically significant differences were found between the two sexual identity groups as a function of sexual assault, but bisexual women reported greater symptoms of depression regardless of sexual assault status in comparison to lesbian women. A potential explanation for this difference could be that bisexual women may have higher levels of minority stress (i.e., stress resulting from societal prejudice and other stigmatizing experiences) than lesbian women, which has been connected to heightened mental health issues. Future studies should consider minority stress as a factor when studying the two sexual identities to better tailor research and treatment to bisexual and lesbian women’s unique identities.
- Presenter
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- Rohda Ahmed (Rodha) Yase, Junior, Pre-Nursing McNair Scholar
- Mentors
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- Elizabeth Lawlor, Pediatrics, UW/SCRI
- Shireen Ganapathi, Pediatrics, Seattle Children's Research Institute
- Session
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Poster Session 2
- MGH 241
- Easel #76
- 1:00 PM to 2:30 PM
Ewing sarcoma (ES) is a bone and soft tissue tumor that primarily occurs in children and young adults. The tumor is driven by an oncogenic fusion gene that fuses the EWSR1 gene located on chromosome 22 to FLI1, an ETS family transcription factor located on chromosome 11. EWS-FLI1 promotes tumorigenesis through transcriptional and epigenetic dysregulation. Despite maximally intensive cytotoxic therapy, the outcome for patients with metastatic ES remains poor, thus the need to identify new therapeutic agents. Given ES’s epigenetic dependencies, there is strong rationale to investigate epigenetic modifying drugs. Bromodomain and extra terminal domain (BET) proteins function as epigenetic readers that facilitate transcription and are upregulated in many tumors. I have shown that BET inhibition slows the growth of ES cells in vitro and in mice. However, BET inhibitors (BETi) will not be successful as a single agent. I hypothesize that combining BETi with other biologically targeted agents will lead to synergistic effects and tumor regression. Based on established literature, RNA-seq data of BETi-treated ES cells, and in silico drug screen, we selected Copanlisib (PI3K inhibitor), GSK-126 (EZH2 inhibitor), PP121 (Src, mTOR, VEGFR2, PI3K inhibitor), Danusertib (Aurora Kinase inhibitor) and Infigratinib (FGFR inhibitor) to test in combination with BETi (BMS-986158). Using standard in vitro cytotoxic assays and calculating synergy using the Chou-Talalay method, my preliminary results showed strong synergy between Copanlisib and BMS-986158. I detected no synergy between BMS-986158 and GSK-126. Our initial results from our in silico drug screen predict that Danusertib, Infigratinib and PP121 may be synergistic with BETi. Ongoing in vitro studies are testing this. Promising combinations will be tested in vivo xenograft models. It is our goal to identify drug combinations from the drug screen that will enhance the cytotoxic effects of BETi in vitro and lead to tumor regression in vivo.
- Presenter
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- Arjun Sen, Senior, Biology (Molecular, Cellular & Developmental)
- Mentor
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- Katherine Prater, Neurology
- Session
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Poster Session 2
- MGH 241
- Easel #71
- 1:00 PM to 2:30 PM
Alzheimer’s Disease (AD), despite its prevalence, remains a much-researched yet incurable condition. Most prominently characterized by cognitive decline with advanced age, AD is associated with beta-amyloid plaques, tau protein tangles, and neurodegeneration in the brain. Previous research has shown that a relevant contributor of AD is neuroinflammation in the brain and spinal cord. Neuroinflammation is driven by cells such as microglia, brain immune cells, and astrocytes, which regulate the blood-brain barrier and homeostasis. However, our understanding of cell-type specific changes in their gene expression is lacking. We hypothesize alterations in gene expression in microglia that result in a more inflammatory phenotype in AD compared to controls. We also expect to observe alterations in the prevalence and inflammation of astrocytes in AD brain. Single-nucleus RNA sequencing (snRNAseq) provides a more detailed analysis of cells, allowing us to examine expression differences between cells in the same brain region. Applying this technology to compare phenotypic differences in specific cell types of AD patients and non-affected controls has yielded a more comprehensive look at differences in cell types that influence AD. This study examines a snRNAseq dataset generated by a cohort of 20 individuals, using brain tissue acquired post-mortem. This tissue is separated into individual cells, which are analysed using our lab's sequencing pipeline in R, allowing us to determine gene expression for each cell. My role in the project involves piloting this pipeline and analysing the various outputs to identify differentially expressed genes and how they are characterized between groups (control vs AD) for specific cell types such as microglia. I have also begun to validate these findings with protein expression assays such as Western blots, as well as in cultured microglia and astrocytes. This study enables us to determine and characterize the alterations in gene expression in AD, and hopefully identify potential therapeutic targets in the future.
- Presenters
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- Samuel (Sam) Champlin, Senior, Biology (Ecology, Evolution & Conservation), Environmental Science & Resource Management
- Ava Virginia Kloss-Schmidt, Senior, Biology (Plant) Mary Gates Scholar, UW Honors Program
- Mentors
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- David Giblin, Burke Museum
- Richard Olmstead, Burke Museum
- Session
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Poster Session 2
- Commons West
- Easel #17
- 1:00 PM to 2:30 PM
The alpine zone (i.e., area above treeline) is Washington's most pristine habitat due to minimal human disturbance. However, plant species richness and the distribution of those species (collectively floristics) are poorly documented by herbarium specimens due to sheer spatial scale, physically challenging access, and a short (10-12-week) growing season. The goal of this project is to generate baseline data for future studies examining climate change impacts on alpine plant communities, improving distribution data for alpine species in Washington, and locating new populations of rare plant species. In 2021 we initiated a 5-year project to conduct comprehensive botanical surveys on 50 alpine peaks in the Cascades Range between the Goat Rocks Wilderness and the Canadian border in Washington. Peaks were selected on the basis of accessibility (i.e., do not require technical climbing to access the summit), elevation (summit area is exposed), latitude (dispersed between the north and south ends of the sampling area) and position relative to the Cascades Range crest (representation of both East Cascades and West Cascades peaks). In 2021 we sampled 11 peaks. Species lists for each peak were generated from historic herbarium specimens, collecting specimens during field work, and generating lists on the basis of sight identification of specimens in the field. We collected at least one specimen of each species, subspecies, or variety of plants encountered in the field. Here I present my analysis of the data examining the frequency distribution of species across sampled peaks, dispersal mechanisms, and flower color, and report notable species range extensions and new rare plant populations. This analysis can be used as a comparison against future collections in new sites or collections at the same sites in the future to observe the effects of climate change on alpine plant populations.
- Presenter
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- Jeniffer Kyule, Senior, Psychology McNair Scholar
- Mentors
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- Liliana Lengua, Psychology
- Michele Smith, Psychology
- Session
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Poster Session 2
- Balcony
- Easel #54
- 1:00 PM to 2:30 PM
According to the World Health Organization, 10% of pregnant women and 13% of recent mothers suffer from adverse mental health, particularly depression. The pregnancy process is an already tumultuous experience as mothers undergo many physical and psychological changes, so the addition of other prenatal stressors like limited resources that disproportionately affect low-income mothers can further negatively impact maternal mental health, birth outcomes, and an infant's cognitive and emotional development. The purpose of the study is to examine the impact of maternal mental health on low-income mothers and children and how mindfulness can be a potential tool of intervention. I carried out a literature review using preliminary outcomes of an ongoing, longitudinal study examining maternal well-being following a mindfulness-based intervention among low-income new mothers with data acquired from the New Moms Connect Lab. Early findings show prenatal mindfulness resulted in lower depression and lower anxiety caused by pregnancy, however its effects were not long-term. Postnatal mindfulness did not yield conclusive results due to lower attendance. Social- Emotional Attunement (SEACAP) resulted in reduced depression in comparison to all three. Overall, mindfulness practices reduced maternal stress more than the control group. Research is still ongoing and more data is still being collected regarding the long term effects of postnatal mindfulness. This research is important as it provides data on the maternal health of low-income mothers who have been grossly underrepresented in previous similar research. These findings also indicate the potential benefits of mindfulness programs geared towards serving low-income communities.
- Presenter
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- Sara Reyes, Senior, Electrical Engineering McNair Scholar
- Mentor
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- Matthew Reynolds, Electrical & Computer Engineering
- Session
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Poster Session 2
- Balcony
- Easel #49
- 1:00 PM to 2:30 PM
In vivo recordings of neural ensemble activity in non-human primates (NHPs) have contributed to the understanding of how neural activity relates to motor function and intent. Traditionally, neural recording has been conducted in constrained environments, such as head-fixed experiments using bulky wired equipment to achieve high data throughput and reduce measurement noise. To collect more natural data from free-moving NHPs requires a high speed, low power wireless uplink of the neural data. However, wireless communication inside a metal NHP cage suffers from dense multipath interference, due to multiple signal bounces from the cage walls, which decreases communication reliability. We explored an approach called "Electronic Mode Stirring" to obtain better communication reliability. We found that by adding 4 switchable reflecting antennas to the roof of the cage to perform mode-stirring we were able to improve the mean one-way path loss and improved the worst-case signal loss across 126 measured positions in the primate cage. We expect that the reduced signal loss with the mode stirring system will lead to improved wireless communication reliability inside the cage.
- Presenter
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- Samantha (Sam) Lieberman, Junior, Biology (General)
- Mentors
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- David Giblin, Burke Museum
- Holly Barker, Anthropology
- Session
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Poster Session 2
- Commons West
- Easel #16
- 1:00 PM to 2:30 PM
Between 1946 and 1958, the United States conducted 67 nuclear tests in the Marshall Islands, a country in Oceania composed of volcanic islands and coral atolls. The Burke Museum holds biological specimens collected from the Marshall Islands as part of a project sponsored by the Atomic Energy Commission. I am locating, contextualing, and digitizing these specimens in order to democratize access to this biological and cultural information. I am locating as many specimens as possible in the Burke Museum collected during and after this nuclear testing period, beginning in the Herbarium. I am then digitizing these specimens by imaging, databasing, and georeferencing them. There was also an opportunity to test these samples for radiation. I am collaborating with colleagues to contextualize the specimens culturally, and bring attention to the University’s involvement in this part of our nation’s history. Overall, we aim to make this information freely available online so that communities have access to knowledge and resources to inform their decisions. Early investigation suggests that samples exist in at least the ornithological, invertebrate, and botanical (Herbarium) collections, but the total number of specimens remains unknown. This is an opportunity to unite multiple departments in the Burke Museum as we make connections across cultural and biological collections. Ultimately, this research addresses the ethical implications of the University’s scientific past and makes the specimen data of the Burke Museum more accessible.
Virtual Lightning Talk Presentation 2
12:00 PM to 1:30 PM
- Presenter
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- Mayumi Sophiya Alino, Senior, Political Science, Cinema and Media Studies Mary Gates Scholar
- Mentors
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- Maria Elena Garcia, Comparative History of Ideas
- José Antonio Lucero, Comparative History of Ideas, Jackson School of International Studies
- Adam Warren, History
- Lydia Heberling, Comparative History of Ideas, University of Washington, Seattle
- Session
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Session L-2A: Human Behaviors and Perceptions
- 12:00 PM to 1:30 PM
Within the ethnographies, memories, and archives produced throughout a capitalist empire, the ‘gaze’ has generally been used against the subject, creating narratives which entrench the hegemony in defining the subject to accord with the needs of the dominating culture. The term ‘oppositional gaze’ was developed in 1992 by bell hooks in conversation with Laura Mulvey’s Visual Pleasure and Narrative Cinema: the ‘gaze’ is a scopophilic act albeit with the potential to be a radical method for resistance; the oppositional gaze then refers to ‘looking’ as a defiant act to which the actors reclaim a sense of autonomy over the spectator and turn the gaze back upon their oppressors. What makes the act of ‘looking’ so defiant and how this looking translates to an oppositional gaze is the question this project attempts to answer through a close reading of various media and using an array of methods and theories from such disciplines as film studies, ethnography, and data ethics. I build upon the foundations of hooks and Mulvey while asserting that the definition of ‘looking’ goes beyond visual perception and into the act of understanding and perceiving. I apply these theories of the ‘gaze’ and my own explorations of ‘looking’ to juxtapose Rahul Jain’s Machines (2016) and Chloe Zhao’s Nomadland (2020) in analyzing its application and limitations. With this project, I hope to impel further discussion on the study of the gaze by compiling demonstrations of its application in various media and its disruption of prevailing narratives.
- Presenter
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- Madison Anne Morgan, Senior, International Studies, Communication, Asian Languages and Cultures
- Mentor
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- Janine Slaker, Communication
- Session
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Session L-2A: Human Behaviors and Perceptions
- 12:00 PM to 1:30 PM
During the height of the COVID-19 pandemic, life for many people shifted online, with much of their activities circulating on and within social media platforms. One such social media platform that received a significant uptick in users was TikTok, which the BBC reported logged 800 million users and was the most downloaded app of 2020. Occurring simultaneously with this shift online was a phenomenon colloquially termed “queerantine,” which refers to a phenomenon occurring over the course of the pandemic in which a straight-identifying person shifted to identifying as queer. Influenced by theories of compulsory heterosexuality and queer performativity, this study aims to identify how socio-technical affordances of TikTok introduce and circulate symbols and inscribe activities that bear upon an individual’s understanding of their sexual orientation. Taking an ethnographic approach, I engaged in participant observation with content groups over TikTok during 2021 as well as conducted in-depth interviews with individuals who identified as experiencing queerantine. Data was analyzed using qualitative thematic analysis. Additionally, with the aforementioned shift online came minimized exposure to physically and traditionally heteronormative spaces; preliminary analysis has shown that for a number of TikTok users, the decrease — or to an extent absence — of compulsory heterosexuality (aka comphet) on certain spaces of TikTok affected their understanding of their sexuality. Moreover, results speak to how LGBTQIA+ counterpublics on TikTok participate in processes of community identification and formation. This research broadens our understanding of the mobilization of counterpublics and the mediation of content through group-specific spaces and contributes to the growing concern of exclusionary practices of social media sites, which are often critiqued for using algorithms that enforce normative assumptions of user behaviors, echo chambers that can spur segregation between communities and spread information, as well as the geopolitics involved in the cross-national implementation of social media platforms like TikTok.
- Presenter
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- Felice Chen, Senior, Philosophy, Psychology UW Honors Program
- Mentors
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- Sapna Cheryan, Psychology
- Ella Lombard, Psychology
- Session
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Session L-2A: Human Behaviors and Perceptions
- 12:00 PM to 1:30 PM
Inequitable work environments can heavily influence women’s professional choices, contributing to a widened gender gap in male-dominated fields. Past work has established that leaders' desire to use power for good produce better business outcomes, but we examine how leaders' use of power may influence gender equity in male-dominated work environments. I hypothesize that encountering a male-leader who is motivated to use power for good reduces women’s gender bias concerns. Women participants recruited through the online platform Prolific (N = 98) completed a survey in which they read leadership and team culture evaluations of two male leaders of male-dominated work teams (order counterbalanced). After reading the evaluations, participants rated how much they would worry about gender bias if they worked for each leader. The evaluations were identical except that in the experimental condition, participants read that 95% of the leader’s employees reported he used power for good compared to 43% in the control condition. I analyzed the data with a dependent samples t-test revealing women had reduced gender bias concerns after reading about the leader who used his power for good compared to the control condition. The results suggest that perceiving that a leader desires to use power for good reduces women’s gender bias concerns in male-dominated work environments. Signaling that the use of power for the good of others is a desirable institutional value may help establish gender equity and reduce climate threats. Future work should examine potential interventions that train leaders to better demonstrate their desire to use power for good of others in order to promote gender equity in male-dominated fields.
- Presenter
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- Mudasir Kamran Zubair, Graduate,
- Mentor
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- Celeste Lonson, Psychology, Bellevue College
- Session
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Session L-2A: Human Behaviors and Perceptions
- 12:00 PM to 1:30 PM
Over the course of the COVID-19 Pandemic, researchers have examined how people adjusted to the conditions of social isolation. As a follow-up to those studies, we investigated if – in King County Washington State - there was a correlation between people’s new level of participation in work/school, religious, or recreational activities during the March - May 2020 lockdown (in comparison to pre-pandemic levels) and how lonely they felt during that time. My team surveyed 252 King County Residents (aged 18 - 65 years old) over the internet, asking about their level of participation, whether the participant conducted the activity in-person or virtually, and if the participant has done more or less of this activity before the pandemic. We collected participants through snowball sampling, starting with immediate friends, families, and colleagues. We conducted univariate analyses on our responses to the types of activity and loneliness. Based on previous studies, it was predicted that those who participated in religious and recreational activities would feel significantly less lonely, while those who had engaged in work and school activities would feel significantly lonelier. No significant differences were present in the results except within recreational activity - people who participated at the same level of recreation as they had before the pandemic were significantly less lonely. In comparison, those who participated in recreation at greater or lesser levels during the pandemic. This is important, as it presents that a balanced amount of recreation can alleviate loneliness and its impacts (depression, anxiety, poor mental functioning, decreased motivation, etc.) This study also illustrates that when we can safely move away from social isolation measures, we need to develop and maintain routines and activities that lessen loneliness.
- Presenter
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- Quinn S Russell, Senior, Sociology, Psychology
- Mentors
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- Cynthia Levine, Psychology
- Rachel Song, Psychology
- Session
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Session L-2A: Human Behaviors and Perceptions
- 12:00 PM to 1:30 PM
Gentrification is characterized by the influx of wealthier, highly educated individuals into a neighborhood. As gentrification accelerates in cities around the U.S, we are interested in the effects of this neighborhood upheaval on belonging and how geographical context may moderate this relationship. Specifically, how does urbanity affect a person’s perceptions of the visual changes associated with gentrification and how they feel they belong? As gentrification often facilitates increased development and construction, urban residents may be more familiar with these visual changes and feel more belonging. In contrast, suburban and rural residents may feel the opposite. We collected data from 885 U.S. adults using a within-subjects online survey experiment where participants saw Google Street View photos of gentrifying and stable (i.e., not-gentrifying low-income) neighborhoods. We found that rural and suburban participants felt significantly less overall belonging than urban residents. Moreover, there was an interaction effect such that rural and suburban participants felt even less belonging to the gentrifying neighborhood than the stable neighborhood. These findings suggest that rural and suburban residents may be especially psychologically vulnerable to the visual changes associated with gentrification. As gentrification proliferates beyond major metropolitan areas, suburban and rural residents may be at increased risk of social displacement.
- Presenter
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- Sheer Yedidia, Senior, Psychology
- Mentor
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- Zoe Ferguson, Psychology
- Session
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Session L-2A: Human Behaviors and Perceptions
- 12:00 PM to 1:30 PM
Previous literature has looked at the way in which we perceive women who come forward with claims of sexual harassment and the factors that can influence these perceptions. This study focuses on comparing narrow and broad representations of who is sexually harassed at work and exploring the effects on perceptions of sexual harassment when looking at women who either fit a typical normative or non-normative gendered characteristic description. As part of a bigger study, the goal is to experimentally broaden the representation of women who experience sexual harassment, taking into consideration subgroup identities and individual characteristics. Participants (N = 512) will be recruited online to ostensibly participate in a study on workplace decisions. Participants will then watch a short training video that I am creating on sexual harassment where the representation of women will be varied by changing the interests they portray and their physical descriptions, and afterwards be presented with a brief ambiguous sexual harassment claim. The claim will feature either a prototypical description or a non-prototypical description of a woman, and after reading through it, participants will take a survey that I administer through Qualtrics measuring their perception of sexual harassment, their punishment recommendation, and the psychological harm they believe the target received. Thus, we predict that sexual harassment will be more likely to be perceived in the narrow representation condition when targets are prototypical rather than non-prototypical, but we hope to “turn off” this effect in the broad representation. So far, I have conducted a pilot test of the materials on mTurk (N = 40 participants) to ensure that our manipulation is working as I designed. An interesting pattern arose such that nonprototypical women were more likely to be perceived to be queer (vs. straight). Implications of this pattern and future directions of the project are discussed.
- Presenters
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- Alexis Cherry, Sophomore, Psychology, Bellevue Coll
- Sylvia Waldron, , Bellevue Coll
- Angela Simler, Non-Matriculated,
- Mentor
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- Celeste Lonson, Psychology, Bellevue College
- Session
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Session L-2A: Human Behaviors and Perceptions
- 12:00 PM to 1:30 PM
During the COVID-19 global pandemic, individuals have had to learn to cope with isolation and adjust to new social protocols. In Washington state, a lockdown mandate was issued between March to May in 2020 in response to a surge in COVID-19 cases. This study aims to analyze how King County residents experienced the lockdown and the impact it had on their daily activities, behaviors, and wellbeing. We hypothesize that loneliness increases as a person is more physically isolated from others and also as age increases. The data for this research was collected through an online survey which included the UCLA Loneliness Scale. An additional 16 questions examined demographics and the dynamics within the household including household size, pets, and romantic relationships and how they relate to the person’s experience of loneliness. The survey was distributed through Qualtrics to undergraduate psychology classes and faculty at Bellevue College and South Seattle College and to the researchers’ social circles via email and social media platforms. Participants were residents of King County during the Washington State COVID lockdown and ranged in age from 18 to 65 years old. We aim to investigate if the lockdown measures taken during the early stages of the COVID-19 pandemic led to a rise in loneliness considering that loneliness has been associated with major public health concerns including mental health problems, chronic physical ailments, and increased likelihood of mortality.
- Presenters
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- Lucy Liu, Senior, Psychology, Biology (General)
- Yasmin C Garfias, Graduate,
- Mentors
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- Noah Triplett, Psychology
- Shannon Dorsey, Psychology
- Session
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Session L-2A: Human Behaviors and Perceptions
- 12:00 PM to 1:30 PM
Systemic racism is a widespread issue in America that has an adverse impact on the psychological well-being of ethnic minority populations. Although there is significant research on the importance of addressing racism in psychotherapy and adopting culturally humble interventions, limited studies exist on the frequency with which clinicians ask Clients of Color about experiences of race or racism. Thus, this study examines the percentage of community mental health clinicians who report intent to discuss issues of race or racism with Clients of Color. In this study, surveys were distributed to participants (N = 138) from a statewide Cognitive Behavioral Therapy training initiative in Washington state. Clinicians rated their level of agreement with 11 statements describing their intentions of discussing race/racism with clients on a 7-point Likert-type scale. We will employ descriptive statistics to assess the frequency with which clinicians intend to address issues of race or racism with Clients of Color. The existing limitations of this study include the predominant use of self-report questionnaires after receiving CBT+ (Cognitive Behavioral Therapy) training. Ultimately, our findings can highlight if clinicians initiate discussions surrounding race or racism with Clients of Color, which can inform researchers if more support is needed in the form of resources or additional training for clinicians to effectively approach discussions of race or racism.
- Presenter
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- Joel Sitanggang, Sophomore, Psychology, Shoreline Community College
- Mentor
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- Diana E Knauf-Levidow, Psychology, Shoreline Community College
- Session
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Session L-2A: Human Behaviors and Perceptions
- 12:00 PM to 1:30 PM
As the democratization of online technology continues to grow, the population of the online world continues to develop rapidly, and the virtual world has evolved to be as expansive as our natural world with its own set of unique governing variables. Social phenomena typically prevalent within physical societies manifests within these online communities; one such phenomenon is social ostracism. Exploration into cyberpsychology, a field specializing in the investigations of technologically interconnected human behavior, points to the online disinhibition effect, a theory posited by cyberpsychologist John Suler, as a key contributor behind the rise of social ostracism within the online world. I hypothesize that the psychological mechanisms behind cancel culture are influenced by certain behavioral factors that motivate social standing within peer groups and numerous technological variables prevalent in online social media that exacerbate such behavior. The research method primarily revolves around a rigorous review of the literature surrounding cancel culture and its roots in societal development. Furthermore, results from open-ended interviews with 15 proponents of cancel culture within social media platforms, such as Twitter, provide insight into the behavioral patterns that underlie cancel culture rallies. I found that sociometric status and mob mentality are salient motivators for online citizens to participate in cancel culture; online users ostracise others to appear more upright in comparison while joining the majority of persecutors to cultivate unity within the group. Additionally, I found that online factors, such as asynchronicity and anonymity, further incentivize combative behavior by lowering one’s inhibition and sense of restraint online. Cancel culture could potentially cultivate a future riddled with arbitrary policing and diminished freedom of expression. Understanding the psychology behind such a phenomenon would result in a deeper awareness of the covert psychological effects that plague netizens and could create a foundation for a more mindful online presence.
- Presenter
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- Ruth Adame, Senior, Sociology UW Honors Program
- Mentor
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- Peter Catron, Sociology
- Session
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Session L-2A: Human Behaviors and Perceptions
- 12:00 PM to 1:30 PM
This research examines the relationships between contact with work centers, immigration status, precarious employment, and exploitative working conditions. Work centers are non-profit organizations that developed in response to deteriorating wage and working conditions within the lower wage market. Each work center is oriented around the needs of the local community, depending on its unique cultural and economic context. They are intended to support immigrants by providing services like advocacy, organizing, policy making, and serve as intermediaries among low-wage workers, labor markets and employers. Work centers are important because low-wage, precarious, exploitative labor is linked to deteriorating health, low social and economic mobility, violations of worker and human rights, low unionization, and a lack of political voice. Unfortunately, work centers receive little attention from scholars. My study will use 8 semi-structured, qualitative interviews with employers, immigrant workers, and employees at work centers to understand the connection between work centers and the experience of immigrant workers. I will then analyze the interviews by cross-referencing prior notes, to avoid any biases. Studying the services that work centers provide to immigrant workers within the lower wage market can highlight these under researched groups, illuminating how immigrant workers are overcoming individual and structural barriers within the labor market to achieve upward mobility. My project will give us a better understanding of the effectiveness of work center services like legal, social, and cultural resources to improve the working conditions of immigrant workers, and how they can do more to empower workers to advocate and collectively fight for better working conditions, protect their legal rights as workers, and collectively fight for benefits within the lower wage market.
- Presenter
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- Jules Travis, Senior, Community, Environment, & Planning
- Mentor
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- Megan Brown, Community Environment & Planning
- Session
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Session L-2B: Mars Above, Sea Below: Human Impacts Past and Future
- 12:00 PM to 1:30 PM
As the impacts of climate change begin to increase in urgency, new techniques for natural disaster mitigation must be invented to protect communities and ecosystems everywhere – especially in coastal environments where they’ll be affected most quickly and dramatically. It’s possible that the solution might come from a radical decolonization in our approach to landscape architecture, land and resource management and environmental planning. How can implementing Indigenous land stewardship techniques in coastal communities help mitigate the impacts of climate change? This project explores Indigenous land and resource management and considers how they might be best integrated into contemporary ecological design in the Western Washington shoreline region while confronting colonial perceptions and interpretations of Indigenous knowledge. Methods include researching global approaches to Indigenous land stewardship integration, a case study on issues relating to the ancestral land of the Olympic Peninsula’s Makah and Quinault peoples, and development of printmaking techniques in monotype, linoleum and lithography. Products will include a research paper with best practice recommendations, artistic landscape representations in the form of prints and an informational zine to make built environment issues collaborative and accessible, with which net proceeds will be contributed back to collaborating tribal communities. Through collective action, working towards decolonizing ecological design and planning might offer sacred land the chance it needs to heal.
- Presenter
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- Hashim A. Hashi, Senior, Biomedical Sciences Mary Gates Scholar
- Mentor
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- Alison Gardell, Division of Sciences & Mathematics (Tacoma campus)
- Session
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Session L-2B: Mars Above, Sea Below: Human Impacts Past and Future
- 12:00 PM to 1:30 PM
Obesogens are chemicals that contribute to obesity and are sourced from anthropogenic inputs. To date, there are limited studies on the effects of perchlorate on lipid synthesis in invertebrates. This study aimed to investigate whether perchlorate, a putative obesogen in some vertebrate species, alters lipid accumulation and metabolism in Daphnia magna. I exposed neonatal D. magna to different levels of perchlorate (10 and 100 mg/L) over a 1 week period. Following exposure, I stained the D. magna with Nile Red, a lipophilic stain, to qualitatively assess lipid accumulation in D. magna using fluorescence microscopy. The lipid accumulation was also quantified using a microplate reader fluorescence-based assay. Preliminary qualitative fluorescent microscopy data collected were inconclusive and will require additional experiments to determine if there is a significant effect of perchlorate on lipid accumulation. Data generated from this study will be used to increase our understanding of the molecular and physiological effects of perchlorate on aquatic invertebrates. There is currently no regulation of perchlorate levels in drinking water and this study will potentially inform future policy for perchlorate.
- Presenters
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- Jessica Darlington, Sophomore, Environmental Science, North Seattle College
- Julia Lewicki, Freshman, Environmental Science , North Seattle College
- Mentors
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- Ann Murkowski, Biological Sciences, North Seattle College
- Heather Price, Chemistry, Program on Climate Change, North Seattle College
- Session
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Session L-2B: Mars Above, Sea Below: Human Impacts Past and Future
- 12:00 PM to 1:30 PM
Microplastics, plastic pieces less than 5 mm, are widespread in the environment and a concern for human and environmental health. In aquatic environments, microplastic particles are often mistaken for food by fish and other wildlife which remain in their digestive system and can cause starvation. Microplastics also absorb and concentrate endocrine disruptors such as PCBs (polychlorinated biphenyls) and POPs (persistent organic pollutants). These molecules can cause reproductive and developmental issues in both wildlife and humans. Many studies characterize the microplastic load and composition in various environments; fewer studies have documented the changing microplastic concentrations over time. Our study fills in this gap by collecting and characterizing the current microplastic load at various points in Lake Washington and comparing these findings to data from ten years prior. Samples were collected from multiple sites in and around Lake Washington using a manta net for surface tows. Microplastics were extracted using an acid digestion and inspected under a microscope to characterize and quantify the microplastic load. The results of our study help expand upon previously collected data about Lake Washington and the change in microplastic concentrations. This study will hopefully inform local policies to address and mitigate microplastic pollution and its consequences.
- Presenter
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- Virginia Carolyn Davidson, Senior, Earth and Space Sciences: Geology
- Mentor
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- Ruth Martin, Earth & Space Sciences
- Session
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Session L-2B: Mars Above, Sea Below: Human Impacts Past and Future
- 12:00 PM to 1:30 PM
Benthic foraminifera are shelled marine amoeboid protists which are particularly sensitive to changes in their environment. A census of species found in an area can function as an indicator of the health of a marine ecosystem. This project focused on the change in distribution between 2011 and 2018 of foraminiferal assemblages in Budd Inlet, Washington, to determine changes in environmental health in the area. Budd Inlet is located in the South Sound region, and includes the Olympia waterfront. It is the site of several cleanup efforts overseen by the Washington State Department of Ecology, who in 2011 found low to moderate toxicity in sediments and adversely affected macrobiota throughout Budd Inlet, and declining conditions in 2018. For this study, I washed the sediment samples and examined them for foraminifera, then identified the species found. I then compared the diversity of species found between years. Although an analysis of variance (ANOVA) test found no significant change in diversity over time, with species diversity remaining low, there were noticeable patterns in the data. I found overall increases in foraminiferal density and species richness in 2018, with 11 species found in 2011 compared to 13 in 2018. There were two dominant species found in both years, Buccella frigida (28.51% in 2011 and 41.31% in 2018) and Cribroelphidium excavatum (34.51% in 2011 and 17.4% in 2018), both of which are typical of polluted estuarine ecosystems due to their high environmental stress tolerance. This suggests that the ecosystem has not seen improvement despite restoration efforts.
- Presenter
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- Maxwell Bauccio-Teschlog, Freshman, Biology, Everett Community College
- Mentors
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- Josh Searle, Ocean Research College Academy, Everett Community College
- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
- Session
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Session L-2B: Mars Above, Sea Below: Human Impacts Past and Future
- 12:00 PM to 1:30 PM
The ability of ecosystems’ organisms to adapt and thrive is dependent on the water chemistry. One key component of water chemistry is measured by the acidity of the water, or pH. The speed of change in pH affects the ability for microorganisms to adapt and thrive. Globally, the pH of the ocean is decreasing due to increasing anthropogenic CO2 emissions. Possession Sound, a smaller portion of the Salish Sea located off the shores of Everett, Washington, hosts a variety of organisms, all of which are affected directly and indirectly by the pH of the water. The well-being of Possession Sound was explored by examining changes in pH seasonally and spatially. Data were collected with a YSI EXO Sonde from 2016-2022 at four sampling locations with varying distances from shore and the mouth of the Snohomish River that deposits into Possession Sound. A YSI EXO Sonde is a tool used to monitor water quality with sensors to detect depth, pH, dissolved oxygen, and more. Spatially, it was found that lower pH could be found at the sites located nearer to shore. Seasonally, pH increased in the fall and winter and decreased in the spring and summer. Overall, there was less variation in the data that came from the sites located further from shore and more variation in the nearshore site. This could be attributed to the natural mixing that occurs between the freshwater influence of the Snohomish River and the ocean, along with several other factors. Future research examining pH would benefit from the addition of more data sites. Long term monitoring of the water chemistry is important because, as anthropogenic emissions increase, estuaries like that of Possession Sound will feel the effects of climate change first.
- Presenter
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- Kyle Petersen, Senior, AAS and working towards Majoring in Mechatronics., Everett Community College
- Mentors
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- Josh Searle, Ocean Research College Academy, Everett Community College
- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
- Session
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Session L-2B: Mars Above, Sea Below: Human Impacts Past and Future
- 12:00 PM to 1:30 PM
Within a marine ecosystem, eelgrass beds are critical for filtering runoff, protecting from shore erosion, and storing or absorbing excess nutrients and greenhouse gasses. Eelgrass similarly is a nursery or home for many aquatic species. Because of these connections, eelgrass has been the center of many studies as a result of its pinnacle role within the aquatic ecosystem. Within Possession Sound, located outside Everett in the southern half of the Salish Sea, eelgrass’s relationship to phytoplankton such as Pseudo-nitzschia, which is potentially toxic, is of particular interest to me. For my study, I hypothesized that the abundance of Pseudo-nitzschia will increase with increased eelgrass bed size. My study utilized data from 2015 to 2020 collected from six sites within Possession Sound. The presence of eelgrass beds and their relative size was determined through the Washington Department of Natural Resources, and plankton collection and identification were conducted by Ocean Research College Academy students. Two common species found within the eelgrass beds are Z. marina and Phyllospadix spp. Data were collected above or adjacent to eelgrass beds. I chose three plankton collection sites with differing sizes of eelgrass and three other sites with no eelgrass for comparison. I chose to monitor Pseudo-nitzschia due to its potentially harmful effects. Preliminary data indicate an association with eelgrass beds and higher Pseudo-nitzschia counts. Further research is warranted to investigate the strength of this correlation. Results will add another piece of understanding to the complex puzzle that lies within the aquatic ecosystem and another impact of eelgrass within the Possession Sound.
- Presenter
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- Ayesha Toor, Sophomore, Arts and Sciences, Everett Community College
- Mentors
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- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
- Josh Searle, Ocean Research College Academy, Everett Community College
- Jennifer Olson, Ocean Research College Academy, Everett Community College
- Session
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Session L-2B: Mars Above, Sea Below: Human Impacts Past and Future
- 12:00 PM to 1:30 PM
Plankton species tend to have a set of conditions that make certain environments ideal for that species to thrive to its highest capability. By focusing on factors such as salinity and temperature, the health of an environment can be tracked based on the consistency of those numbers and its overall impact on marine species’. Given the importance of plankton to the entire underwater food chain, understanding the ability of plankton to survive in certain circumstances is crucial to sustaining a healthy underwater ecosystem. This study analyzes data taken from various sites around Possession Sound from vertical profiles collected by students at the Ocean Research College Academy. This data was further filtered to focus only on those sample dates with abnormally high or low salinity and/or temperature levels. These numbers were compared to plankton counts to understand if the abnormalities were associated with plankton populations. The data showed a connection between days with greater salinity deviations and higher plankton counts. This may mean that salinity fluctuations have an impact on plankton density. Similar information regarding temperature is not as clear currently, meaning that there may not be as distinct of a trend.
- Presenter
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- Daniela Torres, Sophomore, AAS, Everett Community College
- Mentors
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- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Josh Searle, Ocean Research College Academy, Everett Community College
- Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
- Jennifer Olson, Ocean Research College Academy, Everett Community College
- Session
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Session L-2B: Mars Above, Sea Below: Human Impacts Past and Future
- 12:00 PM to 1:30 PM
Dissolved oxygen (DO) in the marine ecosystem is a factor that impacts not only the quality of the water but also the health of marine life. Low oxygen in the water can lead to hypoxic conditions, which are harmful and can result in the fatality of marine organisms. The levels of DO influence primary productivity and respiration. We use chlorophyll to help us reach an estimated amount of primary productivity that is in that specific area. This study took place in Possession Sound, WA, which has rich biodiversity and is a main freshwater source from the mouth of the Snohomish River. In this study, we collected profiles of DO and chlorophyll along a longitudinal transect from the field sites of Mount Baker Terminal to Buoy in Possession Sound. Looking at data like this we are able to observe what’s happening around the course of a specified tracked area, which we can then compare to areas with different parameters or in relation to other data that has been recorded. We also looked at their correlations with salinity and temperature. With this study, we are hoping to come across direct trends that circle around these parameters and that can also be relative to spatial comparisons of the sites where our data was collected. This analysis will cover comparisons from the years before and the year after 2021, to establish concrete conclusions supported from the data over time. Learning about the DO qualities impacting organisms will allow us a further understanding of the health and productivity occurring in the ecosystem of the Possession Sound.
- Presenter
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- Thunder Lambright, Sophomore, Fish and Wildlife Management Biology, Everett Community College
- Mentors
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- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Josh Searle, Ocean Research College Academy, Everett Community College
- Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
- Session
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Session L-2B: Mars Above, Sea Below: Human Impacts Past and Future
- 12:00 PM to 1:30 PM
During the 2019/2020 recreational crab season, the Washington Department of Fish and Wildlife reported over 735,000 pounds of legal Dungeness crab harvested in Possession Sound and the Strait of Juan de Fuca. This enormous fishery relies on numerous variables to survive, including the essential factor, dissolved oxygen. Low levels of dissolved oxygen can lead to an increased risk of disease and suffocation for crabs during all stages of life. When dissolved oxygen levels drop below 2 mg/L, crustaceans, including crabs, do not have enough oxygen to survive. This is called hypoxia. While parts of Possession Sound have rarely had any recent experiences with hypoxia, research conducted by students at the Ocean Research College Academy (ORCA) indicates that levels of dissolved oxygen in Possession Sound have recently decreased. My research indicates this trend has been observed, along with an increase in the average annual temperature of Possession Sound, which can contribute to low dissolved oxygen levels. The connection between well-established historical trends of increasing ocean temperatures could introduce more concerns for shellfish such as crabs. My study explores the presence and abundance of crab zoea in Possession Sound and compares these data to trends of dissolved oxygen and temperature in Possession Sound over a 7 year period (2015-17 and 2019-2022). Dissolved oxygen data was monitored with YSI and EXO sensors while crab zoea were counted by my colleagues and I at ORCA. My research seeks to establish a correlation between dissolved oxygen and the presence of crab zoea that could be a critical tool in the management and prediction of future crab populations in this critical crab habitat.
- Presenters
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- Brianna Bonds, Sophomore, Math, Lake Wash Tech Coll
- Alex Gale
- Tucker Wilson
- Arohee Kumar, Freshman, Computer Science, Lake Wash Tech Coll
- Kwan Jie Lee, Sophomore, Mechanical Engineering AS-T, Lake Wash Tech Coll
- Mentor
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- Narayani Choudhury, Applied & Computational Math Sciences, Physics, Lake Washington Institute of Technology, Kirkland
- Session
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Session L-2C: Engineering Solutions - From Atomic to Anatomic
- 12:00 PM to 1:30 PM
The design of quantum computers using Nitrogen vacancies in diamond has renewed interest in providing a microscopic understanding of the properties of the various allotropes of carbon. Here we visualized the crystal structure and electron densities of diamond, graphite, and fullerene to understand the novel structures and bonding in these materials. Using vector calculus-based methods, we computed the bond lengths and bond angles of diamond, graphite, and fullerene. While diamond exhibited sp3 bonding, both graphite and fullerene revealed sp2 bonding. These key changes in structure and bonding gave rise to important differences in their brightness, hardness, electrical conductivity, etc. We computed the adjacency matrix of fullerene and used that to understand the network connectivity. These studies provided an atomic level understanding of the structure, bonding, adjacency matrix, and network connectivity in these materials which form essential inputs and aid in the design of quantum computers.
- Presenter
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- Cherry Leung, Senior, Bioen: Nanoscience & Molecular Engr Mary Gates Scholar
- Mentors
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- Jennifer Davis, Bioengineering
- Abigail Nagle, Bioengineering
- Session
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Session L-2C: Engineering Solutions - From Atomic to Anatomic
- 12:00 PM to 1:30 PM
Hypertrophic cardiomyopathy is a disease affecting millions of people worldwide, characterized by thickened heart tissue, which makes pumping difficult for the heart. Since the restructuring of the heart is influenced by remodeling at the cellular level, the overall goal of the project is to investigate the mechanics of how cells sense tension in their environment and its relationship to regulating cell remodeling. The direction in which sarcomeres, the basic contractile unit in the heart, are added influences the shape of the cells and consequently the shape of the overall heart. To study this relationship, it is necessary to visualize the sarcomeres for correlating acquired tension data from FRET sensors. By attaching a fluorophore to a sarcomeric protein such as alpha-actinin, it is possible to visualize sarcomeres using fluorescent microscopy. For this project, I developed a blue fluorescent protein (BFP)-tagged alpha-actinin plasmid through molecular cloning techniques. I used restriction enzymes and PCR to isolate and amplify the genes of interest from a different plasmid, then used Gibson Assembly to insert the genes into a plasmid containing ampicillin resistance to construct the final BPF-tagged alpha-actinin plasmid. Preliminary results showed successful expression of the transiently transfected BFP construct in cardiomyocytes. The next steps are to optimize the transfection for higher efficiency, adapt an existing data analysis pipeline for analyzing sarcomere dynamics, and develop a set of parameters for efficient image acquisition. Many existing therapies for hypertrophic cardiomyopathy only address symptoms but do not solve the underlying issue of systolic dysfunction. Rather than taking a genetic or biochemical approach, which can be difficult to develop, this research project focuses on the mechanical interactions in the heart and studying the contractile forces may yield more insight into this disease and build the informational foundation for developing future therapies to prevent or treat hypertrophic cardiomyopathy.
- Presenter
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- Abdul Muhsin Hameed, Freshman, Undecided (interest in medicine), Bellevue Coll
- Mentor
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- Sonya Remington-Doucette, Chemistry, Environmental Science, Bellevue College
- Session
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Session L-2C: Engineering Solutions - From Atomic to Anatomic
- 12:00 PM to 1:30 PM
The construction sector has always had a significant influence on CO2 footprints in a given area (Pomponi, 2021). However, there are no recent studies quantifying the effect of construction activities on localized CO2 concentrations. Previous research conducted in the early 1990s has shown that construction increases CO2 concentrations by over 11% (Mazria, 2018). However, this research was done over three decades ago, and since then, CO2 concentrations have increased globally over 40%, necessitating updated measurements. My research group and I will investigate construction sites of various degrees in the Puget Sound region to determine the effect of construction activities on local CO2 concentrations. Preliminary data has shown an increase of 140 ppm (±8 ppm) in CO2 concentration when implementing a method of measuring CO2 concentrations in regions of high and low construction activity within urban, suburban, and rural areas. This research is key to understanding the health implications of the increased construction within the Puget Sound region and its effects on our ecosystems.
- Presenter
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- Hayden Gosnell, Freshman, Pre-Major, Bellevue Coll
- Mentor
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- Sonya Remington-Doucette, Chemistry, Environmental Science, Bellevue College
- Session
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Session L-2C: Engineering Solutions - From Atomic to Anatomic
- 12:00 PM to 1:30 PM
Since the beginning of the COVID-19 outbreak in 2020, many students have participated in online learning. Online students spend many hours every day studying at home in indoor spaces that lack ventilation and may have hazardous air quality. Prior research conducted by Tyler Jacobsen et al, (2019) reveals that CO2 concentrations over 1,000 parts per million (ppm) can increase physiological stress and lower cognitive abilities. The goal of this project was to determine if the CO2 levels in the at-home study environment of a student conducting online learning are higher than those of a student conducting in-person learning during study times. I predicted that if a student participates in online learning, then the CO2 levels in their study environment will be higher than those in the study environment of a student conducting in-person learning during school hours (8 am-3 pm), but the levels will be similar during homework hours (4 pm-5 pm). A CO2 air monitor collected data in the study rooms of an online learning student and an in-person learning student. Over several days, I recorded data every hour from 8 am to 5 pm, resulting in a time series showing CO2 concentrations throughout a school day. Preliminary data reveals that the online student’s room consistently exceeds 1,000 ppm and varies greatly throughout the day, while the in-person student’s room remains below 1,000 ppm until they arrive home at 4 pm, at which point levels increase significantly. I only observed two locations during this quarter-long research study in General Chemistry and I need to collect data at more locations to determine if this study’s findings are representative of online learning versus in-person learning as a whole. Findings may be useful to educators when they are deciding if online education is a viable option for students in the future.
- Presenter
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- Devon Bryn Wilson-Gorsuch, Junior, Pre-Sciences
- Mentors
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- Ben Harrison, Pathology
- Daniel Promislow, Biology, Pathology, University of Washington School of Medicine
- Session
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Session L-2C: Engineering Solutions - From Atomic to Anatomic
- 12:00 PM to 1:30 PM
Recently, the Promislow lab found that levels of metabolites in the carnitine pathway can be used to estimate age in the fruit fly, Drosophila melanogaster. This ‘metabolite clock’ not only predicts an individual’s age, but also shows that when an individual’s predicted age is older than its chronological age, it has a higher mortality rate than other flies its age, and vice-versa. The carnitine pathway is required for energy production via fatty acid oxidation, for which carnitine also removes cellular waste products, and which may influence aging. I hypothesized that higher levels of carnitine would be associated with a longer lifespan, sustained by ongoing energy production and reduced cellular toxin accumulation. To test the effect of the carnitine pathway on fly aging, I measured the lifespan of flies while either supplying additional carnitine, or treating with the carnitine biosynthesis inhibitor etomoxir. I expect flies treated with supplemental carnitine to live longer than control flies, and that etomoxir-treated flies will live shorter than control flies. Approximately 125 female Drosophila melanogaster were assigned to food vials in each condition, plus a control condition that lacked added carnitine or etomoxir. I recorded deaths every two days, transferring remaining flies to fresh vials. Once all flies are dead, I use survival analysis to determine if either treatment affects lifespan, thus testing for a role of the carnitine pathway in fly mortality. Should the results support my hypothesis, I may explore the role that fatty acid oxidation has in aging, or to what degree the metabolome clock is affected by manipulation of the carnitine pathway.
- Presenter
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- Amanda Lin Chen, Senior, Biology (Molecular, Cellular & Developmental), Biochemistry
- Mentors
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- Jose Garcia, Medicine, VA PSHCS, Univ of Washington
- Haiming Kerr, Medicine
- Session
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Session L-2D: Clinical and Biomedical Sciences
- 12:00 PM to 1:30 PM
Cachexia is a debilitating syndrome that accelerates muscle and fat wasting, affecting up to 80% of cancer patients with no current effective treatment. This condition is associated with weakness, fatigue, and poor tolerance to chemotherapy. Recently proposed as a therapeutic option due to its anabolic effects on preserving muscle and adipose tissue, ghrelin has been reported to attenuate Lewis Lung Carcinoma (LLC)-induced weight loss and lipolysis, also partially regulated by its only known receptor growth hormone secretagogue receptor (GHSR-1a). Tumor-induced lipolysis is associated with an alteration of substrate utilization. However, the extent to which these effects of ghrelin relate to substrate utilization (lipid oxidation and carbohydrate oxidation, LO and COX) remains unclear. This project seeks to determine if ghrelin’s effect on LO and COX in the LLC-induced cachexia model is dependent on GHSR-1a. Adult male C57BL/6J GHSR-1a knockout (KO) and wild-type (WT) mice were treated with or without LLC tumor, then injected with vehicle or ghrelin (0.8 mg/kg). Metabolic parameters were evaluated by the Comprehensive Lab Animal Monitoring System, in which I analyzed LO and COX (calculated mean values and performed statistics). Tumor implantation led to an increase in LO and a decrease in COX in tumor-bearing mice. GHSR-1a KO mice had a greater increase in LO compared to WT, highlighting the receptor’s essential role in maintaining normal levels of LO during cachexia, with no genotype effect for COX. Ghrelin did not prevent the LLC-induced response regardless of GHSR-1a expression, hence its mitigating effects for lipolysis in cachexia are not dependent on the regulation of LO or COX. In conclusion, GHSR-1a plays a role in modulating LO in tumor-induced cachexia, and these effects are independent of ghrelin. More studies are needed to further characterize the pathways involved, including alternative receptors of ghrelin or its adjacent mechanisms.
- Presenter
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- Niv Bhide, Senior, Microbiology
- Mentor
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- Yongdong Zhao, Pediatrics
- Session
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Session L-2D: Clinical and Biomedical Sciences
- 12:00 PM to 1:30 PM
Juvenile Idiopathic Arthritis (JIA) is the most common rheumatic disease in children. It causes joint swelling and stiffness and can last for months to years. Current methods to screen for JIA include Magnetic Resonance Imaging (MRI) and Musculoskeletal Ultrasound, both of which are often time-consuming and expensive. Using our developed thermal imaging algorithm, the ability to screen for JIA would become more accessible, affordable, and less time-consuming to kids and their families. The goal of our study was to determine if using a smartphone-attached thermal camera was reliable for image detection of arthritis in children. We also wanted to test the effect that physical activities, such as walking, would have on lower extremity temperature data within our imaging algorithm. Using an industrial-grade thermal imaging camera, we took thermal images of the lower extremities from the anterior, posterior, medial, and lateral views. We also repeated this using the smartphone-based thermal imaging camera. The temperature data was extracted from the thermal images and analyzed for temperature fluctuations in the regions of interest. Even though the smartphone-attached camera had lower resolution and less precision than the industrial-grade camera, both performed well in their sensitivity and specificity to detect the inflamed joints compared to the common standard of doing a physical joint exam. In addition, the cohort which performed physical activity demonstrated significant temperature changes which were consistent over time and did not return to pre-activity levels. The results of this study show potential for faster and more accessible JIA imaging platforms in the future.
- Presenter
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- Joanne K Liu, Senior, Bioengineering Undergraduate Research Conference Travel Awardee
- Mentor
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- Mindie Nguyen, Medicine, Stanford School of Medicine
- Session
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Session L-2D: Clinical and Biomedical Sciences
- 12:00 PM to 1:30 PM
Liver transplantation (LT) is the only curative treatment for advanced chronic hepatitis B (CHB), however, these patients are at significantly higher risk of developing chronic kidney disease (CKD) post-LT. Therefore, it is important to understand the renal impacts of life-long antiviral therapies for CHB, commonly including tenofovir alafenamide (TAF), tenofovir disoproxil fumarate (TDF), and entecavir (ETV). To study this, I conducted a retrospective cohort study in collaboration with five multinational LT centers of 298 LT recipients who received TAF (n=112), TDF (n=51), or ETV (n=135) monotherapy for at least 12 months post-transplant. To measure changes in renal function, I analyzed CKD stage and estimated mean glomerular filtration rate (eGFR, mL/min/1.73 m2) data, where higher eGFR indicates better renal function. I found that at baseline, TAF patients compared to TDF and ETV patients were older (P=0.02), had higher rates of hypertension (P=0.048), and had lowest eGFR (P=0.01). However, from baseline to the 24th month of follow-up, the proportions of patients with normal renal function (CKD stage 1) and mild renal impairment (stage 2) remained stable for the TAF and TDF groups but significantly shifted towards poorer renal function in the ETV group (CKD stage 1: 35.56% to 18.18%, P=0.002; stage 2: 35.29% to 49.59%, P=0.006). TAF patients also had the smallest decline in mean eGFR from baseline to the 24th month of follow-up (1.46 vs. 2.97 (TDF) vs. 4.57 (ETV)). In conclusion, I found that patients treated with TAF had baseline characteristics correlated with poorer renal function, however, their CKD stages remained stable and had the smallest eGFR decline throughout follow-up. These trends reveal an interest in further investigating the renal impacts of TAF treatment in post-LT patients.
- Presenters
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- Youssef Beltagy, Senior, Computer Engineering (Bothell)
- Sarah Panther, Fifth Year,
- Mentors
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- Pietro Paparella, Engineering and Mathematics (Bothell Campus), University of Washington Bothell
- Pierre Mourad, Engineering & Mathematics
- Wayne Kimura, Electrical Engineering (Bothell Campus), Science, Technology, Engineering & Mathematics (Bothell Campus), UW Bothell
- Session
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Session L-2D: Clinical and Biomedical Sciences
- 12:00 PM to 1:30 PM
Asthma, a chronic disease of the lungs, affects approximately 262 million people and caused 461,000 deaths worldwide, just in 2019. Asthma can result in frequent emergency department visits, hospitalizations, and premature deaths. To effectively manage their condition, asthma patients need to accurately track their medication usage. But it is a manual task, prone to human error. To improve the lives of asthma patients, we built a smart asthma-inhaler system to automatically record patients' use of medication. Our system is made of a Bluetooth-enabled inhaler, a smartphone app, and a Bluetooth-enabled wearable sensor. The inhaler records when the patients took their medications and sends the data to the smartphone app. The app retrieves weather information including temperature, humidity, and Air quality index from the web. The wearable sensor measures the particulate matter in the air surrounding the patient when the inhaler was used. This system should allow patients to accurately record when and why they used their inhalers. Physicians can then use this information to better diagnose and treat asthma. We hope to marketize this system to mitigate the damages of asthma.
- Presenter
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- Jasper Balinas, Sophomore, Computer Science, Shoreline Community College
- Mentor
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- Lauren Bryant, UW Libraries, Shoreline Community College
- Session
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Session L-2D: Clinical and Biomedical Sciences
- 12:00 PM to 1:30 PM
This research analyzes how vagal nerve stimulators have been used for treatment of Crohn’s Disease through literary review of existing research in order to assess what is working and begin to remedy what can be improved in order to increase the likelihood of remission for patients. The analysis of this research includes assessment of the design of current vagal nerve stimulators, materials used, algorithmic architecture behind the device, as well as methods of testing and measuring results. The methods used to determine success of remission include patient surveys, measurements of mucosal metabolites, assessment of cytokine levels, and others. Could vagal nerve stimulators be improved to work better with the brain, and therefore increase the remission rate to nearly absolute? From the analysis, it seems so -- however, there are enhancements that need to be made in materials, technology, and communication. The continuing advancement in vagal nerve stimulation therapy could potentially lead to a consistent, low-risk, accessible cure for Crohn’s Disease.
- Presenter
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- Emily Gong, Junior, Pre-Sciences UW Honors Program
- Mentors
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- Lauren Zawacki, Dermatology, University of Washington School of Medicine
- Paul Nghiem, Dermatology, Medicine
- Session
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Session L-2D: Clinical and Biomedical Sciences
- 12:00 PM to 1:30 PM
Merkel cell carcinoma (MCC) is a rare skin cancer with a high propensity for recurrence. Persons with chronic immunosuppression have a higher risk of developing MCC and a more aggressive disease course. Immunotherapy treatment enhances the immune system’s ability to fight MCC and is associated with improved disease-specific survival. However, the immunotherapy efficacy in immunosuppressed MCC patients is not well categorized. This study explores and aims to compare differences in immunotherapy efficacy between different forms of immunosuppression, and between immunocompetent versus immunosuppressed MCC patients. In this project, I determined the patient cohort from a Seattle-based prospective registry of 1,529 MCC patients and identified 36 patients treated with immunotherapy and who had chronic immunosuppression. I collected treatment response data from medical records, and analyzed the results. Of the 36 patients, 13 patients (36%) had a complete response (CR), 3 patients (8%) had a partial response (PR), and 20 patients (56%) had progressive disease (PD). Disease progression and survival status varied greatly among different types of immunosuppression. Five types of chronic immunosuppression were represented in these 36 patients and were evaluated for an objective response (CR or PR): chronic lymphocytic leukemia (CLL, 3/13, 23%), autoimmune disorders (AD, 3/9, 33%), solid organ transplant (SOT, 2/4, 50%), HIV/AIDs (2/3, 67%), and other hematologic malignancies (OHM, 6/7, 86%). In comparison, in a study of immunocompetent patients, 28 of 50 (56%) had objective responses to immunotherapy. Toxicities were also high in immunosuppressed patients, as 9/36 (25%) patients stopped treatment due to toxicities. Immunotherapy efficacy in patients with chronic immunosuppression appears to be dependent on the type of immunosuppression. While there is reason for optimism for patients with certain types of immunosuppression, MCC treatment for patients with CLL remains a major concern.
- Presenter
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- Claire Kane, Fifth Year, Nursing
- Mentor
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- Ira Kantrowitz-Gordon, Family and Child Nursing
- Session
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Session L-2D: Clinical and Biomedical Sciences
- 12:00 PM to 1:30 PM
Women fare significantly worse than men when using web-based alcohol interventions. These findings in the civilian population are mirrored among US veterans as evidenced by women veterans experiencing worse outcomes following completion of the VA’s web-based alcohol intervention “VetChange” compared to their male counterparts. Research is needed in order to inform adaptations to the “VetChange” web-based alcohol intervention that improve outcomes for women veterans. This project utilized a “think-aloud” methodology to collect data from women veterans with substance use disorder (SUD) and clinicians treating women veterans with SUD about their opinions of the current “VetChange” program. In accordance with “think-aloud” methodology, researchers observed participants’ use and impressions of VetChange during a period of unstructured access to the website, followed by a semi-structured qualitative interview to gather overall impressions of VetChange and what changes they recommend. Expected results include the ways in which the web-based intervention can improve two specific outcome measures, situational confidence and recovery-related coping behaviors, in order to adequately address women veteran’s SUD. The protocol and eventual data collection are of critical importance given that increasing numbers of women veterans are seeking SUD treatment and women veterans are dying at disproportionately younger ages than their civilian counterparts. Moreover, findings from this project can inform effective web-based interventions for women in the civilian population.
Oral Presentation 2
3:45 PM to 5:15 PM
- Presenter
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- Em Chan, Senior, Art History Mary Gates Scholar
- Mentors
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- Lydia Heberling, Comparative History of Ideas, University of Washington, Seattle
- Maria Elena Garcia, Comparative History of Ideas
- José Antonio Lucero, Comparative History of Ideas, Jackson School of International Studies
- Adam Warren, History
- Session
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Session O-2A: Movement, Memory, and Matter
- MGH 228
- 3:45 PM to 5:15 PM
This narrative web experience invites readers to rethink their own relationships with the material world. The piece frames materials within Western monumental structures — the marble pedestal, the bronze figure, and the “living” rock carving — not as inanimate instruments in colonial systems, but as living victims and actors within those very systems. I examine how these materials are treated within the Western monument-making process through alternate frameworks—namely Neolithic, Queer and Indigenous material theories—in order to expose the violences inherent in Western material theory and practice. This piece, structured in a series of web pages, leads the reader through a research narrative strung together from conceptual images, academic text, and instructions for a tactile activity. By highlighting these non-Western and anti-colonial material lenses, I explore how the critical lenses we choose to apply to examine monumental materials can act to liberate them from the inanimacies inflicted upon them and highlight the resistances they mount against monumentalization, prompting a further “dematerialization” of the Western monument. This liberation will allow us rethink the physical and ideological standards that have been established for monumentality and to ideate alternate material forms for future monuments that do not contain, impose, and idolize such colonial violences.
- Presenter
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- Alexander William Betz, Senior, Art History, Biochemistry UW Honors Program
- Mentor
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- Juliet Sperling, Art History, School of Art + Art History + Design
- Session
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Session O-2A: Movement, Memory, and Matter
- MGH 228
- 3:45 PM to 5:15 PM
In Winslow Homer’s 1892 Coast in Winter, a single skeleton tree stands upon a snow-bitten shore amid the crashing waves of the North Atlantic. After a celebrated career painting at the center of the American art scene, Homer would spend the last years his life on the remote coast of Maine. Captured by this environment, Homer’s paintings from this period became less and less populated with human figures until he removed them from the frame entirely. The paintings that come from this final chapter in Homer’s body of work have come to be known as his late marines and have been hailed by art critics and historians as his zenith. And yet, something about these works has remained elusive. Due to a seeming lack of human representation within the late marines, these paintings have escaped the grasp of description. However, there may be something deeply human about these oceanscapes after all. This essay proposes a new point of entry into Homer’s depiction of the crashing waves of Prouts Neck, Maine through insights offered by the study of Biochemistry, the study of life’s creation from inanimate matter. By tracing how the fledgling field of biochemistry emerged in tandem with Homer’s challenging late work, it contributes to ongoing art historical efforts to situate his art within the scientific developments of the time. Scientists at this moment were beginning to reckon with the understanding that the complex molecules that govern life’s mechanical systems operate according to the very same physical and chemical laws that define the nonliving universe. The natural forces of the North Atlantic and the mortal experience captured by Homer while standing upon its shores ebb and flow into one another as a swirling tide.
- Presenter
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- Joshua Swynenburg, Senior, Russian Language, Literature, & Culture, International Studies
- Mentor
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- Sasha Senderovich, Slavic Languages & Literatures
- Session
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Session O-2A: Movement, Memory, and Matter
- MGH 228
- 3:45 PM to 5:15 PM
In the 1930s, Soviet ethnographic films often depicted the Sovietization of "the Orient," or the non-Slavic territories of the Soviet Union. The films, serving as propaganda, portrayed "the Orient" as undeveloped and in need of Soviet values. However, by the late 1960s and early 1970s, Soviet motion pictures discarded the propagandistic motive and portrayed the cultural assimilation of these territories satirically. Both the 1930s and 1960s-1970s -though the effects of the films during each era contradict each other- employ museum displays of the peoples of "the Orient" to gauge their assimilation into Soviet society. The latter era satirizes the exhibits of the earlier ethnographic films, ultimately portraying Sovietization as unavailing. I analyze Motyl's White Sun of the Desert (1970), which highlights the liberation of Central Asian women and Gaidai's Kidnapping, Caucasian Style (1967), a comedy about bride kidnapping in the Caucasus. Specifically, I examine how the two films utilize museum exhibits to comically stage "the Orient's" apparent need for Sovietization. In order to uncover why the films utilized exhibits, I compare these films to Soviet ethnographic films from the 1920s-1930s, including Vertov's Three Songs about Lenin (1934) and Kalatozov's Salt for Svanetia (1930). In my analysis, the films White Sun of the Desert and Kidnapping, Caucasian Style serve as docents for similar exhibits to those in the ethnographic films of the 1930s. Instead of highlighting the achievements of Sovietizing "the Orient," however, the films mock the ethnocentrism of the earlier films by portraying the orientalist tropes as enduring against Soviet cultural influences. By satirizing "the Orient's" cultural assimilation, the films contend that Sovietization was far from achieved. Ultimately, examining how the films of the 1960s-1970s satirized the attempt to fuse "the Orient" with Soviet culture prompts further analysis of how the narrative about its achievements contrasts with reality.
- Presenter
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- Haley Rundorff, Senior, Biology (Physiology), Dance UW Honors Program
- Mentor
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- Hannah Wiley, Dance
- Session
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Session O-2A: Movement, Memory, and Matter
- MGH 228
- 3:45 PM to 5:15 PM
As a dancer, I know that emotion and movement have a reciprocal relationship. I've been dancing for more than half of my life, and while I've felt my mood change because of the choreography that I'm performing, I've also noticed instances when my feelings alter my movement. However, because the brain is so poorly understood in comparison to most other human organs, especially when it comes to complex subjective experiences such as emotion, the physiological nature of this relationship is very poorly understood. In this project, I will be investigating the reciprocal physiological relationship between movement and emotion in the human body. The first component of this project is primarily focused on writing a literature review. The existing relevant literature has covered so many otherwise disconnected areas of inquiry that tying them together in this foundation is crucial. The second part of the project is an exploration of applying my findings to movement. I will generate a series of improvisational scores, inspired and directed by my literature findings, that will aim to supplement the empirical with embodied research. The experience of dancing and observing these scores will be in dialogue with my scientific research to influence the direction and application of both. I'm expecting to find conscious and unconscious connections between emotion and memory in the association of bodily movements and states with mental states; however, I'm also expecting it to be difficult for a dancer to identify many of their associations because they are complex, multi-faceted, and not entirely conscious. The findings of this study can be used to make recommendations for future research by identifying areas of unknowns as well as inform how dance performers and teachers approach emotional investment onstage and in the classroom.
- Presenter
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- Sophia Viola, Senior, Communication UW Honors Program
- Mentor
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- Kristina Scharp, Communication
- Session
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Session O-2B: Current Affairs Through Multiple Lenses
- MGH 234
- 3:45 PM to 5:15 PM
Despite extensive research addressing the distress surrounding romantic breakups, divorce, and family estrangement, hardly any scholarship has addressed the experience of friendship breakups. Friendship breakups occur when at least one person in a friendship voluntarily and intentionally decides to distance themselves from the other person because of a perceived negative relationship. These breakups, like involuntary distance from any close relationship, can be rife with stress and turmoil, but also go unacknowledged and unsupported. I am framing my study by the Communication Theory of Resilience. The purpose of this study is to understand the difficulties people experience with breaking up with a friend and how they manage those difficulties to enact resilience. When people experience difficulties, they often enact five resilience processes: (a) crafting normalcy, (b) foregrounding productive action while backgrounding negative feelings, (c) affirming identity anchors, (d) maintaining and using communication networks, and (e) putting alternative logics to work. Crafting normalcy is creating new rituals/routines; foregrounding action illustrates how people move forward; affirming identity anchors is grounding the self; maintaining networks corresponds to garnering support; alternative logics is a sense-making process to see things differently. Using data from narrative and semi-structured interviews conducted via Zoom, and based on a thematic co-occurrence analysis, this study will reveal common difficulties (i.e., resilience triggers), resilience responses, and whether particular resilience processes co-occur with specific difficulties. My findings from this research will illuminate the experience of friendship breakups and their aftermath with the goal of helping distressed people better cope with a significant relationship loss. I am in the process of conducting interviews with participants that must be 18 years of age or older, can read and write in English, and have experienced a friendship breakup. By the time of the symposium I will have 10-15 interviews completed and a draft of my thesis.
- Presenter
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- Chris Wagner, Senior, Economics, Political Science
- Mentors
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- Rebecca Thorpe, Political Science
- Ryan Goehrung, Political Science
- Session
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Session O-2B: Current Affairs Through Multiple Lenses
- MGH 234
- 3:45 PM to 5:15 PM
The national sense of uncertainty and chaos surrounding the Coronavirus pandemic has been compounded by the spread of COVID-19 misinformation on social media. This has fostered an Infodemic as users struggle to separate fact from fiction in their news feeds and develop conflicting perceptions of reality. This project studies the relationship between the exposure to COVID-19 (re)tweets with misinformation or questionable levels of veracity and governmental trust during the Coronavirus pandemic. I create a continuous User Engagement Index to compare the differences in user engagement for COVID-19 twitter posts that were created/shared by influencers on the right, who tend to be problematic as they have a history of sharing or dog whistling COVID-19 misinformation, to influencers on the left who tend to post neutral content in terms of veracity. Furthermore, I created an ordinal Public Confidence index in which I compare changes in the User Engagement index for posts from the right and left to changes in public opinion survey data to gauge the levels of trust in government institutions. I conduct two separate multivariate regression analyses to evaluate the relationship between the User Engagement Index and a Public Confidence Index. I then assess whether the spread of COVID-19 (re)tweets that are likely epistemically problematic negatively impacts an exposed user’s trust in government. I theorize that exposure to misinformation fosters political cynicism and epistemic confusion, which both fuel a decline in public trust. The findings of this study will help us better understand the cultivation of polarized perception gaps that may inhibit collective action and a unified response during times of crisis and uncertainty. This erodes trust and undermines democratic governance and institutions.
- Presenter
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- Ellie Scot Kerbs, Senior, Law, Societies, & Justice
- Mentor
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- Angelina Godoy, Law, Societies, and Justice
- Session
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Session O-2B: Current Affairs Through Multiple Lenses
- MGH 234
- 3:45 PM to 5:15 PM
The U Visa was introduced by Congress in 2000 as a form of relief for undocumented victims of violent crime. To qualify for the U Visa, an applicant must submit an I-918B Certification, signed by a local legal authority, certifying that the applicant has been helpful in the prosecution of the crime to which they are victim to. However, in some localities throughout Oregon and the United States at large, the efforts and interests of local law enforcement are entangled with those of federal immigration enforcement. Thus, for undocumented individuals, the act of contacting a local legal agency may present daunting consequences. This study explores the question—how does a collaborative relationship between local law enforcement and federal immigration enforcement affect the extent to which U Visa protections are accessed by undocumented individuals in the state of Oregon? The purpose of this study is to assess the dichotomous relationship between local policing practices and forms of protective legislation offered to immigrants at the federal level. I hypothesize that fewer U Visa applications are successfully submitted in areas in which local law enforcement maintains a collaborative relationship with federal immigration enforcement, as I anticipate that undocumented individuals are ultimately deterred by the risk of deportation. To test this hypothesis, I compare the rate at which U Visa Certification requests are received and subsequently, approved and/or denied throughout the 36 counties of Oregon. The findings of this study will make clear how local policing practices may affect and ultimately, inhibit federally-offered forms of protective legislation. By understanding the ways in which undocumented individuals are systemically barred from mobilizing legislation, we may revise legal language and redefine local policing practices to make the U Visa more accessible and ultimately, better support immigrant communities.
- Presenter
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- Spencer Onstot, Senior, Community Psychology (Bothell), Society, Ethics, & Human Behavior (Bthl) NASA Space Grant Scholar, Undergraduate Research Conference Travel Awardee
- Mentor
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- Deanna Kennedy, Business Administration (Bothell Campus), University of Washington Bothell
- Session
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Session O-2B: Current Affairs Through Multiple Lenses
- MGH 234
- 3:45 PM to 5:15 PM
In a world where the pace of change is increasing drastically, it has become less feasible to complete tasks alone. The skill of being able to communicate and work in a team has become valuable, if not necessary. Working with others, however, can be challenging for many reasons. One reason, which affects project teams across all fields, is when one team member worries that the deadline is close (e.g., “the deadline is only a week away!”), while another team member believes the deadline is further out (“we still have an entire week to work on it!”). This disparity occurs because the team members have different Temporal Distance Perceptions (TDP) of the deadline. This project seeks to analyze how these individual differences in team members’ TDP affects the team’s performance. Evaluating divergent TDP can improve team project planning, helping them work better together. In this project, I contacted faculty members from University of Washington Bothell’s School of Business to gather data from 11 undergraduate classroom teams, working on a quarter-long team project in their courses. The duration of this task allows them to establish their own perception of the deadline’s temporal distance. I disseminated a survey, comprised of only validated scales, to the project teams one week before the project’s due date. The procedures used for data collection, which included a consent form that implied use of their performance on the project, were submitted for review and approved by the Institutional Review Board prior to survey dissemination. I compared an individual team member’s TDP with the rest of the team’s individual TDP to determine the team’s collective TDP. Then I compared this collective TDP with their performance, determined by the team’s grade earned. I expect to find a positive correlation between collective TDP and output performance.
- Presenter
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- Marika Margaret Bierma, Senior, Microbiology, Comparative History of Ideas UW Honors Program
- Mentor
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- Amanda Friz, Communication
- Session
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Session O-2B: Current Affairs Through Multiple Lenses
- MGH 234
- 3:45 PM to 5:15 PM
As we enter year three of the COVID-19 pandemic, the news is still awash with daily updates. For many, terms such as ‘frontline workers’ have become part of mainstream vocabulary signifying the work of medical personnel during the pandemic. Although it may be common terminology now, the phrase ‘frontline worker’ carries a long rhetorical history rooted in military medicine in the Philippines during the early 20th century. This term stems from a broader biomedical ‘war on disease’ metaphor that has pervaded pandemic rhetoric for over one hundred years. Given the historical context and the widespread use of this rhetorical tool, my research explores the following questions: How does the use of the ‘war on disease’ metaphor within mass media publicly valorize ‘frontline workers’ during the COVID-19 pandemic while also hiding the lack of safety measures taken to protect these individuals from disease? How does the history of ‘war on disease’ rhetoric and the use of this metaphor in the context of a modern pandemic continue to perpetuate the ‘heroic sacrifice’ narrative and the use of ‘magic bullet solutions’ within the medical field? What are the trends in the characterization of ‘frontline workers’ in newspaper articles throughout the U.S. and among different time periods of the pandemic? How do these rhetorical trends produce real-life disparities across forms of difference, especially race, gender, class, and ability? Using media, discourse, and historical analyses and focusing on medical rhetoric and history of rhetorical tools frameworks, my research explores the trends in the use of the term ‘frontline workers’ in prominent COVID newspaper articles from different regions of the U.S. and across different time points throughout the pandemic. I also analyze how the history of the ‘war on disease’ metaphor contributes to those rhetorical trends, and the broader social implications for those deemed ‘frontline workers’.
- Presenter
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- Georgia Willow Mauney, Senior, Communication, History UW Honors Program
- Mentor
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- Kirsten Foot, Communication
- Session
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Session O-2B: Current Affairs Through Multiple Lenses
- MGH 234
- 3:45 PM to 5:15 PM
Societies have a range of complex problems that are unable to be solved by the efforts of one individual or organization. The complexity of these problems necessitates collaboration between organizations from multiple sectors of society to generate positive, measurable changes in the problem arena, called outcomes. Despite outcomes being a crucial element of collaborative success, it is difficult to link the actions of collaboration to outcomes in the problem area it is trying to address. Ongoing research has sought to connect elements in the collaborative process of multisector collaborations to successful outcomes. What has been missing from this academic discussion is the perspective of evaluators who are brought in to assess the success of collaborations. This study explores how evaluators from the United States and Canada view success in multisector collaborations. The research questions guiding this exploratory study are: a) How do evaluators link success within a collaboration, through its processes and outputs, to outcomes in the problem area? and b) How do evaluators approach evaluating collaborative success depending on the stage of development a collaboration is at? To answer these questions, I conducted twenty semi-structured interviews with expert evaluators via Zoom. I recruited the study’s participants through purposive sampling and referrals from other participants. I am currently analyzing the transcripts of the interviews, of which I am conducting a thematic analysis. By the time of the symposium, my analysis will be completed, and I will be ready to report my findings which will provide multifaceted answers to my research questions. Results of this study will help create a richer understanding of collaborative success and hopefully lead to new ways of optimizing evaluation.
- Presenter
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- Marleyna Kate Beene, Senior, Law, Societies, & Justice, Comparative History of Ideas
- Mentors
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- Arzoo Osanloo, Law, Societies, and Justice
- Nicolaas Barr, Comparative History of Ideas, University of Washington-Seattle
- Session
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Session O-2B: Current Affairs Through Multiple Lenses
- MGH 234
- 3:45 PM to 5:15 PM
Often in the language of law, individuals exist in the abstract. In immigration and criminal justice, the practical application of legal processes is undermined by relationships of power which create a hierarchy of access to law. In this project, I will define two populations, migrants and incarcerees, as surplus. Surplus populations are communities characterized by an enmity spearheaded by the state through persistent antagonistic rhetoric, and subsequently geographically separated and erased from society. My research is centered around the following question: how do frameworks of human rights ideology and racial capitalism explain the rhetorical and geographical construction of surplus populations? Through discourse and secondary data analysis, I investigate state policies passed in the United States and Australia regarding politics and practices of migration and incarceration as they relate to the antagonism and the removal of these populations. Next, I explore the relationship between these populations and the sites of separation (prisons and detention centers). Specifically, I will be looking at the separation geographies of three institutions: Guantánamo Bay Migrant Operations Center, Rikers Island Prison, and Manus Island Regional Processing Center. Guided by the analytical work of critical race scholars Achille Mbembe and Angela Davis, I reveal a pattern of societal removal, in which rhetoric manifests policy manifests disparate and oppressive corporeal geographical outcomes. With this pattern, the foundations of a global scale pattern become possible, embedded in historical racism and xenophobia. In conclusion, I suggest that these attitudes of oppression have become ingrained in legal doctrine and application in a way that is incurable by a human rights approach and subject surplus populations to undue overrepresentation behind bars. In reprieve, I use critical imagination to question the intrinsic nature of the nation-state and their borders, inspiring the possibility of long-term solutions outside these societal structures.
- Presenter
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- Claire Elizabeth Everett, Senior, Political Science UW Honors Program
- Mentors
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- Aseem Prakash, Political Science
- Yen-Chu Weng, Program on the Environment
- Session
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Session O-2C: Impacts of Public Policy on People Around the World
- MGH 238
- 3:45 PM to 5:15 PM
This research project seeks to understand resource management policy and its effectiveness in practice, especially as climate change exacerbates pre-existing scarcities. As a case study, this project examines two policies that attempt to manage water use in California– the Sustainable Groundwater Management Act (2014) and the Central Valley Water Project Improvement Act (1992). The former was chosen because it focuses on the regulation of groundwater, a resource that had yet to be overseen in California, and the latter was selected as it is one of the most recent pieces of notable legislation that sought to improve the sustainable management of surface water. By considering how effective the policies have been in regulating two important sources, it can provide insight into the current and prospective water situation in California. This project measures the effectiveness of these acts through the agricultural sector, given that the industry uses approximately 80% of the state’s water supply in a given year. Therefore, by measuring the growth of water intensive crops in the years following the passage of said legislation, we can better understand whether these acts were successful in curbing exorbitant water use. To measure growth, I record the acres harvested of almonds, walnuts, avocados, and wheat (as a control); I then translate this data into growth rate for each year and record the unit price for further understanding. After conducting the aforementioned methodology, this project finds that the Central Valley Water Project Improvement Act is significantly more effective in limiting the growth of thirsty crops, whereas the Sustainable Groundwater Management Act was found to have little impact.
- Presenter
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- Manqi Jiao, Senior, Geography: Data Science UW Honors Program
- Mentor
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- Kam Wing Chan, Geography
- Session
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Session O-2C: Impacts of Public Policy on People Around the World
- MGH 238
- 3:45 PM to 5:15 PM
When discussing racial tensions in the United States, the focus is usually on the relations between blacks and whites, and Asian perspectives are not included in racial discussions. This puts Asian Americans in a dilemma because both racial groups avoid identifying with them. I made two versions of the survey questionnaire. The English version was made by Google form and spread in the US. The target sample population are international students, immigrants, and Asian-born American. The Chinese version was made by Tencent form and spread in China. The target sample population is people who have never come to the US. The Tencent form collected the controlled sample data which are people who came to the US for zero years, and the Google form collected the dependent sample data which are people who stay in the US for different years. While doing the survey, I also conducted interviews. There are two versions of the interview questions. One is for international students and immigrants, and another is for American-born Asians. By visualizing on PowerBI, the percentage of change in the Anti-Asian hate crime rate in 2020, we can find that the largest growth was in New York which increase 833%. Only Washington DC has decreased in percentage which is -83% (Raw data from Center for the Study of Hate and Extremism). The relation between “time spent in the US” and “Asian/ Asian Americans" attitude toward Black Americans seems a little complex. When Asians first came to the US, they generally hold fears of unknown towards Black Americans, but as the time they stays in the US passed, they feel better than before with Black Americans. Asians also suffered more discrimination than they projected because the percentage of people who answered yes to the questions that “Asians are receiving discrimination” to have spent time in the United States is higher than the percentage who have never been to the United States. Asians are also not as indifferent to racial equality as other races are rumored to be. The percentage of Asians who support BLM is even much higher than that of whites and slightly higher than that of Latinos. It's just that Asians tend to express their thoughts in a relatively calm manner such as showing solidarity on social media and donating.
- Presenter
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- Kent Vo, Senior, Political Science, Law, Societies, & Justice
- Mentor
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- Ann Frost, Law, Societies, and Justice, Sociology
- Session
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Session O-2C: Impacts of Public Policy on People Around the World
- MGH 238
- 3:45 PM to 5:15 PM
The stress and uncertainty posed by infectious disease outbreaks generates intergroup social conflict. In communities with disparate distributions of power, one population may blame another for spreading the disease. This social scapegoating subsequently exacerbates existing economic inequalities, medical discrimination, and harmful stereotypes. Amidst power struggles, political elites can mobilize scapegoating as a tool to unify their support base around a common enemy. In the United States, Asian Americans frequently fell victim to epidemic scapegoating, from outbreaks of smallpox in the nineteenth century to the more recent SARS outbreak of the twenty-first century. During these previous health emergencies, Asian Americans became associated with disease and cultural backwardness. The negative perceptions of Asian Americans then translated into restrictive immigration and citizenship policies. The Coronavirus Pandemic renewed anti-Asian American xenophobia. In 2020 alone, reported hate crimes against Asian Americans increased 150 percent. Racist and Sinophobic language proliferated the internet and media. President Donald Trump and other prominent politicians began utilizing location-based labels for the coronavirus, such as China Virus, Chinese Flu, and Kung Flu. This research assesses whether these location-based labels perpetuates anti-Asian xenophobia. To do so, this research analyzes the transcripts of 163 public appearances made by Donald Trump in 2020. I examined the frequency and context of Trump’s location-based terms throughout the year and compared this with the percentage of hate crimes considered anti-Asian. The data suggests that Trump’s utilization of location-based terms correlated with a rise in anti-Asian hate crimes in the early months of the pandemic. Additionally, the data shows support for the fact that the upcoming election motivated Trump’s usage of these location-based terms. By illuminating the mechanisms through which the President incited anti-Asian xenophobia during the coronavirus pandemic, this research provides insight into how to prevent social scapegoating in future epidemics.
- Presenter
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- Estey Chen, Senior, Political Science, History: Empire and Colonialism UW Honors Program
- Mentors
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- Anand Yang, History
- Stephanie Smallwood, Comparative History of Ideas, History
- Session
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Session O-2C: Impacts of Public Policy on People Around the World
- MGH 238
- 3:45 PM to 5:15 PM
In October 1962, China and India waged a war to contest the demarcation of their shared border, a culmination of years of escalating hostilities between the two governments. One month later, after overwhelming the Indian military, the Chinese declared a unilateral ceasefire. By contrast, seven years earlier at the 1955 Asian-African Conference in Bandung, Indonesia, leaders from each country signed pledges for peace and mutual non-aggression. Speeches by Indonesian host and president Sukarno, Indian prime minister Jawaharlal Nehru, and Chinese foreign minister Zhou Enlai imparted on attendees, most of whom represented newly decolonized countries, a sense of cautious optimism for their collective advancement. However, the "Bandung spirit" dissipated by 1965, as evidenced by the cancellation of the Second Asian-African Conference in Algeria. While most scholars focus on the Sino-Soviet Split and 1965 Algerian coup to explain the Bandung spirit's rupture, I study the 1962 border war and failed mediation efforts by neutralist governments, like Indonesia, as evidence of the Asian-African alliance's early fracturing. Drawing from primary sources such as English and Indonesian language newspapers, Indian, Chinese, and Indonesian government documents, and the writings of Indian and Indonesian politicians, I argue that Indonesians advocated for a stricter definition, relative to Nehru, of anti-imperialism tinged with Asian nationalism. Indonesian leaders’ reluctance to defend Nehru, their partner at Bandung, demonstrate that the Sino-Indian War exposed ideological differences between India and Indonesia, thus facilitating the Bandung Spirit’s demise. By framing the war with the Bandung Conference, I explore how governments fall short of their lofty visions of anti-imperialism and perpetuate the nationalistic hierarchies they originally eschew.
- Presenter
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- Yean Kim, Senior, Economics, International Studies
- Mentor
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- Christopher Jones, Jackson School of International Studies
- Session
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Session O-2C: Impacts of Public Policy on People Around the World
- MGH 238
- 3:45 PM to 5:15 PM
Despite the significance of North Korea’s state ideology of Juche (translated as "self-reliance") on all aspects of life and policy in the country, scholars have generally neglected to cite ideology as a cause for nuclear weapons development. In this research, I explore how Juche affects nuclear weapons development through a text analysis of close to 10,000 pages of primary documents produced by North Korean leaders from 1980 to 2007, utilizing keywords related to Juche and nuclear weapons to identify relevant texts. In this study, I find that the Juche ideology is the primary way in which North Korea justifies its nuclear weapons development up to 2007. In particular, North Korea justifies its nuclear weapons through Juche in four ways through the Juche core pillars of political independence (jaju), economic self-reliance (jarip), loyalty to the leader, and self-reliance in defense (jawi). I also find that the relationship between Juche and nuclear development has evolved over the years (from theoretical foundations in the 1980s to justification of nuclear weaponry in the 2000s). This study has important practical implications as it shows that an important reason North Korea elected to pursue nuclear weapons development is because it feels that doing so is the only way to uphold the core values of the Juche ideology and preserve its independence. It also shows that a central mission of Juche and North Korean nuclear weapons is ensuring that the Kim dynasty continues to rule and to maintain their hereditary succession. This means that the North Korean nuclear logic is significantly different from other countries like China, Israel, Pakistan, and India where the operative factor is primarily the “national interest.” As previous denuclearization negotiations have mostly neglected this aspect, future negotiations may benefit from keeping this unique characteristic of North Korean nuclear weapons development in mind.
- Presenter
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- Anya Gavrylko, Senior, Environmental Studies, Community, Environment, & Planning
- Mentor
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- Ken Yocom, Landscape Architecture, Urban Design & Planning
- Session
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Session O-2C: Impacts of Public Policy on People Around the World
- MGH 238
- 3:45 PM to 5:15 PM
Environmental justice is a critical framework to engage with when working within urban communities, as all work done in the built environments directly impacts both people and the natural environment. New practices are still being established within urban planning, community development, and community organizing to support effective and meaningful environmental justice efforts. This research seeks to understand how urban communities can work towards environmental justice by increasing access to green space in historically underinvested communities, focusing on Seattle specifically, without catalyzing gentrification and resulting displacement. In order to answer this question, I made an annotated bibliography for 10 sources related to environmental gentrification and displacement prevention as well as conducting 7 expert elicitation interviews. The interviews were 45 minutes long, conducted over Zoom with professionals in the greater Seattle area who had expertise in park planning, community development, community organizing, and environmental justice. The interviews were recorded and transcribed, and then qualitatively analyzed through a grounded approach to thematic analysis by creating codes for statements related to environmental justice, environmental gentrification, and practices to prevent environmental gentrification which were then used to extrapolate overarching themes, as well as important individual perspectives. This research both supports the understanding of environmental gentrification as an environmental justice issue, and presents practices for community organizations, park funding agencies, city departments, and urban planners that can help prevent environmental gentrification and displacement from occurring. It is important to note that environmental gentrification is very nuanced, complex, and context dependent, so the findings of my research will not be universally applicable.The findings of this research are primarily meant for Lake City Collective (LCC), a community organization in North Seattle, by providing them with information that can support them in ensuring that their environmental justice work directly benefits the people they serve and does not have unintended consequences.
- Presenter
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- Aditya Krishna, Junior, Electrical Engineering
- Mentor
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- Wu-Jung Lee, Applied Physics Laboratory
- Session
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Session O-2D: Comparative and Computational Research in Ecology and Evolution
- MGH 251
- 3:45 PM to 5:15 PM
Bioindicators, such as bats and frogs, are animals with high sensitivity to environmental conditions. Monitoring the collective behavior of these animals is critical in understanding the health of the environment. Monitoring strategies target a shared behavioral trait to observe an animal groups’ presence or absence. To monitor bats, the trait that is most useful is their ability to echolocate. Bats use echolocation to navigate their surroundings and hunt insects by producing high frequency calls and listening for their echoes. This allows them to be acoustically monitored using microphones to capture their activity in the form of echolocation calls. These large volumes of acoustic data can be extremely useful in studying individual and collective behaviors. This is where the field of acoustics and computation can be merged to develop efficient and scalable monitoring methods for discerning bat behavioral patterns. In this work, I collected passive acoustic monitoring data in the Union Bay Natural Area during Fall 2021 and evaluated the performance of multiple automatic detection algorithms. I plan to present preliminary results from applying different algorithms and discuss future data collection and analysis efforts.
- Presenter
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- Abby Burtner, Junior, Pre-Sciences Mary Gates Scholar, UW Honors Program
- Mentors
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- Sharlene Santana, Biology, Burke Museum
- Chris Law, Biology
- David Grossnickle, Biological Sciences
- Session
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Session O-2D: Comparative and Computational Research in Ecology and Evolution
- MGH 251
- 3:45 PM to 5:15 PM
Bats are the only mammals capable of powered flight and have correspondingly specialized body plans, apparent in the limbs. These specialized morphologies are thought to be the result of adaptations for the demands of flight; the skeletal elements of the bat forelimbs are elongated in order to support flight membranes and increase aerodynamic efficiency, whereas bat hind limbs are relatively short and specialized for hanging and catching prey in flight. Due to a deficient fossil record, the evolution of bat flight is still not fully understood but is hypothesized to be the result of an ancestral transition from gliding to flying. This hypothesis is plausible considering the morphological similarities between bat and glider forelimbs (both elongated) and the contrast between bat and glider hind limbs (shorter versus elongated). In this study, I collected linear measurements of the forelimb and hind limb skeletal elements of bats to add to a dataset of gliding, arboreal, and terrestrial mammals. I then fit evolutionary models to the data to test the hypothesis that A) selective pressures for flight drove the evolution of bat forelimb skeletal elements from glider-like forelimbs and that B) bat hind limbs evolved to become morphologically distinct from those of other mammals. Based on this hypothesis, I predict that A) bat and glider forelimb trait optima will fall progressively farther from arborealist optima and B) bat hind limb trait optima will be located in a unique region of morphospace. Preliminary results show that forelimb long bone lengths have evolved to be progressively longer from arborealists to gliders to flyers, supporting my hypothesis. This research helps address the longstanding question of how bats may have evolved flight from ancestral gliding mammals.
- Presenter
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- Quinn Matthew Habedank, Senior, Environmental Studies UW Honors Program
- Mentor
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- Ben Marwick, Anthropology
- Session
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Session O-2D: Comparative and Computational Research in Ecology and Evolution
- MGH 251
- 3:45 PM to 5:15 PM
Monitoring is a key component of any successful ecological restoration project. Being able to see how an ecosystem responds to restoration treatments is not only vital for planning out future restoration work, but also for more fully understanding how an ecosystem functions. The aim of this study was to examine the relationship between two culvert removals done in Carpenter Creek, a tidal creek feeding an estuarine wetland in North Kitsap, WA and the texture of the alluvial sediments bedded by the creek. The R programming language was used to analyze and visualize sediment texture data collected by Stillwaters Environmental Center, an environmental monitoring non-profit operating out of the local area. Generated data visualizations suggest that the first culvert removal, done near the mouth of the creek in 2012, resulted in a change in overall texture and an increase in fine sediments, while in 2014 and 2016 sediment texture drifted back towards the base state seen in 2011. In 2018, when the second culvert, this time located upstream near the marsh, was removed, a greater change in texture and increase in fine sediment was observed. These results suggest that an increased level of stream connectivity has been achieved, thereby allowing a freer and more natural sediment transportation regime. This increased understanding of Carpenter Creek’s evolution was made possible through a long-term monitoring effort. Understanding how estuarine wetlands respond to restoration treatments is key for successfully planning out future restoration work, as both adaptive management in existing projects and new restoration projects rely upon past experiences to inform management decisions.
- Presenters
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- Annika McFeely, Junior, Environmental Science & Resource Management
- Tate Linden, Sophomore, Pre-Sciences Mary Gates Scholar
- Mentors
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- Chris Law, Biology
- Sharlene Santana, Biology, Burke Museum
- Session
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Session O-2D: Comparative and Computational Research in Ecology and Evolution
- MGH 251
- 3:45 PM to 5:15 PM
Body shape varies drastically across vertebrates, making it an effective trait to study when trying to understand macroevolutionary patterns of phenotypic variation. Body shape has been quantified in many ectothermic clades, but rarely in mammals. The goal of our research is to quantify body elongation in the family Sciuridae, as this area has been understudied thus far. Squirrels (Sciuridae) can be sorted into three distinct ecotypes based on life history and locomotion: ground, tree, and gliding. This leads to questions regarding differences in body shape between ecotypes in their respective environmental niches, and how differences in elongation correlate to different types of locomotion. We hypothesize that tree squirrels will be the most elongate, followed by ground squirrels, then gliding squirrels due to ecological and functional adaptations. To determine the potential differences in elongation between ecotypes, we will calculate the head-body elongation ratio (hbER) from skeletons held at natural history museums. We will use phylogenetic comparative methods to compare hbER between the three ecotypes. Thus far, our preliminary data shows both gliding and ground squirrels to have a statistically significant difference in hbER from tree squirrels. Tree squirrels are the most elongate, followed by ground, then gliding squirrels. We hope to further test differences between the hbER of ground and gliding squirrels with an increased sample size. Research on correlations between robustness and bone density in this clade is already underway, which will complement our results on elongation ratios between ecotypes.
- Presenter
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- Johannah (Hannah) Rickman, Senior, Marine Biology
- Mentors
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- Chris Law, Biology
- Sharlene Santana, Biology, Burke Museum
- Session
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Session O-2D: Comparative and Computational Research in Ecology and Evolution
- MGH 251
- 3:45 PM to 5:15 PM
In vertebrates, differences in limb morphology are often the result of adaptions to locomotion. While previous researchers have examined the external shape of skeletal elements, there have been relatively fewer studies examining internal bone structure despite its potential significance to locomotor biomechanics. This study aims to help fill this gap by quantifying internal differences in forelimb skeletal morphology of squirrels (Sciuridae) across three locomotor ecologies: ground, tree, and gliding. We test the hypothesis that forelimb internal bone structure reflects adaptations to these ecotypes. To test our hypothesis, we micro-CT scanned the humeri of 61 species of squirrels and conducted bone structure analyses in the open-source software 3D Slicer. We assessed cortical bone composition by measuring material properties including global compactness (bone density), diaphysis (shaft) elongation, and second moment of area (bending ability). Based on biomechanical demands,we predict that A) gliders will have relatively less compact long bones with more elongated diaphyses due to the gravitational/aerodynamic constraints of gliding and B) ground squirrels will exhibit highly compact long bones with more robust diaphyses to gain more force while digging burrows​​. Preliminary results support our prediction that larger ground squirrels exhibit relatively more compact, robust, and bend-resistant humeri in accordance with their digging locomotion. This research furthers the understanding of diversity in forelimb morphology across mammals and the connection between forelimb morphology and locomotion. This study also lays the groundwork for future biomechanical and behavioral work to examine the evolutionary ties between form and function.
- Presenter
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- Noah Ben-Chaim Greco, Senior, Anthropology: Medical Anth & Global Hlth, Anthropology: Human Evolutionary Biology
- Mentor
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- Jennifer Gogarten, Biostatistics
- Session
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Session O-2E: Proteins, Cells, and Genomes: Modeling Functional Changes in Biology
- MGH 271
- 3:45 PM to 5:15 PM
The Ashkenazi Jewish(AJ) genome is one of the “easiest” for ancestry testing companies to recognize, but most do a poor job of categorizing geographical AJ ancestry nor provide consumers with an in-depth understanding of Jewish history. The latter is essential for individuals who were unaware of Jewish ancestors likely entering their family tree from assimilation due to persecution. Second, very few companies offer results reporting for the other major Jewish ethnicities-Sephardim and Mizrahim. The central goal of this study was to explore various mathematical and ethical discrepancies harming the consumer experience in ancestry testing. Potential conclusions would speak to larger disparities within the development and marketing of these products. I utilized multiple family members as individual case studies for assessing the computational output between 24 ancestry testing services. The individuals selected were informed on consent, usage of data, and self-reported as either Ashkenazic or Sephardic. After viewing results and analyzing differences in each company’s biobanking and algorithm processes, online forums were consulted for results reporting experiences. Initial findings indicated a significant variation in both ancestry estimation and available information on results across all companies. This was reflected in anecdotal data from online forums, with many consumers confused regarding unknown Jewish ancestry and/or what the Jewish identity entailed. I propose that an overall lack of regulation by governing bodies within the direct-to-consumer genetic testing industry is a large factor as to why this phenomenon occurs. As my hopes were to expose the weak boundaries set by ancestry testing companies by using the Jewish genome as a case study, this project provides a framework for further researching the intersection of bioethics, technology, and identity. I close by proposing possible solutions relating to research, results reporting, UX clarity, and promoting further genetics education.
- Presenter
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- Brandon Sim, Senior, Biochemistry Mary Gates Scholar
- Mentors
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- Sharona Gordon, Physiology & Biophysics
- Moshe Gordon, Physiology & Biophysics
- Session
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Session O-2E: Proteins, Cells, and Genomes: Modeling Functional Changes in Biology
- MGH 271
- 3:45 PM to 5:15 PM
Underlying the mechanism of many biological processes are biomolecules called proteins. Proteins have dynamic 3D structures, fluctuating between an ensemble of different shapes (conformations), which often have varying physical and chemical properties. Thus, to understand how proteins function, we must understand their conformational dynamics: the kinetics and energetics associated with a protein’s conformational landscape. Here, we develop a novel combination of two spectroscopy techniques for probing protein conformational dynamics: single-molecule detection, and transition-metal-ion-fluorescence-resonance-energy-transfer (tmFRET). tmFRET is the distance-dependent transfer of energy between a donor fluorophore and an acceptor transition metal ion, and this phenomenon has previously been used to detect conformational changes in bulk samples of protein. Extending tmFRET to monitor the conformational state of single protein molecules allows us to detect intermediate states that would be averaged out and thus unobservable in bulk samples, as well as measure the rate of conformational state transitions at equilibrium. To achieve single-molecule tmFRET measurements using a maltose binding protein (MBP) model system, we: label MBP with a metal ion at an engineered metal-binding site and with a fluorophore using cysteine-specific chemistry; specifically anchor MBP molecules to a functionalized glass coverslip; and image single MBP molecules using total-internal-reflection-fluorescence microscopy. Finally, we use quantitative image analysis to recover fluorescence parameters that we can interpret in the context of MBP’s previously well-characterized conformational transitions. Preliminary results culminating in movies of individual fluorescent MBP molecules are presented. Overall, this novel combination of tmFRET with single-molecule fluorescence is a powerful new tool for researchers seeking to probe the conformational dynamics of proteins of biological interest.
- Presenter
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- Meg G. Takezawa, Senior, Biochemistry Mary Gates Scholar
- Mentors
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- Ashleigh Theberge, Chemistry
- Yuting Zeng, Chemistry
- Session
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Session O-2E: Proteins, Cells, and Genomes: Modeling Functional Changes in Biology
- MGH 271
- 3:45 PM to 5:15 PM
Chronic inflammation in the lung often leads to airway remodeling, which can worsen symptoms in inflammatory diseases such as asthma. Airway remodeling is attributed to the excessive deposition of the extracellular matrix (ECM) by myofibroblasts, which are a differentiated form of fibroblasts. Eosinophils, when activated by interleukin-3 (IL-3), release certain soluble factors that were found to be associated with inflammation in asthmatic tissues. Hence, it is crucial to study cellular communication in airway remodeling to facilitate the development of treatments. The aim of this project is to establish an in vitro model of asthma by coculturing primary human lung fibroblasts and eosinophils to study the soluble factors that trigger airway remodeling. We hypothesize that IL-3 activated eosinophils, when immunoglobulin (IgG) is added, release soluble factors that trigger the gene expression and phenotypic changes in fibroblasts. The coculture device has two chambers, in which two types of cells can be cocultured in the shared media while being physically separated by a half wall. Eosinophils are seeded in the outer chamber of the devices and degranulated. The differentiation of fibroblasts would then be quantified by utilizing immunocytochemistry to see the differences in expression levels of alpha smooth muscle actin (É‘SMA) in fibroblasts, in addition to quantitative polymerase chain reaction (qPCR) to detect messenger RNA (mRNA) level associated with inflammation and tissue remodeling. The initial experiments were focused on the monoculture of fibroblasts to ensure that reliable readouts can be obtained from fibroblasts before initiating the coculture. The preliminary data suggest that the fibroblasts treated with transforming growth factor beta 1 (TGF-β1), which promote differentiation, result in significantly higher expression of É‘SMA. Our future experiments include initiating the coculture of eosinophils and fibroblasts to fully illustrate this crucial cellular communication in airway remodeling.
- Presenter
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- Quinn Nora (Quinn) Bellamy, Senior, Physics: Biophysics Mary Gates Scholar
- Mentor
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- Armita Nourmohammad, Physics
- Session
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Session O-2E: Proteins, Cells, and Genomes: Modeling Functional Changes in Biology
- MGH 271
- 3:45 PM to 5:15 PM
The structure and function of a protein is determined by the amino acid sequence that makes up the protein. Understanding how proteins are likely to mutate allows us to predict how organisms will evolve. However, the complex interactions between amino acids in a protein makes it difficult to predict beneficial mutations, and specifically their impact on protein function. I introduced models grounded in statistical physics to learn effective couplings between protein residues from evolutionary data and infer the impact of mutations using covariation of amino acids in evolutionary samples. I then compared the inferred model with machine learning inference of biophysical interactions in proteins that our team has developed to characterize the amino acid preferences within structural micro-environments of proteins. The results of this project will allow us to combine evolutionary data and machine learning inferences to predict beneficial mutations that will occur in a protein. This would have myriad benefits in medicine and evolutionary biology such as being able to predict how bacteria and viruses are likely to mutate in response to treatments.
- Presenter
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- Kaleb Decker, Senior, Chemical Engineering
- Mentors
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- Elizabeth Nance, Bioengineering, Chemical Engineering, Radiology
- Hawley Helmbrecht, Chemical Engineering
- Session
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Session O-2E: Proteins, Cells, and Genomes: Modeling Functional Changes in Biology
- MGH 271
- 3:45 PM to 5:15 PM
Microglia, the resident immune cells in the brain, have multiple functions including synaptic pruning to preserve resources, phagocytosis of apoptotic cells, and isolation and removal of foreign material. Depending on local environmental stimuli, microglia can change their shape between multiple states including highly branched, branched, or ameboid. To better understand microglia responses to changes in the brain environment, I investigated morphological shape features that include changes in area, circularity, and aspect ratio among other important features. I specifically focused on the microglial response to oxygen-glucose deprivation (OGD). Oxygen-glucose deprivation is a condition where the brain fails to receive the necessary oxygen and nutrients for growth and maintenance, resulting in higher levels of stress and cytotoxicity. Investigating the effects of OGD on microglia is part of a larger effort - developing a fluorescent imaging pipeline called microFIBER. Our goal for microFIBER is to create an unbiased, detailed, and replicable analysis pipeline for the robust characterization of microglia morphology. Images are from a previous investigation into effects of OGD on neonatal rat brains in the Nance Lab. We used SciKit-Image along with other Python packages to segment, label, and quantify the geometry of fluorescent-labeled microglia cells in the images. SciKit-Image’s module RegionProps was used to quantify shape features by drawing certain properties over the objects and then measuring those drawings. I then analyzed the response of microglia in non-treated, 1.5-hour OGD exposure, and 3-hour OGD exposure via data analysis in Python and Excel. I further divided these treatment groups into regional comparisons of the cortex, hippocampus, and thalamus. Results from statistical analysis supported differences between treatment groups and brain region, including statistically relevant differences in microglial circularity, area, and axes lengths. Differences in shape features could be used in the future as markers for diseased or distressed conditions for medical diagnosis.
- Presenter
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- Abe Wu, Senior, Bioengineering Mary Gates Scholar
- Mentors
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- Suzie Pun, Bioengineering
- Nataly Kacherovsky, Bioengineering
- Session
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Session O-2F: Engineering Biomedical Therapies
- MGH 288
- 3:45 PM to 5:15 PM
The CD28 receptor provides co-stimulatory signaling as part of T-cell activation, thereby driving T-cell proliferation, differentiation, cytokine production, and survival required for effective immune responses. Given this important role, CD28 has broad therapeutic implications, serving as a target for cancer immunotherapy, treatment of autoimmune disorders, and production of adoptively transferred T cells. Current approaches for targeting CD28 rely on antibodies, which can be employed in vivo or ex vivo to promote or block CD28 signaling depending on the application. While effective, antibody-based targeting is costly and rigid in design, owing to their biological production and reduced control over binding. Aptamers are small, single-stranded oligonucleotides with sequence-defined architectures that can bind specific targets of interest at high specificity and affinity. Aptamers can be produced at low cost and the inherent properties of oligonucleotides permit flexibility in reversing binding and fine-tuning affinity strength for optimal receptor targeting. This project proposes to develop the first aptamer that targets human CD28 using a combinatorial selection strategy that incorporates protein- and cell-based selections. Aptamer candidates will be identified and characterized to evaluate their binding specificities and kinetics. The selected aptamer will then be used to design a T cell activation assay. A 12-round selection has been completed and binding specificities of individual aptamer candidates will be evaluated. A second selection using a modified approach is currently in progress. If successful, this project has the potential to improve the T-cell activation process in manufacturing adoptive T cell therapies and facilitate the development of novel therapeutics for treating cancer and autoimmune diseases.
- Presenter
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- Nicole Sarah Nemychenkov, Senior, Biology (Molecular, Cellular & Developmental) UW Honors Program
- Mentors
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- Simone Minnie, Fred Hutchinson Cancer Research Center, Fred Hutchinson Cancer Research Center
- Geoffrey Hill, Medicine, Fred Hutchinson Cancer Research Center
- Session
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Session O-2F: Engineering Biomedical Therapies
- MGH 288
- 3:45 PM to 5:15 PM
Multiple myeloma (MM) is a bone marrow (BM) resident hematological malignancy that is becoming increasingly recognized as one amenable to immunotherapy. We have established that addition of T cells to BM grafts enhanced myeloma control post-autologous stem cell transplant (ASCT) in mice. Approaches aimed at improving T cell responses post-ASCT may therefore prove highly effective. To explore this, we utilized the interleukin-2 (IL-2)/interleukin-15 (IL-15) mimetic NL-201: a de novo cytokine mimetic that signals via the IL-2 receptor beta and gamma chain (IL-2Rβ/IL-2Rγ) subunits without engaging the IL-2 receptor alpha chain (IL-2Rα). IL-2Rα signaling has been associated with IL-2-mediated toxicity. We hypothesized that NL-201 would enhance control of myeloma progression by stimulating T cell proliferation and activation early post-ASCT. We transplanted irradiated myeloma-bearing recipients with a BM and T cell graft and administered NL-201 post-ASCT. NL-201 promoted potent anti-myeloma immunity that was dependent on CD4 and CD8 T cells, but not natural killer cells. To further elucidate potential mechanisms of action we harvested BM from vehicle and NL-201-treated mice and performed comprehensive immunophenotyping with high parameter flow cytometry. Mechanistically, NL-201 significantly expanded the total number of CD8 T cells in the BM. Memory CD8 T cells were preferentially expanded, while the frequency of exhausted CD8 T cells was reduced in NL-201-treated mice compared to vehicle-treated mice. Surprisingly, a larger percent of memory CD8 T cells in NL-201-treated mice produced granzyme B compared to vehicle-treated mice. Granzyme B production was also observed in conventional CD4 T cells in response to NL-201 treatment, and the frequency of regulatory T cells was reduced by 50% in NL-201-treated mice. NL-201 expanded bone marrow resident cytotoxic memory CD8 and CD4 T cells without driving T cell exhaustion, whilst reducing the frequency of regulatory T cells in the BM tumor microenvironment. Together, these data highlight the promising therapeutic potential of NL-201 post-transplant in multiple myeloma.
- Presenter
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- Carson Butcher, Senior, Biology (Molecular, Cellular & Developmental) Mary Gates Scholar
- Mentors
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- Cole DeForest, Bioengineering, Chemical Engineering
- Brizzia Munoz-Robles, Bioengineering
- Session
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Session O-2F: Engineering Biomedical Therapies
- MGH 288
- 3:45 PM to 5:15 PM
Life depends on a series of well-orchestrated biochemical reactions facilitated by proteins, which are differentially transcribed and activated in response to changing conditions. Hydrogels, water-swollen polymeric biomaterials, have proven useful as synthetic platforms to probe and direct biological activities by enabling researchers to recapitulate many aspects of the native cell environment. Though current hydrogel protein patterning techniques are capable of driving specific cell fates in individual cells in time and space (i.e. 4D), the timescales for patterning place dramatic limits on the types of biological functions that can be controlled. Furthermore, current techniques rely on slowly diffusing bioactive proteins into materials prior to immobilization within gels, so complete temporal control of protein activation within hydrogels remains out of reach. To address these limitations, my project focuses on directly photoactivating proteins within hydrogels using cytocompatible light. We predict that the extent of protein activation can be controlled dose-dependently by varying light exposure duration and intensity. We intend to use this platform to direct stem cell migration, differentiation, and proliferation in 4D on physiologically relevant timescales, which has tremendous utility in stem cell biology and regenerative medicine.
- Presenters
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- Andre Ye, Freshman, Center for Study of Capable Youth
- David Dmitrivich Smerkous, Senior, Applied & Computational Mathematical Sciences (Scientific Computing & Numerical Algorithms)
- Mentor
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- Behzad Najafian, Laboratory Medicine and Pathology
- Session
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Session O-2G: Bioengineered Systems to Test Treatments for Hearts and Other Organs
- MGH 231
- 3:45 PM to 5:15 PM
Podocytes reside in the glomerulus of the kidney and play a key role in the glomerular filtration barrier. Most diseases causing end-stage kidney disease are linked to podocyte injury. Moreover, these cells do not regenerate. Thus, detecting podocyte injury is critical. Adjacent podocytes are connected by foot processes, cellular extension structures that can be viewed by electron microscopy. Increased foot process width (FPW) is a key feature of podocyte injury and correlates with impaired glomerular filtration and kidney disease progression. The current gold standard for measuring FPW is unbiased stereology involving human measurements, which takes 6-8 hours per biopsy. Deep convolutional neural networks (DCNNs) can be used to significantly decrease the time and labor required by identifying cell features in electron microscopy images. However, when annotations are locality-specific and physically small, traditional DCNN approaches perform poorly. We present a novel approach for the segmentation of locality-specific annotations in cellular images and demonstrate its superior performance in identifying cell features on podocyte images. Firstly, we show that the problem of modeling small annotations consistently in proximity to a cross-image cell feature can be simplified into a two-step modeling process: one model segments the cross-image cell feature; another dependent model segments on smaller windows along the predicted feature segmentation. Secondly, we show that dynamically dilating the size of small annotations from an inflated representation down to its original size over the duration of training improves model generalization. This approach yields a validation DC (dice coefficient) of 0.80 compared to a baseline of 0.64 (range: 0-1) on a podocyte segmentation dataset. These findings demonstrate general techniques for robust modeling of locality-specific and small cell segmentation tasks beyond just podocyte cell segmentation. I was involved with designing, implementing, and experimenting with the development of the deep learning approaches and their evaluation on the dataset.
- Presenter
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- Lauren D'amico, Senior, Public Health-Global Health Levinson Emerging Scholar, Mary Gates Scholar
- Mentors
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- Farid Moussavi-Harami, Medicine
- Abigail Nagle, Bioengineering
- Session
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Session O-2G: Bioengineered Systems to Test Treatments for Hearts and Other Organs
- MGH 231
- 3:45 PM to 5:15 PM
Cardiomyopathies are diseases of the heart characterized by structurally and functionally abnormal cardiac tissue and can be caused by non-genetic or genetic causes. Genetic cardiomyopathies are the most common genetic cardiac condition, affecting 1 in 250 to 500. The two most common types of genetic cardiomyopathies are hypertrophic (HCM) and dilated (DCM). HCM is characterized by a thickening of the heart muscle. This thickening can lead to a blockage in the blood flow and cardiac relaxation abnormalities. DCM is pathologized by a weakening in the cardiac muscle, leading to a lengthening and thinning in the muscle. My research focuses on determining human specific mechanisms of DCM and HCM, specifically on determining the early developmental phenotypes of the cells that lead to downstream pathologies. I particularly emphasize how changes in sarcomere function lead to HCM and DCM using human induced pluripotent stem cell cardiomyocytes (hiPSC-CM). We have shown that sarcomeric mutations alter the amount of tension integrated over time (TTI) and those variations in TTI are predictive of HCM and DCM. I am generating two mutant hiPSC-CM lines, L48Q and I61Q, using CRISPR/Cas9. These mutations are both in the sarcomere, more specifically in cardiac troponin C (cTnC). They alter the calcium binding properties of cTnC. I have optimized the polymerase chain reactions in order to make the sequencing data clean for validation. I have generated the I61Q line and am working on the L48Q line. After validating the lines, I will differentiate them to cardiomyocytes in order to study the cellular mechanisms involved. I will then use IonOptix to test early vs. late calcium transience, cell contractility, and cell size. There are currently no treatments that address the contractile abnormalities present in HCM or DCM. My research will allow for greater understanding of these mechanisms which will inform potential therapies.
- Presenter
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- Alan Reuben Levinson, Senior, Bioengineering Mary Gates Scholar
- Mentors
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- Nathan Sniadecki, Mechanical Engineering
- Samantha Bremner, Bioengineering
- Session
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Session O-2G: Bioengineered Systems to Test Treatments for Hearts and Other Organs
- MGH 231
- 3:45 PM to 5:15 PM
Induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs) that have been engineered into three-dimensional heart tissues (EHTs) are valuable research tools for investigating debilitating genetic diseases that afflict the heart, such as Duchenne muscular dystrophy (DMD). Ensuring iPSC-CMs can be sufficiently matured to model such diseases remains a hurdle in current research, and maturational analysis techniques for iPSC-CMs are either qualitative, manual, or primarily based in two dimensions, leaving much to be desired. This poster details the creation of a suite of MATLAB image-processing scripts that can quantify the effect of three-dimensional culture and disease-causing DMD mutations on cardiomyocyte structure and maturation state. The iPSC-CMs were differentiated from stem cells, cast into EHTs, stained using immunofluorescence, and imaged using confocal microscopy. Using the scripts to analyze these 3D images of iPSC-CM stains, key maturational features of the cells can be quantified such as nuclei count; cardiomyocyte area; and sarcomere length, orientation, and z-disk width. Analyzing cardiomyocyte area can give key information on cardiomyocyte hypertrophy while examining sarcomere length, orientation, and Z-disk width can provide information on myofibril structure and organization. The suite allows analysis of these maturational features in both 2D and 3D cultures and offers a method for quantitatively assessing maturation in an automated manner. Measuring iPSC-CM maturation will also allow better comparison of existing maturational methods, such as mechanical loading, electrical stimulation, and small molecule treatment. The suite can also create graphical outputs to elegantly display data. Recent progress also includes a script that can count cell nuclei and quantify cell area. Overall, the suite will help improve maturational analysis of EHTs, and hopefully contribute to the discovery of new treatments for diseases that affect the heart.
- Presenter
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- Karen Sugimoto Gaffney, Senior, Bioengineering: Data Science Mary Gates Scholar
- Mentors
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- David Mack, Rehabilitation Medicine, Institute for Stem Cell and Regenerative Medicine
- Samantha Bremner, Bioengineering
- Session
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Session O-2G: Bioengineered Systems to Test Treatments for Hearts and Other Organs
- MGH 231
- 3:45 PM to 5:15 PM
In the United States, 1.5 million individuals suffer a fracture due to bone disease each year. It is well documented that mechanical load affects bone development, but our understanding of the cellular mechanisms behind bone development under load is limited. Current human induced pluripotent stem cell (hiPSC) derived bone tissue models have more relevant human physiology compared to traditional animal models. However, there is a lack of dynamically loaded hiPSC bone tissue and diseased hiPSC bone tissue models in vitro. We propose a novel, three-dimensional bone tissue model as a platform for musculoskeletal disease modeling that allows for compressive loading that will enhance maturity as well as induce diseased bone phenotypes. We improved upon existing poly-L-lactide solvent cast scaffold techniques by incorporating a polyvinyl alcohol mold and an annealing step that increases the uniformity of the scaffolds and allows for higher throughput fabrication. Osteoblasts were derived from hiPSCs using established differentiation protocols and seeded into the 3D, porous, poly-L-lactide scaffold to generate in vitro bone tissue that generates significant extracellular calcium. We propose an arduino-powered, 3D-printed loading device that can apply physiologically relevant dynamic loads to the scaffold and hypothesize improved bone tissue maturity in comparison to 2D cultures and unloaded 3D scaffolds. By screening for markers of early bone development such as type I collagen, markers of later development such as osteocalcin, and assays for extracellular calcium, we can track the maturity and development of bone tissue. We expect that 3D bone growth with static loading will reveal diseased bone phenotypes such as decreased calcium deposition and immature bone, whereas dynamic loading will promote bone growth and lead to mature bone. Ultimately, this model will improve our ability to investigate the effects of mechanical loading in developing and diseased bone.
- Presenter
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- Leslie Sy-Ling Chao, Senior, Microbiology Washington Research Foundation Fellow
- Mentor
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- Daniel Yang, Cardiology
- Session
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Session O-2G: Bioengineered Systems to Test Treatments for Hearts and Other Organs
- MGH 231
- 3:45 PM to 5:15 PM
Arrhythmogenic cardiomyopathy is a life-threatening inheritable disease that can result in sudden cardiac death or heart failure. One cause of this heart disease is a pathogenic mutation in the desmosomal protein named desmoplakin (DSP), which is a critical component in humans for maintaining the structural integrity of adjacent cells. Since over 70% of pathogenic DSP variants have been found to be premature truncating variants (ptvs), we hypothesize that DSP haploinsufficiency leads to arrhythmogenic cardiomyopathy. Engineered heart tissues (EHTs) from patient specific induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs) were previously generated from two unrelated patients with different DSP-ptv mutations. Max EHT twitch force measurements suggested that the DSPptvs were weaker compared to wild type. To control for genetic differences in patient derived iPSC-CMs, the DSPptv mutations of these two patients were created in an unrelated normal patient WTC iPSC line using CRISPR/Cas9 in order to study these mutations in a genetically isogenic background. iPSC-CMs from these two isogenic lines are currently being used to generate EHTs to determine the impact these DSPptvs have on cardiac tissue function. DSP protein levels of these isogenic iPSC-CMs are also currently being analyzed to determine the effect that these mutations have on DSP protein abundance. We expect the max EHT twitch force measurements to be weaker and lower levels of DSP protein found in the DSP isogenic EHTs and iPSC-CMs compared to wild type. If these experiments suggest haploinsufficiency, we will overexpress DSP in the mutant lines to determine if restoring normal DSP protein levels can rescue contractile function. Overall, this study will help us better understand the mechanisms of DSPptv-mediated arrhythmogenic cardiomyopathy, in hopes to potentially identify a novel therapeutic treatment for these patients.
- Presenter
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- Grace Olivia (Grace) Gordon, Senior, Biology (Physiology) Innovations in Pain Research Scholar
- Mentor
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- Jennifer Rabbitts, Anesthesiology
- Session
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Session O-2H: Managing Pain
- MGH 254
- 3:45 PM to 5:15 PM
The opioid epidemic is a growing challenge facing the US, and adolescents are an under-researched population susceptible to opioid addiction and overdose. After surgery, many adolescents are prescribed pain medicines such as opioids to treat severe pain they may experience, but this exposes teens to opioids which have strong addictive properties. The aim of this study is to 1) understand teens’ perceptions and attitudes about prescription pain medicines that influence opioid use decisions and behaviors, and 2) develop a measure assessing perceptions and beliefs as risk factors for adolescent opioid misuse and abuse. We performed a literature review identifying existing measures that ask children, adolescents, and young adults about their perceptions of prescription pain medicines. Next we conducted semi-structured brief phone interviews about opioid decision making with adolescents aged 12-18 years, who either had recent surgery/ICU admission or were healthy, from 3 existing studies at Seattle Children’s Research Institute. After consent, interviews were audio recorded, transcribed, and coded to identify themes across the interviews. We conducted 15 interviews. Emerging nodes are “It’s important that I understand risks of opioids so I can balance this with helping my pain,” and “Having a support system, including family support, helps me use my opioids safely”. An example quote of the family support theme is “I just think it’s a lot easier to be able to monitor [my meds] when I had a strong support system” (15 year old participant). Once coding is complete, findings will be combined with expert input to develop a measure which will undergo pilot testing with adolescents. Understanding perceptions about prescription pain medicines will allow researchers to measure factors which place youth at higher risk for opioid addiction and to develop interventions for youth requiring opioid treatment, for example in the context of surgery.
- Presenter
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- Emily Huynh, Senior, Biology (Molecular, Cellular & Developmental) UW Honors Program
- Mentors
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- Tomoko Akaike,
- Paul Nghiem, Dermatology
- Session
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Session O-2H: Managing Pain
- MGH 254
- 3:45 PM to 5:15 PM
Merkel cell carcinoma (MCC) is an aggressive skin cancer with a high (20%) rate of distant metastases, 80 percent of which occur within 2 years of diagnosis. Metastatic MCC (mMCC) to the heart is rare and presents a management challenge. Our systematic literature review revealed only 11 cardiac mMCC case reports. Most (n=6) patients received chemotherapy which is now known to lack durable response in MCC, and 2 received no treatment due to advanced disease and comorbidities. Hence, to better understand cardiac mMCC we queried an MCC data repository of patients diagnosed between 2011-2021. Progression-free survival (PFS) was measured from date of cardiac mMCC to progression or death. Among 582 MCC patients with distant metastases, 9 developed cardiac mMCC. Median age at initial MCC diagnosis (stage I (1), stage III (6), stage IV (2)) was 69 years. Most (n=8) patients developed mMCC to the right atrium, except for 1 patient (initial stage pIIIA) who had metastasis to the left atrium. Treatment for cardiac mMCC varied: 5 patients received immunotherapy combined with radiotherapy, while the reminder received immunotherapy alone, somatostatin analog, or chemotherapy. Five patients had a complete response in the cardiac lesion after immunotherapy, with or without radiotherapy. Median PFS and overall survival (OS) was 114 and 325 days, respectively. To explore whether presence of cardiac mMCC impacts OS, we matched cardiac mMCC patients to non-cardiac mMCC patients by age, sex, stage, immunosuppression status, and number of prior metastatic episodes. Using Kaplan-Meier statistical analysis, we found no difference in OS for the matched cohort (p=0.96). Taken together, these data indicate the emerging role of immunotherapy and radiotherapy in controlling cardiac mMCC. Furthermore, the location of mMCC to the heart does not appear to confer a worse prognosis compared to non-cardiac sites.
- Presenter
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- Kathryn Spence, Senior, Pre-Health Sciences
- Mentors
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- Katie Nickel, Comparative Medicine
- Warren Ladiges, Comparative Medicine
- Zhou Jiang, Comparative Medicine
- Session
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Session O-2H: Managing Pain
- MGH 254
- 3:45 PM to 5:15 PM
The ability to respond to and recover from a physically stressful event is defined as physical resilience. Because of the inherent individual variation in response to a specific stressor with increasing age, the ability to document resilience at a younger age would likely predict that an individual would be more resilient at an older age. In a preliminary experiment, this concept was tested in a mouse model of wound healing consisting of a through and through 2 mm biopsy within the central area of each ear. A cohort of 20 female and 20 male C57BL/6 mice (an inbred mouse strain used extensively in aging research), 18 months of age, were biopsied and the area of closure measured after two weeks using a digital imaging procedure. The area of closure showed that the biopsy opening healed at variable rates depending on each individual mouse independent of sex, but clustering resulted in two main groups of approximately equal numbers, a fast-healing group and a slow-healing group. The data were analyzed by me (student first author), and I was able to assess the correlation of the two groups six months later with data on aging parameters for learning, strength, and agility when mice were 24 months of age. I found that mice with faster ear biopsy closures were better learners, and showed increased strength compared to mice with slower ear biopsy closures. I will be doing a special stain for collagen on formalin fixed ear wound areas to confirm the healing process and see if digital imaging staining intensity correlates with healing rate and aging parameters. These preliminary observations suggest that a simple skin biopsy procedure can be used to predict levels of resilience to aging phenotypes and identify mice at increased risk for age-related frailty conditions.
- Presenter
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- Victoria Peng-Yu (Victoria) Chen, Senior, Psychology, Biochemistry Innovations in Pain Research Scholar
- Mentor
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- Tonya Palermo, Anesthesiology & Pain Medicine
- Session
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Session O-2H: Managing Pain
- MGH 254
- 3:45 PM to 5:15 PM
Sickle cell disease (SCD), the most common genetic blood disease in North America, can be characterized by recurrent episodes of acute severe pain due to blockages of red blood cells. Without pain self-management habits taught at an early age, the pain faced by youth with SCD can impede both everyday activities and their overall health for the long term, trickling into adulthood. By embedding the skills taught in cognitive-behavioral therapy accessibly in web and mobile-based technology, previous research in this interventional medium shows that this format could be beneficial for youth with SCD. Our research, in particular, investigates the effectiveness of iCanCope SCD, a web and mobile-based pain management program with a focus on helping youth build needed skills to handle pain. This study recruited 160 adolescents aged 12-18 with SCD and randomized the participants into an experimental group for the intervention and an attentional-control group. The innovation includes modules teaching coping strategies, symptom and goal-tracking, and peer-based social support, while the attentional-control will contain static education about SCD. The efficacy of the program is determined through self-report scales at pre-treatment, post-treatment (2 months), and follow-up (6-months) periods, targeting the primary outcomes of adaptive coding, pain reduction, and pain-related disability. Secondary outcomes include physical and emotional functioning and disease-specific health-related quality of life. We hypothesize that adolescents in the iCanCope with SCD experimental group will have an increase in adaptive coding and reduced pain and pain-related disability compared to the control condition. Aside from learning how to structure web-based interventions, I have a role in recoding and organizing participant data for this project. The information collected in this study can help to improve web- and mobile-based interventions for not only youth coping with SCD pain but also those with other pain-related conditions, given the flexibility and universality of cognitive-behavioral frameworks.
- Presenter
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- Ricky Thomas Fukuyama, Senior, Biology (Physiology)
- Mentors
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- Xinxian Deng, Pathology
- Christine Disteche, Laboratory Medicine, Pathology
- Session
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Session O-2I: Biochemistry and Molecular Genetics
- MGH 284
- 3:45 PM to 5:15 PM
In mammals, males have sex chromosomes XY while females have XX. To balance out the extra X sex chromosome, females undergo X-chromosome inactivation (XCI) which silences most genes on one of the two X chromosomes. However, some genes escape XCI and continue to be expressed on the inactive X chromosome causing a high expression level of these genes in females compared to XY males, leading to potential sex differences in health and disease. Shroom4, an X-linked gene that encodes an essential protein for cytoskeletal architecture, is an example of a gene that escapes XCI in mice. How Shroom4 escapes XCI is unclear. It has been proposed that CTCF, a master chromatin regulator that controls gene transcription through histone or chromatin modifications, could play a role in insulating escape genes from the silencing environment on the inactive X chromosome. Indeed, we found there is a strong CTCF peak between Shroom4 and the neighbor silenced gene Bmp15. To functionally test this insulation model, I am using CRISPR/Cas9 to edit the CTCF binding site and examining the effects of deletion and inversion of the site on Shroom4 allelic expression levels. This analysis will show whether the CTCF binding site and its correct orientation are necessary for Shroom4 escape from X inactivation. Through this project we are able to improve our understanding of the complex nature of XCI.
- Presenter
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- Emily Kuen Strong, Senior, Biochemistry Mary Gates Scholar
- Mentor
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- Clement Furlong, Genome Sciences, Medicine
- Session
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Session O-2I: Biochemistry and Molecular Genetics
- MGH 284
- 3:45 PM to 5:15 PM
Paraoxonases (PONs) are a family of three closely related genes found on the long arm of chromosome 7. The genes encode PON1, PON2, and PON3, which are primarily involved in metabolizing oxidized lipids and modulating oxidative stress. However, each of the PON enzymes are involved in important secondary reactions. PON2 is an intracellular enzyme localized in the mitochondria that plays a vital role in modulating oxidative stress and inactivating microbial quorum sensing factors. Individuals with PON2 deficiencies are sensitive to oxidative stress. It may be possible to restore PON2 function by creating an injectable protein for individuals with a PON2 deficiency. Our goal is to actively express recombinant PON2 in an E. coli expression system and inject PON2 into PON2 knockout mice to determine if PON2 function can be restored. To express PON2 in E. coli we designed a synthetic DNA sequence by removing the transmembrane sequence of PON2 and replacing it with the signaling sequence from PON1, which facilitates the purification of the chimeric protein. We transformed the synthetic PON1/PON2 plasmid in E. coli and are currently performing gel electrophoresis and activity assays to analyze the expression of PON2. If we see protein expression as expected, then we will purify the recombinant PON2 for injection using a histidine tag that we added to the end of the protein coding sequence in the construct. The histidine tag allows for single-step purification via affinity chromatography, which we will then inject into PON2 knockout mice to observe their response to oxidative stress. Findings from this experiment will allow for further understanding of PON2 function and its restoration via an injectable protein, as well establishing that E. coli expression systems can be used as a more cost-effective method for pursuing further PON2 related research.
- Presenter
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- Daphnee Michelle Marciniak, Senior, Biochemistry
- Mentor
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- Shao-En Ong, Pharmacology
- Session
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Session O-2I: Biochemistry and Molecular Genetics
- MGH 284
- 3:45 PM to 5:15 PM
Proteins often interact with other proteins to relay signals or to cause physiological effects. Knowing the components of cell signaling pathways is important for understanding diseases and developing treatments. However, it can be difficult to isolate and detect protein complexes because some experimental conditions are too harsh on the weak inter-protein interactions. We therefore questioned whether we could use cross-linking to maintain native protein complexes for rapid isolation and detection. I used formaldehyde (FA), a protein cross-linker, in conjunction with a 100k molecular weight cut-off (MWCO) spin filter to isolate protein complexes above 100k molecular weight (MW). FA treatment for a few minutes should only cross-link proteins that are near each other. Protein complexes formed through cross linkage should be massive (>100k MW) compared to most unlinked proteins. Therefore, complexes of closely-associated proteins can be rapidly purified from a 100k MWCO filter. I specifically studied the proteins associated with epidermal growth factor receptor (EGFR) in response to extracellular epidermal growth factor (EGF) treatment. EGFR itself is above 100k MW, but the proteins that associate with it when EGF is bound to it, such as MAPK and GRB2, are below 100k MW. The presence of the smaller proteins in filtered cell lysate samples prepared with EGF and FA treatment would show that the described experimental setup can be used to isolate smaller proteins in complexes above 100k MW. This can be further applied in structural and mechanistic studies of protein complexes involved in normal and pathological physiological processes, in determining novel complexes after further purification and identification steps, and in time course experiments—where different proteins may arrive in a complex at different times post treatment. The aforementioned applications can help pave the way for novel and more effective disease treatments and provide a better understanding of the inner workings of cells.
- Presenter
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- Zach Armstrong, Senior, Chemical Engr: Nanosci & Molecular Engr
- Mentors
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- Hugh Hillhouse, Chemical Engineering
- Yuhang Yang, Materials Science & Engineering
- Session
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Session O-2J: Materials Chemistry for Light Management and Catalysis
- MGH 242
- 3:45 PM to 5:15 PM
Perovskite materials have promising power conversion efficiency for use in efficient and inexpensive solar panels but are handicapped by material degradation. The degradation of methylammonium lead tri-iodide (MAPbI3) occurs in the presence of heat, illumination, hydration, and oxygen. The fastest degradation is via the reaction with oxygen and water under illumination (water accelerated photo-oxidation, WPO). The exact mechanism for degradation with oxygen under illumination (dry photo-oxidation, DPO) is unknown, but the most commonly proposed reaction includes net water production, which would allow transitioning to accelerated degradation by WPO even without water initially present. Previous degradation experiments in our group have been conducted with perovskite thin films at steady state with flowing gas delivering reactants and removing products. The degradation products in the gas phase are challenging to collect in sufficient concentrations to characterize. We develop a novel experimental strategy to determine the stoichiometry of MAPbI3 degradation focusing on the possibility of water production. We simulate atmospheric perovskite degradation using MAPbI3 crystals suspended in o-dichlorobenzene with saturated dissolved oxygen and water for easy and accurate characterization of degradation products. The liquid samples are collected for analysis by gas chromatography-mass spectrometry and ultraviolet-visible spectroscopy measurements following degradation with heat, illumination, oxygen, water, and combinations of the four. These measurements determine the types and amounts of components produced, allowing for conclusions on the overall stoichiometry of DPO and WPO isolated from other, parallel processes. Importantly, we find that water is not produced from DPO and net consumed by WPO. These findings allow for developing novel degradation mechanisms that will lend essential understanding in engineering methods to counteract degradation and move perovskite solar panels towards full-scale viability.
- Presenter
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- Kat Motovilov, Senior, Bioengineering Mary Gates Scholar, Innovations in Pain Research Scholar
- Mentors
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- Michael Bruchas, Anesthesiology & Pain Medicine, Departments of Anesthesiology and Pharmacology
- Kasey Girven, Anesthesiology & Pain Medicine
- Session
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Session O-2K: Modeling Neurological Diseases and Disorders
- MGH 295
- 3:45 PM to 5:15 PM
Substance use disorders are shockingly prevalent in the United States, with the Centers for Disease Control and Prevention estimating that in 2019 alone, nearly 50,000 people died from opioid-involved overdoses. Neuropeptide S and its receptor have been previously implicated in drug-seeking behavior, making it an important component in understanding the biological functions underlying addiction. However, such findings have not been localized to any specific region. We set out to investigate the connection between the locus coeruleus, a region with a known population of neuropeptide S producing cells, and the orbitofrontal cortex, a region known to express neuropeptide S receptors. By utilizing an NPSR1-cre mouse line and cre-dependent viral expression, we introduced GCaMP, a fluorescent calcium sensor, into NPSR1 expressing neurons in the orbitofrontal cortex. This enabled us to record calcium fluorescence in vivo as a proxy for neuronal activity. This technique was paired with various behavioral paradigms to explore the endogenous activity of these neurons in natural reward-seeking, social interaction, and fear conditioning. Our results demonstrate that these neurons are activated during cue and food reward-delivery, various social rewards, and foot shock. Aligning these findings with previous research that has demonstrated neuropeptide S’s involvement in drug reward-seeking behavior, we believe these neuropeptide S receptor-expressing neurons in the orbitofrontal cortex could be implicated in drug-seeking behaviors. These findings contribute to the understanding of the neural circuitry involved in substance use disorders, which is integral in continuing the development of treatment options for patients.
- Presenter
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- Devika Gandhay, Senior, Biology (Physiology)
- Mentors
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- Franck Kalume, Neurological Surgery, UW/ Seattle Children's
- Arena Manning, Neurobiology & Behavior
- Session
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Session O-2K: Modeling Neurological Diseases and Disorders
- MGH 295
- 3:45 PM to 5:15 PM
The conditional knockout (KO) of Ndufs4 in only GABAergic interneurons leads to a severe epilepsy phenotype, suggesting GABAergic interneurons drive the severe and often fatal epilepsy phenotype commonly reported in Leigh Syndrome (LS) patients. Dysfunctions or loss of parvalbumin (PV) interneurons, a subtype of GABAergic interneurons, have been shown to play a key role in the mechanisms of various forms of epilepsy both in human and animal models. The present study aims to target PV interneurons. We hypothesized that KO of Ndufs4 in PV interneurons will cause dysfunctions or loss of PV neurons leading to epilepsy in our cell-specific model of LS. Experimental mice models with Ndufs4flx/flx/PVCreflx/+ genotype for the mutants, and Ndufs4flx/flx/PVCre+/+ genotype for the controls were used. For imaging experiments, Ndufs4flx/flx/Ai14flx/+/PVCreflx/+ were used for mutants and Ndufs4+/+/Ai14flx/+/PVCreflx/+ were used for controls. Seizure susceptibility was assessed by recording occurrence, frequency and duration of seizures and epileptiform events. Mice susceptibility to provoked seizures was examined by the pentylenetetrazol (PTZ) challenge. Assessment of cell loss was tested in imaging studies. Ai14-labeled PV interneurons in key areas associated with epilepsy were counted between the two groups. Finally, to assess motor dysfunctions comorbid to epilepsy, I tracked the movement of mice of both genotypes. Our results showed PV mutants had an increase in the frequency of spontaneous myoclonic seizures and interictal spikes on electroencephalograms (EEGs). There was no difference in seizure susceptibility to PTZ seizures between mutants and controls, nor any major impairments in locomotor activity or anxiety like behavior in PV mutants. Finally, no cell loss changes in PV mutants were detected. In conclusion, PV mutants display a mild seizure phenotype with no cognitive or motor abnormalities, suggesting targeted Ndufs4 KO in PV interneurons drives a small portion of the severe epilepsy phenotype observed in LS.
- Presenter
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- Phoenix Adison Davis, Junior, Biology (Physiology) UW Honors Program
- Mentors
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- Michael Bruchas, Anesthesiology, Pharmacology, Departments of Anesthesiology and Pharmacology
- Leandra Mangieri, Neurobiology & Behavior
- Session
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Session O-2K: Modeling Neurological Diseases and Disorders
- MGH 295
- 3:45 PM to 5:15 PM
Binge eating disorder is a debilitating disease which can arise from many kinds of traumas, pains, and stresses of life. Previous characterization of a binge-eating model developed by our lab shows that mice will consume greater quantities of high palatable diet (HPD) following exposure to specific types of psychological stressors including forced swim and foot shock compared to mice exposed to such psychological stressors. It was found that the claustrum of the brain had increased neural activity following bouts of binge-eating. One aspect of my research required me to quantify the density of neural activation in the claustrum from its most rostral to caudal area. We found that stressed mice displayed significantly higher levels of claustrum neural activation compared to controls. For the behavioral pattern we wanted to rule out influence of energy expenditure in the stress paradigm. Mice were given access to running wheels for an hour and then received access to HPD. Mice who displayed high levels of running had similar food intake to that of mice who did not display running activity. This suggests that psychological stress is an underlying component in this model for stress eating. As an ongoing project we are utilizing 1-photon imaging in the claustrum to monitor single cell activity across no stress vs. stress sessions and subsequent feeding behavior. We have thus far found increased neural activity in response to onset of a feeding bout in no stress conditions and we are investigating how stress modulates the effect of neurons tracked across time. This research potentially has great impact on the scientific community’s knowledge behind why psychological stressors contribute to binge-eating behaviors and could one day have astounding translational benefits for treating humans with binge-eating disorder.
- Presenter
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- Fleur Uittenbogaard, Senior, Neuroscience Mary Gates Scholar, UW Honors Program
- Mentors
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- Michael Bruchas, Anesthesiology, Departments of Anesthesiology and Pharmacology
- Nephi Stella, Pharmacology
- Anthony English, Pharmacology
- Session
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Session O-2K: Modeling Neurological Diseases and Disorders
- MGH 295
- 3:45 PM to 5:15 PM
Δ9-tetrahydrocannabinol (THC) is the primary psychoactive compound found in Cannabis sativa. In mice, intraperitoneal (i.p.) injections of THC, produce a characteristic triad of behavioral responses: hypolocomotion, hypothermia, and analgesia. However, injections of THC do not accurately represent how humans typically administer THC, which primarily consists of inhalation and oral consumption. Thus, we have developed and optimized a paradigm of oral THC consumption in mice to better model a typical route of administration used by humans. Our model balances an acute consummatory window with a highly palatable, chocolate-flavored gelatin. This incentivizes mice to voluntarily consume enough THC to produce measurable cannabimimetic behaviors. Over a 3-day exposure paradigm we habituated mice to the gelatin where they had ad libitum access for 2 hours each day. We introduced THC into the gelatin and measured the triad of behaviors immediately following consumption to determine whether voluntary oral consumption induces the acute cannabimimetic behaviors. We found significant hypolocomotion, hypothermia, and analgesia at our highest concentration. Next, to determine whether these behaviors are caused by THC’s action at the primary endocannabinoid receptor, CB1R, we treated mice with the inverse agonist SR1 prior to the behavioral tests. SR1 blocked the cannabimimetic behaviors induced by the consumption of THC-gelatin, suggesting the effects are CB1R-dependent. To finalize this model, we have adapted our oral consumption paradigm to an acoustic startle behavioral model. Following our consumption paradigm, mice are subjected to tones of varying decibels and their startle response is measured. Moving forward we will continue acoustic startle testing to confirm preliminary data and expand the doses tested. Overall, these data verify that our model effectively induces cannabimimetic behaviors and can be used for future behavioral studies investigating a more translational route of administration compared to i.p.
- Presenter
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- Rose Wang, Senior, Neuroscience, Biochemistry UW Honors Program
- Mentor
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- Franck Kalume, Neurological Surgery, Neuroscience, Pharmacology, UW/ Seattle Children's
- Session
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Session O-2K: Modeling Neurological Diseases and Disorders
- MGH 295
- 3:45 PM to 5:15 PM
- Presenter
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- Liatris Renee Reevey, Junior, Neuroscience
- Mentors
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- Horacio de la Iglesia, Biology
- Asad Beck, Neuroscience
- Franck Kalume, Neurological Surgery, Neuroscience, Pharmacology, UW/ Seattle Children's
- Session
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Session O-2K: Modeling Neurological Diseases and Disorders
- MGH 295
- 3:45 PM to 5:15 PM
Epilepsy is a neurological disorder characterized by the presence of seizures (periods of abnormally synchronized neural hyperactivity) and interictal spikes (transient abnormal neural synchronization that occurs between seizures). Different genetic mutations and backgrounds lead to different forms of epilepsy, which in turn may lead to different manifestations of epileptiform neural activity. I used machine learning (ML) to detect interictal spikes in mouse models of different epilepsies. I used neural activity previously recorded in mice using two electrocorticographic (ECoG) electrodes and one electromyographic (EMG) electrode. I used data from mouse models of Dravet syndrome (DS; Heterozygous Scn1a gene deletion), focal cortical dysplasia (FCD; Pik3ca gene mosaic), Leigh Syndrome (LS; GABAergic Ndufs4 knockout) and, Alzheimer's Disease (AD; Increased beta-amyloid production), as well as wild type (WT) control. I used recordings binned into 10 second interictal spikes. I then used a computer algorithm that extracted 96 features - events that characterize ECoG and EMG electrical signals. These features and the manually identified interictal spikes were used to train several ML models to score unidentified interictal spikes in the remaining recorded data. The best performing ML algorithm had a mean test accuracy between 60% and 80% for each of the different models of epilepsy, but the features it used were different in each epilepsy mouse model. These results suggest that, while our ML-based method may capture epileptic activity with high accuracy, its success relies on features that are characteristic of each type of epilepsy. These results suggest the potential need to utilize different ML models for different forms of epilepsy in order to attain the highest possible accuracy if used for real-time interictal spike detection and potential seizure forecasting.
- Presenter
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- Tammy Khanh Nguyen, Senior, Biology (Molecular, Cellular & Developmental) Mary Gates Scholar
- Mentors
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- Michael Bruchas, Anesthesiology & Pain Medicine, Departments of Anesthesiology and Pharmacology
- Sean Piantadosi, Anesthesiology & Pain Medicine
- Session
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Session O-2K: Modeling Neurological Diseases and Disorders
- MGH 295
- 3:45 PM to 5:15 PM
The locus coeruleus (LC) is a small nucleus of noradrenergic neurons in the pons, which, despite its size, has broad projections throughout the central nervous system (CNS). Functionally, the LC is believed to be involved in various critical functions, including in the physiological responses to stress and mediating arousal. Previous investigations have demonstrated that optogenetic activation of the LC using channelrhodopsin at a tonic frequency promotes wakefulness in rodents. While this observation causally implicates LC function in wakefulness, it is still not known how the LC is endogenously controlled to mediate arousal. One potential candidate in this control involves the peptide nociceptin and its cognate receptor, the nociceptin opioid peptide receptor (NOPR), both highly expressed around the LC. To investigate, we conducted two pharmacological experiments using the NOPR agonist Ro64-6198 to investigate its effects on locomotion and on the activity of LC noradrenergic neurons. We found that Ro64-6198 (10 mg/kg) strongly reduced open-field locomotor activity compared to vehicle treatment. Using in vivo 2-photon calcium imaging (GCaMP6s), we found that Ro64-6198 (5 mg/kg) profoundly reduced LC noradrenergic neuron activity. Wakefulness appeared reduced in both in vivo experiments. To determine where the endogenous nociceptin signal to the LC originates, we performed an intracranial injection of a Cre-dependent retrograde virus (AAV2-DIO-eYFP) into the LC of a mouse expressing Cre recombinase in nociceptin-expressing neurons. We identified a long-range nociceptinergic projection from the bed nucleus of the stria terminalis (BNST). In order to evaluate how the activity of these BNST neurons are affected by wakefulness, we conducted home-cage fiber photometry recordings. Together, these studies suggest that nociceptin acting on LC noradrenergic neurons reduces arousal, and that the endogenous sources of nociceptin come from the BNST. These experiments shed new light on an understudied endogenous opioid system that may be a druggable target for sleep disorders.
- Presenter
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- Shannon Hong, Senior, Neuroscience Mary Gates Scholar, UW Honors Program
- Mentors
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- Samira Moorjani, Physiology & Biophysics
- Rebecca Burch, Physiology & Biophysics
- Robert Robinson, Physiology & Biophysics
- Session
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Session O-2L: Brain and Behavior
- MGH 258
- 3:45 PM to 5:15 PM
Spinal cord injuries (SCIs) produce motor impairments that have devastating consequences for the independence and quality of life of affected individuals. These impairments result from the weakening of connections between the cerebral cortex and the spinal cord. Therefore, there is an ongoing need to develop interventions that strengthen corticospinal connections post SCI. Our laboratory focuses on a hybrid intervention that combines intraspinal neuromodulator delivery with use-dependent physical rehabilitation, which increases motor performance after SCI. However, the mechanisms behind this recovery remain relatively unexplored. Our project aims to address this knowledge gap by using evoked potentials (EPs) as biomarkers to quantify the strength of neuronal connections. EPs represent electrical responses in the brain to stimuli. Following a stimulus event, measuring the EP amplitude allows us to assess the strength of neuronal connections. For our experiment, we will implant chronic cortical and spinal microwire arrays in adult rats with chronic cervical SCI and conduct weekly recording sessions before, during, and after a 6-week therapy period. We will then compare changes in the size of EPs recorded during these sessions. We will also assess motor recovery through behavioral scores on a forelimb reach-and-grasp task, which the cervical cord injury directly impairs. We hypothesize that our interventions will strengthen corticospinal connections damaged by the injury, as manifested in a correlation between an increase in EP amplitudes and changes in motor performance. Ultimately, results from our experiments will help us understand how physical rehabilitation and targeted delivery of neuromodulators mediate recovery of the damaged central nervous system. We also hope our project will inform future rehabilitation strategies targeting SCI.
- Presenter
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- Sarah Ransom, Senior, Medical Laboratory Science Mary Gates Scholar
- Mentors
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- John Neumaier, Pharmacology, Psychiatry & Behavioral Sciences
- Phillip Silva, Neuroscience
- Session
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Session O-2L: Brain and Behavior
- MGH 258
- 3:45 PM to 5:15 PM
The nucleus accumbens core (NAc), among other brain regions, plays a key role in drug seeking behavior and relapse, particularly in determining incentive value as cocaine consumption escalates. Neurons in this region have two genetically-distinct output projections which form the direct and indirect pathways, D1 and D2 respectively. My experiment is based on the Incubation of Craving model, in which animals show increased drug seeking after a period of abstinence from self-administered cocaine. The behavioral side of this project seeks to better understand how these two pathways contribute to drug seeking behavior following a period of forced abstinence, and I am also investigating how RNA translation changes in and between the direct and indirect pathways following the escalation of cocaine taking and incubation of craving by forced abstinence. I used a transgenic line of rats expressing the Cre-Recombinase enzyme in the D1 and D2 medium spiny neurons (MSNs) to selectively express and manipulate MSNs in the direct and indirect pathways. I bilaterally injected either DIO-hM4Di RiboTag, DIO-hM3Dq RiboTag or a fluorescent control virus into the NAc, and the rats were catheterized during this time to allow for cocaine self-administration. The rats underwent the Incubation of Craving experiment where they experienced an acquisition and abstinence period. Once the Incubation of Craving was complete, I collected and homogenized the NAc from each subject and performed RNA purification. Then, I performed qPCR and RNA sequencing to investigate, and validate any pathway-specific changes in mRNA expression following these behaviors with the goal to discover new therapeutic targets. My hypothesis is that ribosome-associated mRNA in synaptosomes differs from the cell bodies, with enrichment of RNAs known to be trafficked to dendrites. Additionally, I predict that incubation of craving will induce distinct patterns of RNA changes in neurons of the direct and indirect pathway.
- Presenter
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- Emma S. Skillen, Senior, Psychology Mary Gates Scholar
- Mentors
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- Abigail Schindler, Psychiatry & Behavioral Sciences, VA Puget Sound Health Care System
- Britahny Baskin, Neuroscience, Seattle Children's Research Institute/UW
- Session
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Session O-2L: Brain and Behavior
- MGH 258
- 3:45 PM to 5:15 PM
Traumatic brain injuries (TBIs) are a major cause of disability among war veterans, leading to behavioral dysfunction and post-concussive symptoms such as depression, anxiety, pain, and substance abuse. These symptoms are thought to be caused by neural inflammation combined with a malfunctioning autonomic nervous system following injury, called dysautonomia. Dysautonomia leads to changes in heart and respiratory rate, increased fatigue, and has been shown to be able to predict future behavioral outcomes such as depression. Vagal nerve stimulation (VNS) is currently being examined as a treatment for blast trauma, as the vagus nerve helps regulate the autonomic nervous system. I predict that VNS following blast exposures will reduce the neural inflammation and severity of dysautonomia following blast TBIs, in turn lessening the chronic behavioral dysfunction that normally occurs after blasts. To examine the effects of VNS on TBIs, I looked at both vital signs and behavioral dysfunction immediately and chronically following the blast. A shock tube that generates clinically relevant overpressure waves was utilized to simulate chronic (3x blast exposures (or sham exposure)) in 11-week-old C57BL/6J mice (n=5-6 per group, from two cohorts of mice). In addition to analyzing cytokine expression to determine inflammation and vital signs, several behavioral assays were run, including: operant conditioning, t-maze, y-maze, acoustic startle, and photophobia, to examine both biological and behavioral changes following blast and VNS treatment. Thus far it appears likely that the VNS treatment has lessened the severity of multiple measures of dysfunction, including pain, startle sensitization, and inflammation. This demonstrates that VNS could be a potential therapeutic for blast TBIs but further research, including running more mice to obtain a larger sample size, is necessary to draw more conclusions.
- Presenter
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- Katrina Lee (Katrina) Wong, Senior, Neuroscience Mary Gates Scholar
- Mentor
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- Abigail Schindler, Psychiatry & Behavioral Sciences, VA Puget Sound Health Care System
- Session
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Session O-2L: Brain and Behavior
- MGH 258
- 3:45 PM to 5:15 PM
Blast exposure via detonation of explosives is a major source of trauma for service members, Veterans, and civilian bystanders, resulting in mild traumatic brain injury, post-traumatic stress disorder, and chronic pain. The combination of these effects characterizes the polytrauma clinical triad and is a risk factor for increased substance use and substance use disorder (SUD). Exposure to polytrauma can result in disparate symptom trajectories. Research focused on understanding how distinct symptom trajectories map onto substance preference and SUD risk is the focus of my project. In order to understand the interactions between polytrauma and SUD risk, I use a rodent model that utilizes custom, in-house-built polysubstance self-administration chambers to measure water, alcohol, and fentanyl intake. Two types of tracking are used to monitor drinking: Radio Frequency Identification (RFID) tracking and the volumetric drinking monitor. With these two tracking types combined, we can see which mouse drinks what liquid for what period of time. For this project, I used C57Bl/6 male and female mice aged 9 weeks on arrival. These mice were then single or group-housed in the RFID cages for one week to monitor drinking patterns. Previously, I have tested 48 mice, and found that when one (fentanyl or alcohol) substance was available, mice that were single-housed drank more substance than mice that were group housed. To continue this project, I plan to test fentanyl and alcohol in the same cage, which can give us valuable insight into substance preference and polysubstance use, making it more representative of the human experience, as many people consume multiple drugs at the same time. I also plan to look into sex differences and see how that could alter substance use. These factors combined will give valuable insight into classifying substance use that can lead to more optimized treatment for Veterans with polytrauma.
- Presenter
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- Rd (RD) Pant, Senior, Neuroscience Mary Gates Scholar
- Mentor
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- Jihong Bai, Biochemistry, Fred Hutchinson Cancer Center
- Session
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Session O-2L: Brain and Behavior
- MGH 258
- 3:45 PM to 5:15 PM
The goal of our research is to understand how a nervous system integrates multiple sensory inputs, such as vision, touch, and olfaction, to direct the behavior of an animal. We use the nematode C. elegans as a model system because it has a well-defined neural circuit that can process multisensory information for its survival. Here, we set up an experimental paradigm to examine how two sensory inputs interact in the living neural circuits. C. elegans is given a primary stimulus – an attractive odor – and then a secondary stimulus – a gentle touch to its body. Our hypothesis is that the reflex avoidance response to touch is modulated by the attractive drive for animals to pursue favored odor. To provide the touch stimulus, we expressed the light-sensitive ion channel ChR2 in touch receptor neurons via the mec-4 promoter and presented the worms with blue light. As a response to touch, animals reliably carry out a reversal behavior. We find that while the worm is traversing to the attractive odor, it suppresses its natural response to touch, as quantified by the proportion of worms responding to the touch. Thus, our results suggest that C. elegans is a promising system to study the integration of multiple senses. Using this system, we will determine how neurons process complex sensory signals in living animals.
- Presenter
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- Rahul Kishore Chaliparambil, Senior, Neuroscience
- Mentor
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- Jennifer Deem, Medicine
- Session
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Session O-2L: Brain and Behavior
- MGH 258
- 3:45 PM to 5:15 PM
In the cold, the energy demands for heat production increase to defend core body temperature. A hyperphagic response must balance these energy costs, or body weight cannot be maintained. However, this hyperphagia may contribute to the problem of obesity in our general population, thus raising the importance of understanding the underlying neuronal mechanisms. We recently found in mouse models that agouti-related peptide (AgRP) expressing neurons located in the arcuate nucleus of the hypothalamus (ARC) are thermoresponsive and required for cold-induced hyperphagia. However, the afferent neurocircuit capable of driving AgRP neuron activity and modifying food intake drive in the cold is unknown. I recently assisted in identifying a novel population of tyrosine hydroxylase-expressing neurons located in the rostral paraventricular nucleus of the hypothalamus (PVH-TH). Using fiber photometry, we found these neurons respond similarly to AgRP neurons, increasing their activity with cold and reducing their activity in response to food-related cues. I found that hemogenetic activation of these rostral PVH-TH neurons mimics the effect of cold exposure on energy intake and elicits a modest thermogenic response. This study provides evidence for a link between thermoregulatory and food intake neurocircuitry in the mouse, setting the stage for further investigations into the role of ambient temperature on food intake drive. Because these systems are uncoupled in the setting of obesity, our findings may provide future therapeutic options for the treatment or prevention of obesity.
- Presenter
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- Ryan Matthew Gillis, Senior, Psychology Mary Gates Scholar, UW Honors Program
- Mentors
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- Sheri Mizumori, Psychology
- Kevan Kidder, Psychology, University Washington - Basso Lab
- Session
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Session O-2L: Brain and Behavior
- MGH 258
- 3:45 PM to 5:15 PM
The medial prefrontal cortex (mPFC) and hippocampus (HPC) are critical structures in a network that supports spatial working memory and flexible decision making in rats. The HPC has traditionally been implicated in episodic and spatial memory, while the mPFC has been studied for roles in working memory, response inhibition, outcome evaluation, and implementation of task rules and strategies. Flexible decision making is often tested via reversal learning (RL) paradigms in rats, monkeys, and humans. However, many studies have suggested that the mPFC is not necessary for RL, and fewer studies have shown that the mPFC is crucial for specific types of RL. We elucidate the role of the mPFC in spatial RL by optogenetically disrupting the mPFC during specific task phases, or epochs, of a spatial RL task. We also perform the same epoch-specific optogenetic disruption of the mPFC during a probabilistic reversal learning (PRL) task, which is compared to RL performance data to investigate how probabilistic contingencies recruit the mPFC differentially compared to absolute contingencies. In both experiments we analyze metrics such as choice accuracy, perseverative and regressive errors, and trials per reversal. Our data suggest that RL performance is only impaired when the mPFC is disrupted during the choice epoch of our task, while mPFC disruption during any epoch of the PRL task results in performance deficits. This suggests that the mPFC is involved in decision making processes and maintenance of probabilistic reward contingencies. This study contributes to knowledge about the mPFC in reward-guided decision making and can give insight into how impaired behavioral flexibility is caused by mPFC dysfunction, which is implicated in neurological disorders including depression, schizophrenia, and others.
- Presenter
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- Akanksha Mishra, Senior, Physics: Comprehensive Physics Mary Gates Scholar
- Mentor
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- Boris Blinov, Physics
- Session
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Session O-2M: Physics and Physics Education Research
- MGH 248
- 3:45 PM to 5:15 PM
Trapped ions is an approach to quantum computing that proposes to store qubits in the stable electronic states of ions. These qubits transition from one state to another by absorbing or emitting photons. This process is known as quantum jumps. The absorption and emission of photons by individual ions become coherent processes at sufficiently small separations. The goal of our project was to observe these collective effects by observing the quantum jump rate in systems of multiple ions. We identified quantum jumps by observing sudden changes in the number of photons emitted by an ion. In our preliminary analysis we found a proportional relationship between the quantum jump rate and the number of ions in a chain. However, due to the presence of noise from neighboring ions, our results had significant errors. To minimize the randomness introduced by noise, we counted the number of photons in small intervals of “integration time” and evaluated the optimal transition rate by minimizing incorrect identification of jumps. We hypothesize that the transition rate of ions depends on the number of ions in our system. A deeper understanding of quantum jumps may possibly help us control them and eventually be used to correct errors in quantum computing involving trapped ions.
- Presenter
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- Alexandria Joan Cobb, Junior, Physics: Teacher Preparation
- Mentors
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- Suzanne White, Physics
- Charlotte Zimmerman, Physics
- Session
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Session O-2M: Physics and Physics Education Research
- MGH 248
- 3:45 PM to 5:15 PM
Current physics education research has demonstrated that, when not taught directly, students have a wide range of conceptual resources regarding the use of variables upon entering introductory physics. There is a growing body of work that characterizes students’ use of variables and how students connect variables to their physical meaning (Brahmia 2019). We build on this work by seeking to better understand how students are making sense of variables in introductory physics labs. Data was collected from students’ responses to lab curriculum on the online lab platform, Pivot Interactives, from the 2020-2021 academic year. By examining students’ variable choice when graphing experimental data over the course of a quarter, we are able to identify emerging commonalities in variable use and how the variables students choose correlates with the students’ broader understanding of quantitative reasoning. Preliminary data from student graphs of position versus time show a prevalence of students using math-like variables, such as y and x, instead of variables traditionally used to represent these quantities in physics, such as x to represent position and t to represent time. Use of math-like variables in a physical context suggests that these students’ may have not yet formed a strong association between the variable itself and the meaning of the physical quantity it represents. Insights into student variable use and its relationship to the students’ overall quantitative reasoning can help instructors consider effective methods that adapt curriculum to directly address the use and meaning of variables within physics. By doing so, instructors may have an opportunity to directly impact their students’ quantitative reasoning – a skill valued across all STEM disciplines.
- Presenter
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- Isobel Maclean Williamson, Senior, International Studies UW Honors Program
- Mentors
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- Maria Elena Garcia, Comparative History of Ideas
- José Antonio Lucero, International Studies
- Adam Warren, History
- Session
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Session O-2O: Pathways to the Past: Approaches to History in Undergraduate Research
- MGH 287
- 3:45 PM to 5:15 PM
This paper and counter-tour will examine the relationship between tourism, the silencing of Martinican activism in international media, and the legacy of colonialism. Martinique is located in the southeastern Caribbean, and has been colonized by France since the mid-1600s. Victor Schoelcher was a French abolitionist who has received much more credit than he is owed for emancipation in the French Caribbean. The project explores the tourism industry and international media’s role in upholding dominant narratives around Schoelcher that are rooted in white saviorism. The questions this research seeks to answer are: What is the relationship between tourism and schoelcherisme, which is the glorification and mythologism of Victor Schoelcher? How does activism on Martinique that challenges white supremacy and colonialism bring to light truths that the tourism industry attempts to conceal in its messaging? The approach to answer these questions involves critical analysis of tourist websites and brochures. This project will also incorporate social media and publications of Martinican writers and activists. The counter-tour will illustrate how the tourism industry invisibilizes the work of activists to challenge Schoelcher’s material legacy, keeping their work from receiving international attention. This research project will challenge depictions of the island that are interwoven into the tourist industry’s advertisements and Western perceptions of Martinique, and highlight means of resistance to white supremacy and colonialism.
- Presenter
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- Katie Ward, Senior, Gender, Women, and Sexuality Studies Mary Gates Scholar
- Mentors
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- Maria Elena Garcia, Comparative History of Ideas
- José Antonio Lucero, Comparative History of Ideas, Jackson School of International Studies
- Adam Warren, History
- Session
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Session O-2O: Pathways to the Past: Approaches to History in Undergraduate Research
- MGH 287
- 3:45 PM to 5:15 PM
Stereotypes around femininity, as presented to young Women, have historically not been inclusive. Often consisting of single-story one-dimensional white male ideals of femininity. Young Women could either lean into the stereotype or turn away, the dismissal often created new stereotypes due to a lack of strong feminist representation like the “I’m not like other girls” trope. The exposure to these white feminine stereotypes created cracks in a young Woman’s relationship with femininity and what it means to be girl. Causing a shift to anti-feminist and sexist thought while developing internalized misogyny. This presented externally as Women hating behavior that supported the learned mindsets of white men on the sexualization, degradation, and general treatment of other Women. The patriarchal system influenced this young Woman and others across the country in their homes, in their classrooms, each night on television, reinforced on the covers of teen magazines, through the eyes of their fathers and actions of their mothers. This young Woman functioned as a monument to the Patriarchy. Acting for the best interest of the heteronormative white male experience. I was the monument. With a lack of strong feminist representation, I instead turned into a living, breathing, and sometimes ‘preaching’ monument to the patriarchy. Through autoethnography and research of pop culture from the 1990s and 2000s, friends, family, members, and television shows. I will analyze my own experience to identify and understand my journey from anti-feminist to feminist. Answer how I was manipulated by the heteropatriarchy and colonialism to be antifeminist, to hate other Women, and actively cause harm to others based on their expression of femininity. Understanding the way in which I was once an image fighting for feminine oppression to help others unlearn too.
- Presenter
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- Jordan Ferrand-Sapsis, Senior, Comparative History of Ideas Mary Gates Scholar
- Mentor
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- Maria Elena Garcia, Comparative History of Ideas
- Session
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Session O-2O: Pathways to the Past: Approaches to History in Undergraduate Research
- MGH 287
- 3:45 PM to 5:15 PM
The United States established itself as a cohesive and internally policed nation-state through a process of exclusion through border making and racialized violence. Above all, the construction and regimentation of the state involved practices that sought to naturalize the borders of the United States in order to endow its barriers with an immutable solidity. This solidity was ratified through physical demarcation, legislation and violence directed at those deemed “other,” both human and non-human. By relying on a constructed archive that documents the federally organized Gray Wolf eradication programs in the borderlands of Arizona and new Mexico from 1880 until 1930, I demonstrate how the delineation of the United States/Mexico border was both preceded and continues to be perpetually defined by policies that enact precisely these kinds of exclusionary measures. I will show how this federally mandated dominance over the lives and the habitats of non-human animals was utilized by analogous procedures to surveil and police the border in their effort to bolster and sustain the United States as a settler-colonial state. By revealing otherwise concealed historical insights, I hope to undermine the prevailing conceptions of national boundaries by denaturalizing the illusion of fixed, constant, and enduring lines of demarcation and consequently offer opportunities to envision a world without such divisive separations. Such a vision would allow for the recognition of borders not as sites of inclusion, but as spaces built on methodical exclusion of both human and non-human beings.
- Presenter
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- Simon Ferry, Senior, French, History
- Mentor
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- Kyle Haddad-Fonda, History
- Session
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Session O-2O: Pathways to the Past: Approaches to History in Undergraduate Research
- MGH 287
- 3:45 PM to 5:15 PM
The Suez Crisis of 1956 was a critical turning point in the decline of the French and British empires following the end of the Second World War. Egyptian President Nasser's nationalization of the French and British-controlled Suez Canal sent officials in both countries into a panic, leading the two nations, together with Israel, to invade Egypt. The short-lived and unsuccessful invasion, ended under pressure from the United States, was a decisive political failure after years of colonial losses since 1945. While scholars have written in depth about the crisis from Britain's perspective, they have tended to oversimplify France's motivations as stemming from the ongoing Algerian War of independence and the fear that President Nasser would become the "next" Hitler. In my research, I examine the Suez Crisis in the larger context of the French colonial issues of the time: the Battle of Dien Bien Phu, the losses of Tunisia and Morocco, the bomb attacks against pied-noir citizens in Algiers, the impending losses of the Sub-Saharan colonies, and the diplomatic efforts to include these colonies in European treaty negotiations. I focus on English and French-language sources, including the memoirs of former government officials, diplomatic communication, press coverage, and academic writing from the period to examine how the crisis was seen through these lenses in France. Ultimately, I demonstrate that French motivations during the crisis stemmed just as much from these broader colonial anxieties as from the two most common explanations. The topic of the French empire and its former "great power" status has remained a contentious one in France throughout the last half century. This research showcases a significant moment in the development of this mindset.
Poster Presentation 3
2:30 PM to 4:00 PM
- Presenter
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- Kayla Mackenzie Pitts, Senior, Biology (Molecular, Cellular & Developmental)
- Mentors
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- Sam Golden, Biological Structure
- Mitra Heshmati, Anesthesiology, Biological Structure
- Session
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Poster Session 3
- MGH 241
- Easel #70
- 2:30 PM to 4:00 PM
Exploring the neural mechanisms modulating complex social behavior requires a holistic understanding of both central and peripheral body states. In freely interacting mice, social behaviors are often registered by changes in autonomic nervous function, including altered blood pressure, heart and breathing rates, and core body temperature. Unfortunately, these physiological metrics are difficult to obtain during complex social behavior due to substantial hardware requirements, like collars and tethers, restricting full movement and interaction. In collaboration with an industry partner, we are developing a fully implantable, battery-free device for wireless data acquisition of physiological data, including heart and respiratory rate, temperature, and other behavioral information such as locomotion and orientation of mice using biomechano-acoustic (MA) methods. Here, we validate the use of MA devices in both anesthetized and freely moving mice. First, we tested MA devices during emergence from anesthesia and compared anesthetized recordings using MA devices to a widely used and commercially available rodent pulse oximetry device. Second, we obtained MA recordings in freely interacting mice during complex social behaviors. This technology represents a crucial advanced tool for experimental behavioral research that enables non-invasive operations in cages with simple or complex environments in an individual or groups of animals.
- Presenter
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- Daniel Lahn, Senior, Environmental Science & Resource Management
- Mentors
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- Berry Brosi, Biology
- Kaysee Arrowsmith, Biology
- Annie Schiffer, Biology
- Session
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Poster Session 3
- MGH 241
- Easel #73
- 2:30 PM to 4:00 PM
Global climate change is likely to have an effect on plants, pollinators, and the interactions between the two ecological groups. Recent studies have suggested that climate change may affect the growth and development of these organisms in the long-term, but variations in temperature could also change the short-term behavior of pollinators when they visit plants. For instance, pollinators with certain physical traits might be better suited to forage in areas with higher or lower temperatures. In this study, I explored this idea with the assumption that the foraging decisions of pollinators are indicative of the temperatures that they are flying at. I addressed the questions of 1) how variation in temperature affects pollinator traits? and 2) are certain pollinator traits correlated with differences in the identities and traits of the plants that they are captured visiting? To answer these questions, I measured the size of bees collected in the Rocky Mountains during the summer of 2021, and I compared these sizes to the temperatures at the sites at which the bees were caught. I predicted that 1) pollinator traits would correlate with temperature, and 2) the interactions in my data analysis would show trait matching between the pollinators and the plants that they were visiting when caught. The results of this study should help illustrate how the impacts of climate change might affect plant-pollinator communities, which could help to identify potentially advantageous traits as well as interactions that may be flexible or persistent during changing climatic conditions.
- Presenters
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- Amanda C. Ong, Senior, Computer Science UW Honors Program
- Saharsh Parakh, Senior, Electrical Engineering
- Mentor
-
- Jeffrey Herron, Neurological Surgery
- Session
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Poster Session 3
- Commons East
- Easel #23
- 2:30 PM to 4:00 PM
Essential Tremor (ET) is the most common neurological movement disorder, impacting approximately 1% of the global population. Symptoms of the disorder are characterized by involuntary rhythmic motions of affected body parts and range greatly in tremor severity. As the disease progresses, pharmacological treatments often fail, requiring implantation of a deep brain stimulation (DBS) device to suppress symptoms. Effective treatment requires exhaustive physician tuning of stimulation parameters, which include numerous clinician visits for patients. One way that clinicians assess symptoms is to ask patients to perform behavioral tasks such as drawing spirals, which indicate non ideal stimulation through tremor patterns in the drawing. The goal of this study was to explore the feasibility and options for remote collection of symptom assessments, as well as to explore methods for detecting and characterizing tremor based on spiral features. Consented patients performed spiral drawing tasks multiple times a day on a personal digital assistant such as a smartphone with the collected data securely stored on the cloud. To ensure that access to a mobile device wouldn’t disqualify participants, we developed a device loaning process used in addition to an application developed by Runelabs as supporting infrastructure to collect data. The results of our research showed that we could not only collect data remotely over extended periods of time, but also replicated HOG (Histogram of Oriented Gradients) based classification algorithms on existing datasets to distinguish healthy vs tremor spirals with up to 94.5% accuracy. Previous lab-published results on the same dataset demonstrated a 98.3% accuracy using Principal Component Analysis, which illustrates the strength of our lab's prior work, though the higher efficiency of HOG classification is promising for larger datasets. This demonstrates our methods’ potential to allow for larger patient cohorts and possible integration with other inertial sensor data into a tremor classification model for future studies.
- Presenter
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- Kai Nylund, Senior, Computer Science, Comparative History of Ideas
- Mentor
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- Daniel Birman, Biological Structure
- Session
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Poster Session 3
- MGH 241
- Easel #68
- 2:30 PM to 4:00 PM
Recent advances in neural recording technology are allowing scientists to record data at unprecedented scale. For example, the International Brain Lab (IBL) is a consortium of 22 labs working together to produce mouse brain recordings using high-density Neuropixels probes. In total, the IBL stores data from over 1000 sessions which provide a picture of neural activity across the entire mouse brain. At this scale, traditional static images and visualizations fail to communicate the results of neural analyses for brain wide activity and time-dependent behavior. As a tool for researchers in the IBL and undergraduate courses, we are developing 3D visualization software, the Virtual Brain Lab (VBL), capable of rendering a complete view of neural activity in the mouse brain in a simulated interactive laboratory. In my role as a developer, I am building tools to (1) rescale trial-averages around events and replay neural responses with variable event timings and (2) replay a single trial recorded in the IBL. Our simulation is built using the software package ‘Unity,’ allowing easy construction of custom 3D environments and publishing to diverse devices from laptop browsers to tablets, to virtual reality headsets. Displaying event-averaged neuron activity and single-trial replays will help IBL researchers spot anomalous data and holistically view their recorded sessions. Additionally, researchers can use our software to generate high-quality figures and videos for papers, outreach, and presentations. Finally, a host of key neuroscience concepts, such as sensory and motor coding and correlated variability are only communicated to students via dry lectures or textbook figures. Expensive lab classes in which students perform neuroscience experiments to rediscover these concepts are inaccessible to schools with fewer resources. Using our framework for visualization, we can build and distribute simulated tutorials and labs for students at little to no cost – reducing barriers for neuroscience education.
- Presenter
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- Thanh Viet Tran, Senior, Biochemistry Innovations in Pain Research Scholar
- Mentors
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- Ajay Dhaka, Biological Structure
- Kali Esancy, Biological Structure
- bryce lecamp, Biological Structure
- Session
-
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Poster Session 3
- MGH 241
- Easel #69
- 2:30 PM to 4:00 PM
Pain is one of the key contributing factors on why people seek medical attention and healthcare globally due to its negative effects on both patients and their families. Therefore, understanding the circuits that control pain and how noxious stimuli contribute to the assignment of negative valence is critical for discovering novel analgesics for pain treatment. Analgesic Screen 1 (AS1), a small molecule screened in our lab, has been shown to reverse the valence of painful noxious stimuli and renders them attractive. Using zebrafish as a model for the study, we performed several different behavioral assays that give them a choice between a neutral and noxious stimulus for various sensory modalities. The stimuli that we tested were temperature, chemical and light/dark preference. Interestingly, we found out that in all these assays, AS1 managed to elicit attraction to the noxious stimuli. We tested different receptor agonists and antagonists to pinpoint the exact underlying mechanisms and found out that AS1 affected the dopaminergic circuitry, specifically the D1 receptors. Therefore, we believe that AS1 is valuable in understanding the neural mechanisms that allocate negative valence to nociceptive stimuli and help us find novel treatments for pain.
- Presenter
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- Anika Alison Lindley, Senior, Psychology UW Honors Program
- Mentor
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- Sara Jane Webb, Psychiatry & Behavioral Sciences, Seattle Children's Research Institute
- Session
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Poster Session 3
- Commons West
- Easel #9
- 2:30 PM to 4:00 PM
Associations between aggression and social functioning have been identified among typically developing individuals; however, the link between aggression and social concerns among individuals with Autism Spectrum Disorder (ASD) is not well understood. While aggression is not considered a defining feature of ASD, it is observed at elevated levels and is associated with increased risk of harm to the self and others, and reduced opportunities for social relationships and learning. The aims of this study are to determine whether 1) there is a concurrent association between aggression and impairments in social functioning among children with ASD, 2) aggression can predict social functioning among children with ASD six months later (T2), and 3) peer relationships mediate the potential link between aggression and social deficits among children with ASD. We analyzed data from 399 (ASD- 280) children ages 6 -11 years who were enrolled in the Autism Biomarkers Consortium for Clinical Trials (ABC-CT). We used Spearman’s correlation to understand a potential relationship between aggression and social functioning. To investigate whether aggression can be used to predict social impairments, we compared a series of linear models with social ability at T2 as the outcome variable, and age, sex, aggression, and group (ASD or typically developing) as predictor variables. Peer relationship data was only available for participants with ASD so we ran a mediation analysis among this group to determine whether peer relationships mediate the link between aggression and social deficits. We hypothesized that there would be a positive association between aggression and concurrent social impairments, the best-fit model would include aggression as a predictor variable, and peer relationships would mediate the link between aggression and social impairments. The results of this study may provide information that can be used to optimize interventions for individuals with ASD, improving their quality of life.
- Presenter
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- Wesley George, Senior, Biology (Molecular, Cellular & Developmental)
- Mentors
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- Jennifer Nemhauser, Biology
- Hardik Gala, Biology
- Session
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Poster Session 3
- MGH 241
- Easel #79
- 2:30 PM to 4:00 PM
Plants make their first root in the embryo, which is then called the primary root. Roots that emerge from the primary root later in development are called lateral roots (LRs). LRs are important for providing stability to the plant, and assisting in acquisition of nutrients and water. I am using LRs to understand how cell division (the cell cycle) is connected to developmental transitions. Previous studies have shown plant hormones auxin and cytokinin play important roles in cell division and LR organogenesis. Cells that have the capacity to become LRs with the right signal are called founder cells. Founder cells form when a few undifferentiated cells in the primary root respond to a pulsatile auxin signal to become ‘specified’ LR stem cells, retaining potential to proliferate and the ability to differentiate into LR. These specified LR stem cells arrest in the G2 phase of the cell cycle, respond to auxin signaling, and undergo rounds of cell division, marking the onset of LR development. In this study, I investigated whether G2-arrested cells in the specification stage are receptive to auxin and cytokinin. Specifically, I analyzed LR primordia shape, LR developmental progression, and LR density in response to treatment with auxin and cytokinin in plant lines where the cell cycle is disrupted. Preliminary results reveal an increased density of LRs in plants with a long G2/M transition when they are exposed to auxin. This suggests that progression through the cell cycle may reduce auxin sensitivity. The understanding gained from these experiments is helping build a framework for how the cell cycle contributes to LR development, allowing for future genetic modifications to improve root structure in crop plants.
- Presenter
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- Rohita Rangu, Senior, Biology (Molecular, Cellular & Developmental) Mary Gates Scholar, UW Honors Program
- Mentors
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- Sakeneh Zraika, Medicine, VA Puget Sound Health Care System
- Breanne Barrow, , Seattle Institute for Biomedical and Clinical Research (SIBCR)
- Session
-
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Poster Session 3
- MGH 241
- Easel #64
- 2:30 PM to 4:00 PM
Coronavirus disease 2019 (COVID-19) is caused by SARS-CoV-2 infection. COVID-19 is associated with higher risk of new-onset diabetes and metabolic complications of diabetes, which may occur via injury to insulin-producing islet β cells due to direct SARS-CoV-2 entry. While the canonical pathway of viral entry via human angiotensin converting enzyme 2 (ACE2) has been established as a major route of SARS-CoV-2 infection in the lung, expression of ACE2 has not been unequivocally demonstrated in beta cells. It is therefore important to understand how other proteins known to be highly expressed in pancreatic endocrine cells may be involved in SARS-CoV-2 entry. Glucose regulatory protein 78 (GRP78), also known as binding immunoglobulin protein (BiP), is an endoplasmic reticulum (ER) chaperone. Under conditions of ER stress, as induced by SARS-CoV-2 infection, GRP78 translocates from the ER membrane to the plasma membrane, where it has been shown to bind to SARS-CoV-2-spike in vitro. Previous studies have found GRP78 to aid the entry of other coronaviruses. As GRP78 is expressed in β cells, we investigate GRP78-mediated SARS-CoV-2 entry into β cells using a mouse β cell line, wherein mouse ACE2 is unable to bind SARS-CoV-2-spike. To promote GRP78 translocation to the plasma membrane, ER stress is induced using thapsigargin or cytokine treatment. Verification studies involve validating the upregulation of GRP78 at the mRNA level and in plasma membrane fractions. A cell fractionation protocol has been adapted to isolate plasma membrane protein from other cellular fractions. Further experiments will involve the use of a pseudovirus system to investigate SARS-CoV-2 entry under conditions of GRP78 overexpression and knockdown. Studying SARS-CoV-2 entry into β cells may illuminate possible therapeutic strategies to protect islets from the deleterious effects of COVID-19, including the development of diabetes.
- Presenter
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- Ava Virginia Kloss-Schmidt, Senior, Biology (Plant) Mary Gates Scholar, UW Honors Program
- Mentors
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- Adam Steinbrenner, Biology
- Antonio Chaparro, Biology
- Session
-
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Poster Session 3
- Balcony
- Easel #53
- 2:30 PM to 4:00 PM
Plants recognize insect herbivore attack by detecting molecular patterns in their oral secretions. Steinbrenner et al. have recently identified a host plant receptor for one such pattern, termed the Inceptin Receptor (INR). INR binds herbivore-derived inceptin peptide and confers signaling and defense responses in response to inceptin, including a measurable burst of reactive oxidative species and the gaseous hormone ethylene. INR is present only in species of the legume subtribe Phaseolinae (e.g., common bean, Phaseolus vulgaris). INR was previously studied using heterologous expression in tobacco, but the role of INR in beans themselves has not been studied due to difficulty of genetic transformation and knockout approaches. I have created a backcrossed line of common bean introgressing a naturally occurring inr- mutation into a genome sequenced variety. Inceptin response is compromised in inr- near isogenic lines. I plan to use the inr- near isogenic line to measure the contribution of INR to caterpillar feeding relative to wild type plants. To quantify the feeding habit of caterpillar species when fed these two lines, I optimized a high throughput herbivory assay and imaging pipeline to quantify feeding behavior and tissue consumption. We hypothesize that plants lacking INR will show reduced deterrence, increased tissue consumption, and increased larval weight gain upon caterpillar feeding. Understanding how plants sense attack will help us to develop varieties that are resistant to pests and pathogens.
- Presenter
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- Heather Yang, Junior, Informatics
- Mentor
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- Heather Whiteman, Information School
- Session
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Poster Session 3
- Commons West
- Easel #4
- 2:30 PM to 4:00 PM
While millions of Americans have been diagnosed with Attention-Deficit Hyperactivity Disorder (ADHD), many undiagnosed individuals suffer from at least one of ADHD’s symptoms. Symptoms such as poor attention spans, lack of attention to detail, loss of focus, and many more can affect anyone’s life—in the workplace, at school, and during social engagements. This project seeks to explore how technology usage affects the development and existence of attention-deficit behaviors. We want to focus on specific technological platforms and explore any possible influence on attention-deficit behaviors. To do this, we are utilizing a mixed methods approach of case studies and surveys to evaluate the presence of attention-deficit behaviors, frequency and methods of technology usage, and relationships between the two. Using surveys and psychological scales of measurement for ADHD, we can gather a holistic understanding of how the general population uses technology and how attention-deficit behaviors present themselves. Our case studies reinforce information gathered from these surveys and provide more detailed data to enable a comprehensive analysis. We predict that high volumes of technology usage, especially within certain platforms, can encourage the development of attention-deficit behaviors and exacerbate existing issues with attention. If we find this to be true, our results can guide the design and delivery of future informational content within education institutions and workplaces. These results can also encourage a re-evaluation of technology usage to reduce attention deficient behaviors.
- Presenter
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- Valerie Shiou Ching Tsai, Senior, Neuroscience Levinson Emerging Scholar
- Mentors
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- Sam Golden, Biological Structure
- Eric Szelenyi, Biological Structure
- Session
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Poster Session 3
- Balcony
- Easel #56
- 2:30 PM to 4:00 PM
The pairing of high-resolution volumetric imaging methods with cellular markers of neural activity holds network-level explanatory power over behavior. However, common statistical analysis approaches fall short in capturing the functional relationships between brain regions across multiple spatial dimensions. Here, we propose combining unsupervised machine learning clustering methods with network graph theory visualization to reveal intricacies from these data beyond conventional standards. We demonstrate the feasibility of this approach on a recent single-cell dataset describing the longitudinal changes of brain-wide activation during relapse to palatable food in mice. We applied a new analytical framework combining the functionality of two open-source programs: (i) Histo-Cytometric Multidimensional Analysis Pipeline (CytoMAP), packaged with unsupervised k-means clustering and t-distributed stochastic neighbor embedding (t-SNE), and (ii) Cytoscape, a network analysis program. Hierarchical radial network diagrams were applied to the dataset in which we visualized the anatomical organization of regions that underwent statistically significant changes in activation. Across abstinence duration, we found an initial suppression in activation followed by widespread increases in activation. This increase correlated with observed behavioral changes and appeared to be triggered by activation hotspots. We next interrogated the co-activational relationships amongst the >900 brain regions by running unsupervised t-SNE dimensionality reductions on the data from each experimental group. These results were validated using k-means clustering and Davies-Bouldin indexing. We observed an intuitive segregation of regions dependent on activation status. Cluster number decreased in a time-dependent manner, suggesting increases in modular processing are associated with increased activation due to abstinence length. This trend indicated that cluster membership of regions likely also changed in a time-dependent fashion, indicating a dynamic recruitment effect at a regional level underlies abstinence-related relapse vulnerability. By analyzing cellular whole-brain data in this novel manner, we gained new insight into a previously unexplored dimension of brain activation dynamics underlying complex behavior.
- Presenter
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- Gabriel Lau, Senior, Biochemistry UW Honors Program
- Mentors
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- Elaine Faustman, Environmental & Occupational Health Sciences, Institute for Risk Analysis and Risk Communication
- Jill Falman, Environmental & Occupational Health Sciences, IRARC
- Session
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Poster Session 3
- Commons West
- Easel #6
- 2:30 PM to 4:00 PM
Understanding the human health effects from marine plastics is an emerging field of public health. Marine plastic waste contributes to a global plastic problem. Evaluating health impacts from marine litter requires approaches that characterize plastics as well as health perceptions from different populations. This project contains two parts: 1) a focused review of nanoplastic methodologies to frame how standardization is needed to compare findings across studies and measure health effects and 2) a household survey to understand how marine plastics impact well-being in two coastal communities in Ghana. The meta-analysis on nanoplastic techniques showed a variety of techniques are used, among which the most common are Raman spectroscopy and Pyrolysis Gas Chromatography Mass Spectrometry. Different definitions of nanoplastics were identified across studies, where “nanoplastic” was most commonly defined as a plastic polymer with a diameter less than 1000 nanometers. The meta-analysis also showed that many studies analyzed spherical polystyrene because they are easy to obtain rather than other plastic polymers that are representative of environmental exposure. The Ghana survey included a quantitative analysis of demographics, plastic dependency, stress, well-being, and perceptions on plastic waste management. The majority (72%) of Ghana survey respondents were of low socioeconomic status (making less than 355 Ghanaian Cedi a month (~54 United States Dollars) during the pandemic). Many respondents agreed that plastics have improved their quality of life but expressed concern about plastics effects on their health and livelihood. As the field of marine plastics develops, robust standardized techniques must be adopted and real world nanoplastic samples need to be included in studies. Considerations of equity and health outcomes should be in place as well. Understanding how different populations, especially underserved and marginalized communities, perceive and use plastics is instrumental for solving this global plastic problem.
- Presenter
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- Christine Hau, Senior, Psychology UW Honors Program
- Mentor
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- Samira Moorjani, Physiology & Biophysics
- Session
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Poster Session 3
- Commons East
- Easel #27
- 2:30 PM to 4:00 PM
In the United States, 296,000 people live with spinal cord injury (SCI)1. SCI is one of the most debilitating neurological conditions due to the crucial role played by the spinal cord in everyday life. The current treatments for SCI involve invasive surgeries, such as spinal laminectomies and decompressions, which are often paired with non-invasive therapies, such as medications and physical rehabilitation. Despite major innovations in medicine, regeneration of central nervous system (CNS) neurons remains challenging. As a result, reorganization and adaptation, promoted by current therapies, play key roles in recovery after CNS damage with physical rehabilitation being the gold standard of treatment after SCI. Recent SCI research in our laboratory has focused on development of neural interfaces for targeted, intraspinal delivery of plasticity-enhancing neuromodulators, such as brain-derived neurotrophic factor and serotonin. In these experiments, neuromodulator delivery was paired with use-dependent physical rehabilitation on a forelimb reach-and-grasp behavior that is directly impaired by the cervical SCI. We found that our combined intervention promoted greater forelimb-motor recovery compared to physical training alone. However, there were variabilities in the recovery profiles across animals with similar injuries within the same intervention group. Low levels of motivation can lead to less engagement in physical therapy and may be contributing to the observed variabilities. The purpose of this study is to assess motivation levels in spinal-cord injured rats to understand how it affects forelimb-motor recovery given our interventions. Motivation levels will be assessed before, during, and after therapy to examine its influence on motor recovery. We will also assess how SCI and motor recovery impact animal motivation. Preliminary analysis in 6 adult female rats, whose motivation levels were compared before and after injury, shows that SCI lowers motivation (t(5) = 3.052, p = .03, paired samples t-test). Experiments in additional rats are currently ongoing.
- Presenter
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- Trinity Chhay, Senior, Political Science
- Mentors
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- Rebecca Thorpe, Political Science
- Ryan Goehrung, Political Science
- Session
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Poster Session 3
- Commons West
- Easel #1
- 2:30 PM to 4:00 PM
The purpose of this study is to test the relationship between xenophobic rhetoric and Asian American and Pacific Islander (AAPI) political mobilization. The COVID-19 pandemic, which originated in China, has led to undeserved blame and hatred towards Asian Americans during COVID’s early stages. As a result, discrimination against Asian Americans had increased by over 150 percent during the pandemic’s first year. I theorize that the increase of xenophobia will fuel mobilization based on feelings of victimization. Expectations from the study stem from a theory of mobilization that AAPI members will strive for political action instead of a withdrawal from politics when racial targeting is solely Asian-oriented and relies on negative, inaccurate stereotypes. In order to test the effects of discrimination, I will employ regression models to examine whether xenophobic tweets from former President Donald Trump lead to increased mobilization and solidarity among Asian-Americans in online settings from late 2019 until the suspension of his Twitter account in January 2021. I expect to find that xenophobic tweets with high exposure levels to these tweets–measured by the number of likes and retweets–lead to increased popularity in Google-searching terms related to AAPI mobilization (e.g., Asian American Resources, Stop Asian Hate, etc.).
- Presenter
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- Hannah Lee (Hannah) Han, Junior, Microbiology
- Mentors
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- David Baker, Biochemistry
- Danny Sahtoe, Biochemistry
- Session
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Poster Session 3
- Commons East
- Easel #37
- 2:30 PM to 4:00 PM
Designing binders for single beta strand and beta-hairpin peptides could be useful for a wide range of biomedical applications. This project aims to design peptide binders that force unstructured peptides into a beta strand conformation. The computationally designed peptide-binder pairs were expressed and purified utilizing Immobilized Metal Affinity Chromatography (IMAC) and characterized via Size-Exclusion Chromatography (SEC) and biolayer interferometry. Successful binders were redesigned to bind pathogenic fragments of Amyloid-beta, alpha-synuclein and tau. These fragments are known to form beta strand mediated fibrils in the brain that are associated with the development of neurodegenerative diseases like Alzheimer’s and dementia. I am currently characterizing the redesigned binders for Amyloid-beta and expect higher-affinity binding with these designs. Success of this project could provide a new tool in studying the fibril formations and allow for future drug therapies.
- Presenter
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- Jay Lee, Senior, Chemical Engr: Nanosci & Molecular Engr
- Mentors
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- Jim Pfaendtner, Chemical Engineering
- Orion Dollar, Chemical Engineering
- Session
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Poster Session 3
- Balcony
- Easel #57
- 2:30 PM to 4:00 PM
- Presenter
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- Karyn Tindbaek, Senior, Biology (Molecular, Cellular & Developmental)
- Mentor
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- Simon Snoeck, Biology
- Session
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Poster Session 3
- MGH 241
- Easel #83
- 2:30 PM to 4:00 PM
While it is established that plants generate defenses in response to herbivory, little is known about the specific elicitor-receptor interactions that initiate the immune response. The recently discovered inceptin receptor (INR), which is found in certain legume speices, recognizes an 11-amino acid polypeptide named inceptin (In11) commonly found in caterpillar oral secretions. INR is a receptor-like protein and consequently does not have a kinase domain, which is essential for initiating the signaling pathway that results in an effective plant immune response. However, we hypothesize that INR forms a receptor complex with coreceptors that transmit the initiating signal intracellularly. These coreceptors may also enable INR to recognize and respond to In10, a truncated version of In11 that is only recognized by Phaseolus vulgaris (common bean). To determine the specific function of these coreceptors, a genome-wide association study was performed to identify potential candidate genes; this analysis pointed us to the somatic embryogenesis receptor kinases (SERKs), which are known to play a role in many signaling pathways for plant immunity and have been found to associate with INR in response to peptide treatment. I cloned and coexpressed five common bean SERK proteins along with INR in N. benthamiana via agrobacterium mediated transformation and measured production of ethylene and reactive oxygen species as assays for inceptin perception and immune response. We found that most SERK homologs did not appear to modify INR function, although some homologs showed elevated immune outputs in the absence of inceptin. Further experiments involving these candidate genes, such as a western blot to verify interaction between INR and the SERK homologs, are needed to establish the function of these coreceptor candidates. By understanding cell surface signaling networks involved in INR signaling, we can implement more specified pest management systems that enhance crop resistance, making more sustainable agricultural practices.
- Presenter
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- Catherine Chia, Senior, Neuroscience, Anthropology, Biochemistry Mary Gates Scholar, UW Honors Program
- Mentors
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- Jonathan Posner, Chemical Engineering, Family Medicine, Mechanical Engineering
- Andrew Bender, Mechanical Engineering
- Session
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Poster Session 3
- Balcony
- Easel #61
- 2:30 PM to 4:00 PM
Hepatitis C (HCV) is a liver disease caused by the bloodborne HCV virus. When left untreated, HCV can lead to cirrhosis and liver failure. Recent developments in therapeutics present a cure for HCV; however, treatment must be received soon after infection to be effective. Thus, limited availability of HCV testing creates a barrier to treatment distribution as chronic HCV is identified through a detectable viral load. Current HCV testing involves polymerase chain reaction (PCR) testing of blood samples, requiring a central laboratory and technicians to run them. The delay between appointments, sample transportation, running PCR, and receiving results can lead to lost contact with patients, making it difficult to connect them with timely treatment. The goal of the project is to develop a rapid point-of-care assay for HCV nucleic acid testing that allows healthcare providers to diagnose chronic HCV in 30 minutes and immediately prescribe treatments. We designed and validated an isothermal nucleic acid amplification assay for detecting HCV RNA: a two-step process involving reverse transcription of HCV RNA into complementary DNA (cDNA) which is detected by recombinase polymerase amplification (RPA). RPA is an isothermal process held at 40℃ with a runtime of 15 minutes, where a fluorometer collects data from the reaction. We compared the results of our RPA detection assay to the PCR-HCV assay used by the UW Clinical Virology Lab. We tested RNA from all six major genotypes using serum samples from Harborview Liver Clinic, where we had a limit-of-detection of 25 copies per reaction. We were able to match the results of the RPA and PCR assays with 100% agreement. By developing a streamlined detection assay for HCV, we will contribute to HCV testing without the need for expensive machinery or trained technicians, increasing the testing availability to increase HCV treatment rate and decrease HCV prevalence.
- Presenter
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- Callie J. Lind, Junior, Bioengineering
- Mentors
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- Savannah Partridge, Radiology
- Anum Kazerouni, Radiology
- Session
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Poster Session 3
- Commons East
- Easel #28
- 2:30 PM to 4:00 PM
Prediction of response to preoperative or ‘neoadjuvant’ chemotherapy (NAC) can help guide treatment strategies for patients with triple-negative breast cancer (TNBC), a highly aggressive subtype of breast cancer. Breast magnetic resonance imaging (MRI) can provide noninvasive measurements of the microenvironment across a tumor volume. We hypothesize that pre-treatment measurements from dynamic contrast-enhanced (DCE-) MRI reflecting tumor perfusion and vascular function are predictive of NAC response for TNBC patients. Women with TNBC who underwent pre-treatment MRI and NAC at our institution (2005-2019) were retrospectively identified. DCE-MRI was acquired at 2, 5, and 8 minutes after contrast injection. From DCE-MRI, whole tumor contrast kinetics measures including functional tumor volume (FTV), percent enhancement (PE) at 2 mins post-contrast and signal enhancement ratio (SER) were calculated, and hotspot measures of peak PE and peak SER (representing the highest mean PE and SER, respectively, for 3?3 voxel subregions) were determined. Imaging measurements were compared between those with complete pathologic response (pCR; no residual cancer present in the breast at surgery) and non-pCR patients with a two-tailed Student’s t-Test (p<0.05 considered significant). 95 women (median age: 49, range: 30-79 years) with TNBC were evaluated, of which 29 (31%) achieved pCR. FTV was significantly higher in non-pCR patients (21.1±28.1 cc) compared to pCR patients (8.6±11.3 cc, p<0.01). Peak SER was also higher in non-pCR patients (1.8±0.3) compared to pCR patients (1.7±0.3), trending toward significance (p=0.06). No significant differences between groups were observed in peak PE measures. Patients with lower pre-treatment tumor FTV and peak SER on DCE-MRI were more likely to achieve pCR after standard NAC. These findings indicate that baseline DCE-MRI measurements may help predict response and assist in optimizing treatment plans for TNBC patients, such as selecting more aggressive regimens incorporating immune checkpoint inhibitors or other novel agents in predicted non-responders.
- Presenter
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- Jami Fung, Senior, Speech & Hearing Sciences
- Mentors
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- Bonnie Lau, Otolaryngology - Head And Neck Surgery
- Kelly Whiteford, Psychology, University of Minnesota
- Anahita Mehta, Psychology
- Session
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Poster Session 3
- Commons East
- Easel #25
- 2:30 PM to 4:00 PM
Pitch perception in noise is a critical skill for children to have because it allows them to enjoy music, understand speech, communicate, and learn in noisy real-world environments like playgrounds and classrooms. To date, little is known about how well school-aged children can discriminate pitch in background noise. In this study, we evaluated pitch perception in normal hearing children between 8 and 11 years of age (n=32) and adults (n=16) by administering a remote 3-Alternative Forced-Choice (3-AFC) adaptive pitch discrimination task on MATLAB Web Apps while monitoring participants’ behavior over Zoom. The study consisted of three conditions, each with three runs: (1) 200 Hz pure tone in quiet, (2) Resolved harmonics 2 to 9 of a 200 Hz fundamental frequency (F0) in noise and (3) Unresolved harmonics 12 to 19 of a 200 F0 in noise. Musical training and tonal language experience were documented in all participants. My role in this study included participant recruitment, data acquisition, analysis, and manuscript preparation. Preliminary analyses suggest that children perform worse in the condition with the higher numbered harmonics (unresolved condition), which is also more difficult for adult listeners. Moreover, improvement in all three conditions is observed with age, with the older children discriminating pitch as well as adults for both pure and complex tones. This study provides important insight into the developmental trajectory of pitch perception. In the next phase of analysis, we will investigate the role of music experience on children’s perception of pitch in noise.
- Presenter
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- Jonah David (Jonah) Kern, Senior, Bioengineering Mary Gates Scholar, NASA Space Grant Scholar
- Mentors
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- Cole DeForest, Bioengineering, Chemical Engineering
- Ross Bretherton, Bioengineering, Chemical Engineering
- Session
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Poster Session 3
- Balcony
- Easel #59
- 2:30 PM to 4:00 PM
Cells in the body grow inside the extracellular matrix (ECM), which is composed of a combination of carbohydrates and proteins, presenting chemical and mechanical cues to the cells inside. Nearly all cell types are sensitive to the mechanics of the ECM and respond to cues such as stress, strain, and curvature, which influence organism development and disease progression. Hydrogel biomaterials are water-swollen polymer networks that mimic the properties of the ECM in vitro, allowing researchers to study cellular behavior in a controlled environment. In this project, we aim to develop a hydrogel platform where strain on the material, generated by contractile cells embedded within it, can be activated externally by a researcher in order to induce curvature in an engineered tissue, which we will use to investigate the effects of mechanical cues on cells encapsulated inside the hydrogel. We have synthesized a peptide crosslinker that acts as a two-input Boolean AND gate, with one half degradable by cell-secreted enzymes and the other half degradable by sortase, a researcher-added enzyme. We predict that when a cell-adhesive hydrogel is made with this crosslinker, contractile cells will be unable to expand until the addition of sortase; after sortase degrades one arm of the cyclic AND-type crosslinker, they will be able to locally degrade the hydrogel, spread within the gel, and then contract to generate stress and strain. We intend to encapsulate immature cardiac stem cells partway through differentiation, predicting that curvature alone will trigger further specification of these cells into their mature subtypes. Understanding the mechanism by which mechanical cues affect development will help identify new therapeutic targets for diseases where tissue curvature is important, and it will also inform new stimuli to improve the similarity of tissue grown in vitro to native tissue.
- Presenter
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- Milana Premkumar, Senior, Health Studies (Bothell) Mary Gates Scholar
- Mentor
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- Sara Jane Webb, Psychiatry & Behavioral Sciences, Seattle Children's Research Institute
- Session
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Poster Session 3
- Commons West
- Easel #10
- 2:30 PM to 4:00 PM
Autism Spectrum Disorder (ASD) is a neurodevelopmental disorder characterized by communication and social impairments deficits. I am investigating alpha power, EEG activity between 8 and 12 Hz, which is found present during quietly resting with greater power (amplitude squared) when the individual's eyes are closed rather than when their eyes are open. This is thought to reflect increased cortical activation (decreased power) when eyes are open in preparation for attention and cognition. Previous research shows lower alpha power in individuals with ASD as compared to typically developing (TD) and has been associated with attention and cognition and social understanding and imitation in individuals with ASD. I plan to evaluate the association between eyes-closed EEG resting-state alpha power and social responsiveness in youth with and without ASD by gender and diagnosis. We collected data from 152 youth (ASD = 76) ages 8-17 years from an NIH-funded study investigating sex and gender differences in youth with ASD. The youth sat with their eyes closed while we collected high-density EEG data. A fast fourier transformation (FFT) was applied to artifact-free EEG data to extract alpha power for central and posterior electrodes. I calculated the Regions of interest (ROIs) for alpha power over: left frontal, mid frontal, right frontal, left central, left posterior, mid central, mid posterior, right central, and right posterior. Parents of children completed the Social Responsiveness Scale-2 (SRS-2), a 65-item rating scale measuring autism traits. I conducted a series of one-way ANOVAs, and correlations to evaluate the differences in frontal, central, and posterior alpha power x group (ASD/TD), gender (male/female), and associations with social responsiveness. Preliminary results comparing alpha power and social responsiveness show significant group differences. This research is important since it helps individuals currently affected with ASD and helps understand the larger class of neurodevelopmental disorders.
- Presenter
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- Lena Bae, Junior, Pre-Health Sciences
- Mentors
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- Jennifer Nemhauser, Biology
- Alexander Leydon, Biology
- Session
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Poster Session 3
- MGH 241
- Easel #80
- 2:30 PM to 4:00 PM
Corepressors are proteins that do not directly touch DNA but work with other proteins to keep the gene from being transcribed. TPL is a corepressor from the model plant Arabidopsis thaliana. While we understand a lot about how TPL works, there are still many mysteries remaining. The goal of my project is to identify other proteins that work with TPL to form a transcriptional repression complex at a single engineered promoter site. First, we created a synthetic repressor called dCas9-TPL that binds and represses the transcription of the RUBY reporter. The RUBY reporter is a visual marker expressed throughout the entire plant, turning the green plant a bright purple. Our engineered RUBY line also carries two guide RNAs in its promoter with sequences not found anywhere else in the Arabidopsis genome. This allows dCas9-TPL to bind to and repress this particular gene and not affect the transcription of other genes. We then crossed this transgenic plant line with plants expressing the dCas9-TPL repressor and the matching guide RNA. Visual screening of the Repressed RUBY line showed these plants turn faint whitish-pink instead of bright purple, signifying that the repression by TPL is working. I am currently on the next step which is identifying a homozygous line of Repressed RUBY to generate a mutagenesis population using the chemical EMS. Once I have these seeds, I will use visual screening to search for plants that have bright red or purple organs, which means that the repression by TPL is not working as well. By identifying regulators of corepressor function in plant biology, I hope to learn principles that can inform cellular engineering across many organisms and better understand why certain mutations associated with transcriptional repression cause developmental defects or diseases like cancer in humans.
- Presenter
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- Annabelle Huang, Senior, Biology (Physiology), Philosophy Levinson Emerging Scholar
- Mentor
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- Hans-Peter Kiem, Medicine
- Session
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Poster Session 3
- Commons East
- Easel #44
- 2:30 PM to 4:00 PM
Fanconi anemia is a serious genetic blood disorder caused by mutation in the FANC genes, responsible for the regulation of DNA interstrand crosslink repair. Failure of this mechanism results in chromosomal instability and is extremely damaging. Patients are also at a greatly increased risk for malignant cancers such as acute myeloid leukemia. The goal of the project is to develop novel methods to treat Fanconi anemia using gene therapy-based vectors, including a lentiviral vector containing an shRNA CD33 knockdown that confers selective protection, and to eliminate dangerous residual Fanconi anemia cells following treatment. Through in vitro validation, I will test several therapeutic vectors that provide a functional copy of the gene for correction of the FANCA defect and protection of corrected cells from drugs that target CD33, which are commonly used to treat secondary myeloid malignancies that often develop in Fanconi anemia patients. Then, using a FANCA -/- mouse model, I will use in vivo tests to determine if vectors can rescue the FANCA deficiency and provide selective protection using flow cytometry, cell and colony assays, and qPCR. I identify the more efficient lentiviral vectors for further tests. Together, these experiments are crucial in the development of a clinically viable blood stem cell-based therapy for Fanconi anemia that protects patients from the high risk of secondary malignancies such as acute myeloid leukemia that are so prevalent.
- Presenter
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- Konstantina Glorian Mason, Senior, Chemistry
- Mentors
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- Brandi Cossairt, Chemistry
- Micaela Homer, Chemistry
- Florence Dou, Chemistry
- Session
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Poster Session 3
- Commons East
- Easel #38
- 2:30 PM to 4:00 PM
Quantum dots are semiconducting nanomaterials that are useful in converting solar energy because of their high absorption and tunable photophysical and chemical properties. They can have various organic ligands bound to their inorganic surface, creating quantum dot-ligand systems useful for charge and energy transfers. When a quantum do is excited by external radiation, an electron inside the dot is promoted to a higher energy level and can be extracted form the quantum dot through the ligands surrounding the dot. We hypothesize that by binding the charge accepting ligand directly to the quantum dot, charge extraction from the quantum dot will be promoted. In my experiments, I am trying to determine the extent of ligand binding to the quantum dot and how this binding is affected by the identity of the binding moiety. To do this, I am synthesizing cadmium sulfiide quantum dots and attaching various ferrocene derivatives through a titration experiment. I analyze each step of the titration experiment for each quantum dot-ligand system with cyclic voltammetry (CV), an electrochemical technique that is sensitive to the diffusivity of the charge acceptor. The resulting CV curve can then be modeled with DigiElch to extract the favorability of the binding of the ligand to the quantum dot. Based on the magnitude of the equilibrium coefficients, we can determine which ligand binds most favorable to the quantum dot and compare this to the efficiency of charge extraction. This research has many applications, from solar energy to medical imaging, and the ability to extract charge outt of the quantum dot in an efficient and quick manner is one worth researching. This research is supported and overseen by Prof. Brandi Cossairt, and graduate students, Micaela Homer and Florence Dou.
- Presenter
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- Vivian Li, Senior, Biochemistry UW Honors Program
- Mentors
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- Kristina Adams Waldorf, Obstetrics and Gynecology
- Orlando Cervantes, Global Health
- Session
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Poster Session 3
- Commons East
- Easel #24
- 2:30 PM to 4:00 PM
Pregnant women are particularly vulnerable to influenza A virus (IAV) infections, which increases the risk for maternal mortality, hospitalization, preterm birth and stillbirth. The pathogenesis of IAV infections in pregnancy and the immunologic reasons for greater susceptibility to lung disease in pregnancy remains poorly understood. The CD4+ T helper Type 17 (Th17) cell-mediated response facilitates an early immune response critical for viral clearance of IAV and is impaired in mouse models of severe disease. Whether Th17 responses are important for exacerbating maternal IAV disease is unknown. We hypothesize that pregnant individuals have impaired Th17 responses in the blood and lungs, which exacerbate lung disease. We inoculated pregnant (N=6) and non-pregnant (N=5) pigtail macaques with IAV H1N1 2009 and collected serial blood and bronchoalveolar lavage (BAL) samples until Day 5 post-inoculation (peak disease) when we performed a necropsy. I am extracting RNA from maternal fluids and tissues to determine the IAV viral load and gene expression of Th17 transcriptional activators (e.g., RORc gene) using quantitative reverse transcriptase polymerase chain reaction (qRT-PCR). We will perform qRT-PCR on lung tissues at peak disease and peripheral blood mononuclear cells (PBMCs) across the infection time course. To better understand innate immune activation at peak disease, I will also analyze the expression of a 50-gene panel of innate immune genes in maternal lungs and plasma using a novel technique called Nanostring nCounter, which barcodes and counts mRNA transcripts. The advantage of this technique is that one can accurately quantify mRNA transcripts in a multiplex manner from very small samples. Finally, we will link data from flow cytometry, qRT-PCR and the nCounter to assess the Th17 cell-mediated response and innate immune activation to investigate the susceptibility of pregnant individuals to severe lung disease after IAV infection.
- Presenter
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- Zakriye Omar Mohamed, Senior, Biology (General)
- Mentor
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- Lorenzo Giacani, Medicine
- Session
-
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Poster Session 3
- MGH 241
- Easel #65
- 2:30 PM to 4:00 PM
Syphilis is a chronic sexually transmitted infection that is caused by the spirochete bacterium Treponema pallidum subsp. pallidum (T pallidum). Although syphilis is mistakenly believed to be a disease of the past, it is actually still endemic in low and middle-income countries, and it has been steadily resurgent in high-income nations, including the USA, for the past 20 years. An effective syphilis vaccine would greatly help curtail syphilis spread. Our current understanding of syphilis pathogenesis suggests that for a syphilis vaccine to be effective, it must induce antibodies able to opsonize antigens on T. pallidum surface to induce pathogen ingestion by macrophages. To this end, we used three T. pallidum putative surface antigens as vaccine candidates, which belong to the T. pallidum repeat (Tpr) protein family, specifically TprC, TprK, and TprD2. Once synthesized as recombinant antigens, New Zealand White (NZW) rabbits were immunized every three weeks with a total of five injections, and then challenged with infectious T. pallidum on their shaved backs. After the challenge, the efficacy of the vaccine candidate was tested by monitoring several correlates of protection, including lesion development and treponemal burden within the injection sites. Immunization with the TprC and TprK antigens induced attenuated lesions and reduced treponema burden, but not immunization with TprD2. Although at the end of the experiment all the rabbits were positive for syphilis infection based on serology, we demonstrated that TprC and TprK were effective in inducing partial protection, and therefore should be considered as vaccine candidates for this serious infection.
- Presenter
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- Kaya Bramble, Senior, Industrial Engineering: Data Science
- Mentors
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- Lianne Sheppard, Biostatistics, Environmental & Occupational Health Sciences
- Amanda Gassett, Environmental & Occupational Health Sciences
- Session
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Poster Session 3
- Commons West
- Easel #5
- 2:30 PM to 4:00 PM
Long term exposure to air pollution can be detrimental to health, leading to respiratory effects, cardiovascular effects, and total mortality. In the 1930s, a practice called redlining reduced the accessibility of mortgage financing for racial minorities and immigrants, and continues to affect the infrastructure and demographics of neighborhoods today. Understanding characteristics of air pollutants is important because people of color and low income communities have historically been exposed to higher concentrations of air pollution as a result of discriminatory practices. Communities exposed to high levels of multiple pollutants at once may be more at risk for health effects. In this project I aimed to define pollutant mixtures of black carbon (BC), nitrogen dioxide (NO2), carbon dioxide (CO2), and ultrafine particles (UFPs) at measured locations in Seattle, then predicted the mixtures at other locations to evaluate exposure disparities due to redlining. Annual average air pollution estimates for BC, NO2, CO2, and UFPs were obtained from mobile monitoring measurements of 309 residential locations throughout urban Seattle in 2019 and 2020. Distances to roadways, airports, and other pollution sources were obtained using GIS software, and land use, population density, and greenspace were also characterized. Initial pollutant mixtures were defined at the mobile monitoring locations using principal component analysis. The first PC is a weighted average of pollutants, representing the contrast between high and low exposure locations, and the second PC is a contrast between UFPs and other pollutants. I then predicted the mixtures in redlined neighborhoods using geographic covariates. These predictions provide insight into how the patterns of UFP exposure differ from other pollutants, giving us a better understanding of the pollutant mixtures in our community as a result of urban planning. These insights can lead to further research on the toxicity of these mixtures and to equitably work toward cleaner air.
- Presenter
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- Delaney Sage Wilde, Senior, Bioen: Nanoscience & Molecular Engr
- Mentors
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- Jeff Nivala, Computer Science & Engineering, Molecular Engineering and Science
- Aerilynn Nguyen, Computer Science & Engineering
- Session
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Poster Session 3
- Balcony
- Easel #60
- 2:30 PM to 4:00 PM
For over 40 years, various biological activities, like gene regulation, have been tracked by protein reporter systems. However, the number of uniquely addressable protein reporters that can be used together is limited due to their overlapping readout signal. This prevents simultaneous measurement of multiple reporters (multiplexing), which not only impacts scalability and convenience, but also the potential complexity of the system of interest. To overcome this problem, we have previously designed a new class of reporter proteins, Nanopore-addressable protein Tags Engineered as Reporters. These are more scalable and multiplexable than traditional reporter strategies and are read out on a commercial nanopore array. They are detected and distinguished based on their peptide barcode regions which yield distinct ionic current blockades as they dwell within the nanopore sensitive region. Here, we optimize this system for mammalian cell systems, investigate phosphorylation motif-barcodes, and analyze new random and designed barcode sequences. We demonstrate this system in human embryonic kidney 293 cells transfected with differentially barcoded genetic circuits. We aim to utilize this novel reporter system to investigate complex mammalian processes such as chromatin regulation dynamics and the determination of cellular phenotypes using customized reporter cassettes. Ultimately, our technology will increase the scale and complexity at which systems such as these can be studied, leading to deeper understanding of biological programming and thus more robust synthetic gene circuit development.
- Presenter
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- Devon Chapman, Senior, Political Science
- Mentors
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- Rebecca Thorpe, Political Science
- Ryan Goehrung, Political Science
- Session
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Poster Session 3
- Commons West
- Easel #2
- 2:30 PM to 4:00 PM
Colin Kaepernick kneeling on the football field in August of 2016 was not the first instance of athlete activism in history but was incredibly meaningful to our current politics. Two years later, in September of 2018, Nike released their Dream Crazy advertisement featuring Colin Kaepernick. Evidence shows that this campaign had significant economic consequences for Kaepernick and Nike, leading one to believe that there could have been political consequences as well. Therefore, I ask: to what extent did Colin Kaepernick’s campaign with Nike mobilize public support for and against racial justice in the United States? I hypothesize that there is a positive relationship between exposure and donations; as exposure to the campaign increases so do donations to both racial justice efforts and counter-racial justice efforts. I reason that people’s actions are grounded in emotions and morals; with the polarization of the United States growing, a political act like Kaepernick’s taps into people’s allegiances and identities and they will act accordingly. To test this hypothesis and answer my research question I have gathered Google search term data from August 2018-October 2018 to gauge how much attention the Nike advertisement got. Then I gathered donation data from seven political campaigns representing the left and right sides of the political spectrum from August 2018-October 2018 as a measurement of political activism. The campaigns were chosen based on their salience on each side of the Black Lives Matter conversation and include Donald Trump and Alexandria Ocasio-Cortez. Preliminary results suggest that there may be a positive relationship between exposure and donations. This matters because it exemplifies the power that big brand names and celebrity athletes have on the political playing field. The consequences of this participation and influence are vast, it can create polarized divides and mobilize action.
- Presenter
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- Allison Li, Senior, Computer Science (Data Science), Biochemistry
- Mentors
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- Alejandro Rico-Guevara, Biology
- Rosalee Elting, Biology
- Session
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Poster Session 3
- MGH 241
- Easel #81
- 2:30 PM to 4:00 PM
Hovering flight is one of the most energetically expensive forms of locomotion in hummingbirds. While flying animals already dissipate large amounts of muscle-generated heat to avoid overheating (thermoregulation), hummingbirds' expensive hovering flight and extensive muscle use suggests they may need to lose larger amounts of heat to remain normothermic. It is known that hummingbirds dissipate excess heat through heat dissipation areas (HDA) around the eye, shoulder, and feet. Other birds with larger bills use their bills as a supplemental tool for heat dissipation. Given the length of the hummingbird bill in relation to their body size, it could be possible that their bills have potential for heat dissipation. Using the FLIRT6xx-Series Thermal Imaging camera, we measured the temperature gradient between the environment and the bill surface of Anna’s Hummingbirds during flight in a range of temperatures that occur naturally in their home range (for this study, Seattle, WA). We also quantified bill surface area in high-resolution microCT scans of museum specimens, using open-source software (SlicerMorph). Further, we are developing novel scanning methods (macro photogrammetry) to allow for data collection in the field with free-living hummingbirds in situ. We hypothesize that if the bill is used for heat dissipation during flight, we will see a strong correlation between bill surface area and the thermal gradient of the bill-environment interface. Furthermore, we are considering the time of active hovering as a possible cause of variation in heat dissipation. This analysis could lead to more information about the limits of endurance for flying endothermic animals under the effects of climate change. Moreover, the methods developed to analyze bill surface area could be extended to related subjects, such as observing specimens from a variety of time periods, to quantify potential evolutionary patterns.
- Presenter
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- Ethan Eschbach, Sophomore, Engineering Undeclared
- Mentors
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- Jim Pfaendtner, Chemical Engineering
- Orion Dollar, Chemical Engineering
- Session
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Poster Session 3
- Balcony
- Easel #58
- 2:30 PM to 4:00 PM
The viability of redox-flow (RF) batteries has, in recent years, become an increasingly prevalent point of interest in the chemical research community. RF batteries make use of the reversible electrochemical conversion of active redox species as a form of long-term energy storage. Currently, the most practical versions of these batteries utilize a vanadium-based solution, which is both costly and difficult to manufacture on a large scale. To solve this issue, researchers explored the possibility of using organic-based solutions and natural solvents. However, most of these batteries are limited to specific classes of organic molecules. Through the development of a generalized predictive model, we will create an accurate method of predicting the redox potential of a wide assortment of organic molecules which can be used to improve downstream generative AI algorithms for molecular design. To create our predictive model, we construct a set of experimental and computational redox potentials, which train our model. After compiling a database of roughly 100 organic molecules, we use our model to find correlations between the molecules’ measured redox potential and additional properties, which are calculated using various cheminformatics packages. We expect to find an approximate correlation within an acceptable range of error, which our model can base its predictions on. The limitations of our predictive model stem from our small sample size—larger data sets directly correlate to more accurate results. The successful development of a predictive model with a bounded range of error largely improves our ability to accurately find candidate molecules with high redox potentials, molecules which could potentially be used in large-scale redox flow battery systems.
- Presenter
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- Zoe Lew, Senior, Environmental Studies
- Mentors
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- Amy Kim, Civil and Environmental Engineering
- Tania Busch Isaksen, Environmental & Occupational Health Sciences
- Session
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Poster Session 3
- Commons East
- Easel #30
- 2:30 PM to 4:00 PM
Wildfire smoke contains fine, inhalable particles called PM2.5, as well as dangerous levels of heavy metals and other toxins. Wildfire smoke can increase emergency room visits for asthma and upper respiratory infections in kids, reduce immune function, lead to cardiovascular and lung diseases later in life, and create long-term cancer risks. When schools close from wildfire smoke, learning loss and lost school days can affect children’s health and wellbeing throughout the rest of their lives. Low-income kids could be left without access to learning resources, meals, or school support services. Installing, improving, and maintaining HVAC (Heating, Ventilation, and Air Conditioning) systems is critical for mitigating exposure to smoke, as well as other emerging challenges. The state does not keep records of the ventilation systems in California’s 10,000 public schools or which schools might need additional support in funding their HVAC. I calculated the cost estimate of installing, maintaining, and upgrading HVAC systems to all K-12 schools in California. Methods I conducted include gathering data from the county Superintendent of education, emailing school admins listed on the California Department of State database, calling over 700 school districts for data collection, and consulting with HVAC contractors and other partners. The estimate for installation, maintenance, and upgrading cost is approximately $4.0 billion. The estimate will be used to advocate for further funding for wildfire preparedness for schools. Results will be used in the policy roadmap for implementing the Green New Deal for Public Schools in California and policy brief.
- Presenter
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- Elizabeth Ramirez, Senior, Biology (Physiology) Mary Gates Scholar
- Mentor
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- Chetan Seshadri, Medicine
- Session
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Poster Session 3
- Balcony
- Easel #46
- 2:30 PM to 4:00 PM
Tuberculosis (TB), a respiratory disease caused by Mycobacterium tuberculosis (Mtb) bacteria, continues to be a leading cause of death worldwide. There is an overwhelming need to better understand protective immunity and develop an improved vaccine due to variable efficacy in preventing infection with the current TB vaccine, Bacillus Calmette–Guérin. T cells are required for the protective immune response to Mtb infection. γδ T cells are a subset of T cells known to be involved in Mtb protection, but the mechanisms by which they control Mtb remain poorly understood. However, γδ T cells are a major source of the cytokine IL-17, which promotes lung inflammation, and recruits cells for immune response, suggesting that IL-17 may contribute to γδ T cell control of Mtb. I characterized the T cell secretion of IL-17 in a cohort of South African adolescents that have latent Tb infection or are TB uninfected. I sorted γδ T cells and ɑꞵ T cells from sample PBMCs and stimulated these cells with Mtb antigens to measure the secretion of IL-17 via an enzyme-linked immunosorbent assay. I hypothesized that T cells taken from latently infected individuals would secrete greater amounts of IL-17 compared to those that are not infected due to a preexposure to Mtb antigens. Additionally, I predicted that γδ T cells from latently infected individuals would secrete a higher proportion of IL-17 compared to ɑꞵ T cells. Investigating the IL-17 secretion by T cells can potentially provide us with a better understanding of the role that IL-17 producing T cells play in protective immunity and inform vaccine development.
- Presenter
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- Chase King, Senior, Computer Science (Data Science), Applied & Computational Mathematical Sciences (Statistics) Levinson Emerging Scholar
- Mentors
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- Saskia de Vries, Physiology & Biophysics
- Adrienne Fairhall, Physiology & Biophysics
- Session
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Poster Session 3
- Commons East
- Easel #26
- 2:30 PM to 4:00 PM
The Allen Brain Observatory Visual Coding datasets include recordings from thousands of visual cortical neurons while mice have been presented with a variety of visual stimuli. Furthermore, conditional gene targeting techniques enable the recording of highly specific populations of neurons, producing a vast dataset spanning many cell types, brain regions, and cortical layers. While these neural data are frequently studied in literature, a largely unexplored subset of this dataset involves over 1400 hours of eye tracking videos recorded during experiments. Saccades—fast, fixational eye movements—are known to play a central role in visual processing for foveal animals, such as humans, but it is less clear how they impact visual processing in rodents. This project investigates saccadic eye movements in head-fixed mice: both the patterns of saccades that mice make as well as how these saccades affect neural responses in the visual cortex. We find that mice make infrequent saccades, typically around 4.5 saccades/min, that are predominantly along a horizontal axis. These eye movements appear to not be driven by visual stimulus features, but we do find that mice make more saccades when they are running compared to when they are stationary. Finally, we compare neural responses to eye movements across different cortical areas and layers, and see how they vary with visual stimulus, running speed, and saccade magnitude. Through this neural activity analysis, we gain a better understanding of how saccades influence the underlying representation of visual features.
- Presenter
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- Brian Jun Choi, Senior, Civil Engineering Mary Gates Scholar
- Mentor
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- Travis Thonstad, Civil and Environmental Engineering
- Session
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Poster Session 3
- Commons East
- Easel #32
- 2:30 PM to 4:00 PM
Following a seismic event, the serviceability of buildings, bridges and other infrastructure is critical. However, determining the safety of these structures post-disaster is challenging and time consuming. Most damage assessment is done through visual inspection, which can miss structural damage that is hidden from view, behind architectural elements or in hard to access areas. To improve the efficiency of post-earthquake damage assessment, low-cost sensors that could monitor structures and send alerts of significant damage would be invaluable. One specific example of critical damage would be that of steel fracture, which significantly impacts the safety of steel and reinforced concrete structures. Fractures are highly energetic, creating a distinctive gunshot-like sound. Microphones are already used to detect gun fire, and a similar methodology could be employed to detect and locate fractures in buildings. This project explored this possibility. A database of fracture sounds from experimental tests of structural components was built from a variety of sources, including an online research repository maintained by the National Hazards Engineering Research Infrastructure (NSF-NHERI). Specific features of the audio signals, for example Mel-frequency and linear predictive coefficients, were used to train machine learning algorithms to classify these sounds and detect fractures. Physical experiments were also conducted to record rebar fractures using an array of low-cost microphones. The placement of the microphones and the difference in arrival times were used to estimate the location of the fractures, which were compared to the true location. This research constitutes the first step in the development of a robust acoustical monitoring strategy to aid in efficiently making decisions to restrict service to compromised structures following an earthquake. This concept is becoming increasingly viable as the availability of inexpensive instruments increases. As sensors improve, this approach could become the prevailing method for post-event assessment.
- Presenter
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- Patricia Silva, Non-Matriculated, Microbiology, University of Washington UW Post-Baccalaureate Research Education Program
- Mentors
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- Ana Weil, Allergy and Infectious Diseases
- Denise Chac, Medicine
- Session
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Poster Session 3
- MGH 241
- Easel #67
- 2:30 PM to 4:00 PM
Cholera is a diarrheal disease caused by intestinal bacterium Vibrio cholerae. This enteric disease affects millions of patients each year and it is primarily caused by contaminated food or water. V. cholerae (Vc) infected patients can be asymptomatic or develop severe acute diarrheal symptoms. We previously used metagenomic sequencing to characterize the gut microbiota of household members of patients with cholera and found that gut microbe Rothia mucilaginosa (Rm) is present in higher relative abundance among patients with Vc compared to uninfected individuals. Here we aim to investigate how this gut bacteria interact with Vc and/or impact Vc biofilm formation. To analyze Vc biofilm, we co-cultured Rm with Vc at 37C for six hours and quantified biofilm formation using a microtiter dish assay with crystal violet staining. We first tested the biofilm formation of Vc and Rm in monocultures as controls and then we performed co-culture assays with different ratios including 1:1, 1:10, and 2:1 Vc to Rm. Additionally, heat killed and spent-cell supernatant conditions of Rm were also used to determine the interaction between Vc and Rm. Preliminary results from our biofilm assays suggests that Rothia mucilaginosa promotes increased biofilm formation of Vc. In conclusion, we found that native members of the gut microbiome can induce formation of biofilms and this interaction between gut microbe and pathogen has the potential to affect the disease outcomes.
- Presenter
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- Olivia Marie Cavalluzzi, Junior, Environmental Science & Resource Management (Wildlife Conservation) Mary Gates Scholar, UW Honors Program
- Mentors
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- Laura Prugh, Environmental & Forest Sciences
- Calum Cunningham, College of the Environment
- Session
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Poster Session 3
- Commons East
- Easel #20
- 2:30 PM to 4:00 PM
Avian scavengers perform a critical ecosystem service by breaking down dead and decomposing organic matter and recycling the nutrients back into the food web. However, the quantity of decaying biomass different avian scavengers seek out has not been well researched in Washington State. This study asks the question: How does the amount of biomass remaining on an ungulate (hooved animal) carcass influence which avian scavengers visit the carcass? I am conducting my study using camera trap image data from the Washington Predator-Prey Project (WPPP) from northeastern Washington. This study placed a trail camera in front of an ungulate carcass and recorded photos using a motion sensor. I extracted information on the number of each type of species present from each of those images. My data set includes over 360,000 images from 51 roadkill carcass sites. I hypothesize that large avian scavengers (e.g. turkey vultures and bald eagles) and small avian scavengers (e.g. magpies and common ravens) will either compete for access to the carcass or will facilitate each other in accessing the food source. The analysis will include comparing the number of photos containing at least one individual of each bird species against the percentage of carcass biomass remaining. Increasing our understanding of what quantity of biomass different avian scavengers seek out will improve our ability to protect them and Washington’s ecosystems.
- Presenter
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- Abby Riley, Senior, Earth and Space Sciences: Geology UW Honors Program
- Mentors
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- Alex Lowe, Biology, Department of Biology and the Burke Museum
- Caroline Strömberg, Biology, Burke Museum
- Session
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Poster Session 3
- MGH 241
- Easel #78
- 2:30 PM to 4:00 PM
The Miocene Climatic Optimum was a period of rapid warming that occurred from 17 to 14 million years ago where temperatures rose 2-4°C above pre-warming estimates and CO2 concentrations increased to ~400-600 ppm. This event was coeval with the eruption of the Columbia River Basalts (16.6-15.9 Ma), a series of large flood basalts covering much of the Pacific Northwest. The combined forces of these events led to this period being characterized by tumultuous changes to Pacific Northwest plant communities. To quantify these changes, I am reconstructing canopy openness. Ranging from open deserts to closed rainforests, degree of canopy openness describes the amount of sunlight reaching the understory of a plant community. These differences in sunlight exposure affect the size and shape of leaf epidermal cells. Leaves grown in shaded conditions tend to have larger, more undulated epidermal cells when compared to those grown in full sunlight. In the fossil record, silica casts of those cells called phytoliths can be measured to reconstruct the canopy openness of ancient ecosystems. I am using samples from four fossil sites in Central Oregon: Hawk Rim (16.4-16.2 Ma), Mascall (15.1 Ma), Haystack Valley (23-18 Ma), and Picture Gorge Basalts (17.23-16.06 Ma). These sites range from immediately before the Miocene Climatic Optimum (MCO) through the first two million years of warming. They also include samples from sedimentary layers interbedded with basalts. Therefore, they will provide insight on changes that occurred within the plant community both as warming began and because of volcanic eruption. I hypothesize that increased temperature and CO2 concentrations resulted in longer growing seasons and a CO2 fertilization effect. These conditions promoted high vegetation productivity and therefore closed canopies. Additionally, I expect that areas impacted by eruption will exhibit open canopies due to repeated disturbance preventing the re-establishment of forests.
- Presenter
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- Emelin Yakira DelGado, Senior, Anthropology: Medical Anth & Global Hlth
- Mentors
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- June Spector, Environmental & Occupational Health Sciences
- John Flunker, Environmental & Occupational Health Sciences
- Maria Blancas, Environmental & Occupational Health Sciences
- Session
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Poster Session 3
- Commons West
- Easel #7
- 2:30 PM to 4:00 PM
Farmworkers often experience substandard housing conditions, including crowding, temperature and humidity variability, and limited cooling access. We investigated how in-home temperature, humidity, bedroom crowding, and cooling impacted sleep duration among Washington State (WA) farmworkers. We hypothesized that elevated sleep temperatures, humidity, and crowding would be associated with reduced sleep duration. In the summer of 2019, 81 orchard and vineyard workers in Central WA participated in a baseline housing characteristic survey, three successive monthly sleep surveys, and three sleep temperature measurements. We assessed housing quality, our exposure of interest, defined as: housing type, air conditioning (AC) availability, crowding (> 2 adults in bedroom) and sleeping room temperature and humidity measured with Kestrel Drops. Our outcome measure was self-reported sleep hours per night. On average, participants were 42 years of age, male (64%), had 3.4 years of agriculture experience, and slept 6.5 hours per night at 76°F and 50% humidity. 45% lived in single-family homes, 11% in apartments, 28% in barracks, and 16% in mobile homes. Average temperature did not differ between housing types. Maximum temperature was greatest in barracks (average max=83.3°F) and apartments (85.0°F) versus single-family homes (79.7°F) and mobile homes (80.1°F). Relative humidity was highest in barracks (55.5%) versus single-family homes (48.9%), mobile homes (44.9%), and apartments (45.7%). Crowding and access to AC also varied with housing type, with 100% of barracks participants and 14% of mobile home participants reporting overcrowding, and apartment participants (100%) and barracks participants (97%) being the most likely to report AC. Participants in barracks reported less sleep per night than participants in single-family or mobile homes (6 versus 7 hours, respectively). We found variation in farmworker housing conditions and reduced sleep duration in barracks. We recommend future research examining the role of housing and workplace characteristics on worker sleep quality.
- Presenter
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- Aarti Vinod Tandon, Senior, Food Systems, Nutrition, and Health
- Mentor
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- Edward Kasner, Environmental & Occupational Health Sciences, University of Washington School of Public Health
- Session
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Poster Session 3
- Commons West
- Easel #8
- 2:30 PM to 4:00 PM
The ‘Pesticides Labels Now!’ mobile application strives to minimize agricultural worker and community exposure and illness from agricultural pesticides through improving access to pesticide labels and safety information in Spanish and English. Pesticide handlers, managers, and supervisors are able to gain access to this information, change behaviors accordingly, and transfer the safety information to others. We hypothesized that user characteristics such as language choice, mobile device type, and location would determine frequency of interactions with the application. This study investigates the application’s user audience and their preferences for app utility. Statistical analysis and graphing was conducted with R Studio (Version 2021.09.1) for users accessing the application over one year starting in August 2020. The raw data set consisted primarily of users from the State of Washington, containing 67,754 interactions and a total of 503 unique users. The results showed that user utilization is predominantly concentrated in central Washington, which is part of the Columbia Basin, and has very productive agricultural land. The overall frequency of each language accessed on the application was relatively comparable - with 59% in English and 41% in Spanish. The analysis further indicated the majority of users utilize the application through an iOS system. An estimated 74% of interactions were accessed through an iPhone device and 26% were accessed through an Android device. By understanding the effect of user characteristics in their interaction with the application, necessary adjustments can be made to the application to create a more user-friendly experience and contribute to improving access to pesticide labels and their safety information.
- Presenter
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- Sydney Favors, Senior, Microbiology, Cinema and Media Studies UW Honors Program
- Mentors
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- David Koelle, Global Health, Laboratory Medicine and Pathology, Medicine
- Lichen Jing, Medicine
- Session
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Poster Session 3
- Balcony
- Easel #45
- 2:30 PM to 4:00 PM
Human Herpesvirus-8 (HHV-8) causes Kaposi’s sarcoma (KS)-- a cancer of cells that line lymph or blood vessels. Individuals whose T cells have been compromised by HIV are particularly at risk for KS. The disease remains endemic in many parts of sub-Saharan Africa, making KS a leading cause of cancer death in Uganda. While HHV-8 has been known to cause KS since 1994, and T-cells that can recognize HHV-8 are likely to be critical for control of KS, there is little known about the specific parts of the virus recognized by T-cells. Our goal is to ultimately determine the antigenic targets of HHV-8-specific T-cells. Because recovery of live T-cells from biopsies is challenging, we are re-creating “artificial T-cells” with candidate T-cell receptor (TCR) sequences obtained from KS lesion biopsies from Uganda. These candidate TCRs will be queried for reactivity to HHV-8. To do this, we are generating a set of every known HHV-8 protein by moving cloned DNA expressing these proteins into a specific plasmid that is useful for these T-cell studies. To create artificial T-cells, we are cloning candidate TCRs into lentiviral vectors which allow us to force the TCRs to be expressed in these cells and fluoresce green if the cells recognize a viral protein through their TCRs. These artificial T-cells are then screened against every HHV-8 protein to find which protein they recognize. Currently, flow cytometry results demonstrate adequate expression of candidate TCRs by artificial T-cells, and the HHV-8 protein set is >90% complete. Ultimately, we hope to determine HHV-8 proteins that are recognized by HHV-8-specific T-cells in order to better understand which parts of the virus are targeted by these T-cells and to design T cell or vaccine therapies to treat persons with KS.
- Presenter
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- Aasiya Islam, Senior, Neuroscience, Biochemistry Mary Gates Scholar, UW Honors Program
- Mentors
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- Sam Golden, Biological Structure
- Mitra Heshmati, Anesthesiology, Biological Structure
- Session
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Poster Session 3
- MGH 241
- Easel #71
- 2:30 PM to 4:00 PM
Rapid and smooth emergence from the anesthetized state to the awake state is important for patient safety and perioperative efficiency, yet is currently a passive process and the underlying mechanism is not well understood. In mice, emergence from anesthesia is modeled by the return of righting reflex (RORR) signaled by righting from the supine to prone position as the mouse emerges to an awake state. Using this model, it is possible to investigate the neuropharmacological mechanisms of emergence. While commonly studied in concert with neuronal recordings and optogenetic manipulation, these approaches can be combined with high-throughput automated behavior analysis using deep and machine learning approaches. Here, my goal is to create an automated behavioral classification pipeline for annotating the RORR in combination with experimental manipulations and recordings. I aim to characterize the transition between unconscious and awake states to define a binary output. This is accomplished by using DeepLabCut pose-estimation software to track subject mouse body parts, followed by the generation of supervised behavioral classifiers for RORR-related behaviors using the SimBA (Simple Behavioral Analysis) machine learning pipeline. My ongoing directions focus on performing unsupervised classification with this model to cluster additional behaviors. This use of advanced behavioral analysis will enable a better understanding of behaviorally-relevant neural activity in emergence and help bridge the gap between preclinical animal models and clinical intervention.
- Presenter
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- Tony Truong, Junior, Biology (General)
- Mentor
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- Maralyssa Bann, Medicine, Harborview Medical Center
- Session
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Poster Session 3
- Commons West
- Easel #22
- 2:30 PM to 4:00 PM
Avoidable prolonged hospital stays can decrease bed availability for new patients and place patients at risk for adverse events, and be costly for hospital finances. There are few published studies that cover data of patients throughout an entire hospital; most only cover data from a specific service line. Our study aims to review patient data throughout an entire hospital to assess common barriers leading to these avoidable prolonged stays. In our institution, the care management department meets on a weekly basis to review patients who meet the crieteria of having avoidable days. We retrospectively reviewed notes from these weekly meetings and extracted common barriers, which we then organized into categories for comparison. Our study included patients discharged from August 2019 to February 2020, with any avoidable days and 21 or more hospital days. There were 180 encounters that met our criteria. The most common service lines represented are Medicine and Surgery, while the most common discharge locations are SNF and Home. The median for the total legnth of stay was 42 days, while the median for avoidable days was 17.5 days. We identified 21 common barriers. The most common discharge barriers identified are Funding, Long Term Care, COPES, Guardianship, Substance Use, Homelessness, and Care Needs too Great for SNF. In our hospital-wide study, we identified that avoidable days are found across inpatient services and represent a heterogeneous mix of discharge barriers. Further studies should investigate relationships between discharge barriers and whether any patterns exist in patients with avoidable days in service lines.
- Presenter
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- Anna Danielle Berg, Senior, Earth & Space Sciences (Environmental) Mary Gates Scholar, NASA Space Grant Scholar
- Mentor
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- Fangzhen Teng, Earth & Space Sciences
- Session
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Poster Session 3
- Commons West
- Easel #15
- 2:30 PM to 4:00 PM
The BVF (Boring Volcanic Field) located in the Portland Basin west of the Cascades arc, is home to a wide variety of chemically distinct basalts. These basalts resemble mid-ocean ridge basalts, ocean island basalts, and intra-plate type basalts both chemically and mineralogically. Given the small area of this field, and the availability of all sample types throughout the entire volcanically active period, the cause of this diversity remains a challenge to explain. To investigate this process, we have used a MC-ICP mass spectrometer to collect magnesium isotope ratio data. While this diversity could come from a heterogenous mantle, with each of these sample types coming from a different mantle source, we expect that there are added components which change the chemical composition of the magma. Magnesium can be used as a tracer for added contributions in igneous rocks since the isotopic ratio of this element is not changed by volcanic processes, thus the data we record is representative of the source of these samples. Additionally, magnesium is most largely fractionated by low temperature processes such as carbonate precipitation and weathering. Given this, materials such as subducted crust or sediments would leave a recognizably different magnesium ratio in any basalt produced from this interaction. By combining our magnesium data with previous major (>1 wt. %) and trace element (<0.1 wt. %) analysis, we have tested for the presence of subduction derived isotopic signatures. From these discovered influences, we will produce a more accurate model of magmatism that accounts for the variety found in the BVF.
- Presenter
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- Jasmine Wee, Senior, Biology (Molecular, Cellular & Developmental)
- Mentors
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- Yuan-Jyue Chen, Computer Science & Engineering
- Luis Ceze, Computer Science & Engineering
- Session
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Poster Session 3
- Commons East
- Easel #36
- 2:30 PM to 4:00 PM
With the exponential growth of data that is used and stored in our world, new forms of data storage will be required as the capabilities of our existing electronics plateau. Synthetic DNA is an attractive medium for data storage due to its density and longevity. With the growth of DNA data storage technology, there comes the need for exploring DNA computation. The potential to form boolean circuits and neural networks has already been actualized using DNA hybridization and strand displacement circuitry. However, in order to use DNA based neural networks to solve larger computational problems, we must improve current circuit designs to become more robust and scalable. In prior works, all DNA species are in a single test tube; the avoidance of cross-interaction from different circuit components is achieved by designing orthogonal DNA sequences. However, because the number of orthogonal DNA species is limited, the size of the DNA neural network is constrained to be quite small. In order to solve these issues, we modularized the circuit using magnetic beads. Modularizing the design not only makes the circuit simple and robust, but it allows for automation using droplet-based microfluidic technology. In this work, we implement a modularized (droplet-based) digital Binarized Neural Network (BNN). We first confirmed that a single binarized neuron functioned as expected by measuring output fluorescence. Next, we implemented a single layer with 5-input neurons to confirm the functionality of the layer. Then, demonstrated the ability to cascade multiple layers by using the outputs of preceding layers as the inputs of subsequent layers. Finally, we automated the BNN on the Opentrons OT-2 robot. Using microfluidic technology we automated the experimental protocol, which is normally performed manually in a wetlab, and by doing so, we are one step closer to building a practical DNA-based computer system.
- Presenter
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- Linda Dao Tran, Senior, Biology (Molecular, Cellular & Developmental) Mary Gates Scholar
- Mentors
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- Daniel Yang, Cardiology
- Clayton Friedman, Cardiology
- Session
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Poster Session 3
- MGH 241
- Easel #63
- 2:30 PM to 4:00 PM
Pathogenic missense mutations in the myosin heavy chain 7 (MYH7) gene are the most common genetic cause of hypertrophic cardiomyopathy. While several pathogenic variants have been modeled and studied extensively, the majority of MYH7 variants are classified as variants of unknown significance (VUS) in variant catalogs such as ClinVar, because they lack sufficient clinical and functional data for variant effect interpretation. To model and determine the functional significance of additional MYH7 VUS, I will employ gene-editing techniques to generate single variant repair templates for several VUS of interest in human induced pluripotent stem cells (hiPSC). Following heterozygous knock-in of a variant transgene into the endogenous MYH7 locus, I will differentiate hiPSCs into cardiomyocytes using established, efficient cardiac directed-differentiation protocols for comparison to wild-type hiPSC-derived cardiomyocytes across multiple metrics. Variant effect on contractile function will be measured in engineered heart tissues (EHTs). In addition, cardiomyocyte cell size will be measured across wild-type and variants using flow cytometry. This functional data will inform VUS interpretation as benign or pathogenic and provide healthcare professionals and patients with clinically actionable information.
- Presenter
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- Sophia A. Cuschieri, Senior, Biology (Molecular, Cellular & Developmental)
- Mentors
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- Joshua Thaler, Medicine
- Anzela Niraula, Medicine
- Session
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Poster Session 3
- Balcony
- Easel #49
- 2:30 PM to 4:00 PM
The brain maintains body weight homeostasis via a tightly regulated neuronal circuitry. Microglia, the innate immune cells of the brain, elicit an inflammatory response that triggers increased food intake and weight gain on a high fat diet. We are curious how microglia regulate the neuronal circuitry to affect food intake and body weight. We have developed a chemogenetic mouse model that expresses a modified Gs-protein-coupled DREADD (Designer Receptor Exclusively Activated by Designer Drugs) selectively on microglia. Administration of the ligand Clozapine-N-Oxide (CNO) activates the cyclic AMP signaling cascade in microglia. We have found that CNO administration for three days increases the cytokine IL-1ðž«, and reduces chemotactic signals (P2RY12 and CCL3) and Agouti-Related Peptide (AgRP). AgRP is produced from neurons in the hypothalamus and is responsible for feelings of hunger. I hypothesize that microglial Gs-DREADD activation suppresses AgRP signaling and reduces food intake and body weight. To test this hypothesis, mice expressing the microglial Gs-DREADD (MG Gs-DREADD+) and control littermates (MG Gs-DREADD-) will receive daily intraperitoneal administration of CNO (1 mg/kg), and will be monitored for food intake and body weight for a week. Mice will then be placed on a high fat diet (60% kcal obtained from fat) under daily CNO administration, and will be monitored for food intake and body weight gain for 4 weeks. I hypothesize that MG Gs-DREADD+ mice will show reduced food intake and weight gain on a HFD when compared to MG Gs-DREADD- mice. At the end of the study, I will examine changes in inflammatory mediators and neuropeptides in the hypothalamus of the mice. Overall, this study will help elucidate how microglia alter hunger and satiety signals in the brain to regulate appetite and body weight. Moreover, the ability to modify these signals can help individuals manage their weight and prevent obesity.
- Presenter
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- Dylan Vecchione, Senior, Oceanography
- Mentors
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- Robert Morris, Oceanography
- Randelle Bundy, Oceanography
- Virginia Armbrust, Oceanography
- Session
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Poster Session 3
- Commons East
- Easel #21
- 2:30 PM to 4:00 PM
Global cycling of elements like carbon, nitrogen, and iron have key roles in maintaining the biosphere. These and other micro- and macro-nutrients undergo important reduction-oxidation and acid-base transformations in the environment. Biologically, iron (Fe) and manganese (Mn) are utilized by microbes as cofactors in many essential proteins and enzymes including nitrogenase, ferredoxin, peroxidase, cytochromes, and phosphotransferase. These elements (most notably Fe) can often limit microbial growth in large regions of the ocean because of their trace environmental concentrations, or due to structural bioavailability, or competitive microbial uptake and utilization. This can impact key ecosystem and cellular processes, including chemosynthetic carbon fixation at hydrothermal vents, nitrogen species reduction, and metabolic electron transport. Here we use flow cytometry measurements (FCM) to quantify bacteria and archaea from hydrothermal vent plumes along the Southern East Pacific Rise. We compare patterns in microbial abundance with total dissolvable Fe concentrations (predominantly Fe3+, including dissolved and labile particulate Fe) at the same locations. I find that bacterial abundance is most strongly related to trace-concentration of Fe below 400nM, and that similar relationships exist with trace methane (CH4) and dissolved Mn concentrations. These findings suggest that microbial abundances in vent plumes could be partially explained by trace element and methane distributions, but further research is required to disentangle whether these important substrates are covarying with other biochemical factors impacting microbial growth and metabolism in these dynamic environments.
- Presenter
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- Nicole Reynolds, Junior, Oceanography, Marine Biology
- Mentor
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- Jennifer Ruesink, Biology
- Session
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Poster Session 3
- MGH 241
- Easel #82
- 2:30 PM to 4:00 PM
Batillaria attramentaria (hereafter Batillaria) is a highly prolific mud snail in Padilla Bay, WA, with an estimated 8 billion plus in the bay alone. Understanding the ecology of Batillaria is important, as it is an invasive species and its ecological role within the bay is unknown. This study aims to identify Batillaria’s substrate preference when given access to bare sediment, algae, and Zostera detritus in Padilla Bay. Three experiments were developed to test the hypothesis that Batillaria prefers algae detritus over Zostera detritus, over bare sediment with organic content (hereafter mud). First, a field substrate preference experiment was set up at two locations with three plot types: algae, Zostera, and control (mud). Both sites were resampled three times over a 21-day period. A second experiment was designed to obtain a higher resolution of temporal data, for nine days. The second experiment used two plot types at one location: algae and control. A third experiment was conducted in-lab to see if and how snails would move toward specific kinds of detritus, in which Batillaria were placed in tubs and videoed with a timelapse camera for 1.5 hours. In field experiments, Batillaria highly preferred algae detritus over Zostera detritus at one location (IC) as measured by ANOVA (p<0.01), but at the other, Batillaria did not show a preference between Zostera detritus and algae (West-90) (p>0.01). At both sites, detritus was preferred over bare sediment. In the lab experiment, Batillaria oriented toward detritus, consistent with field findings, but reversed their detrital preference. The effects of Batillaria on decomposition and nutrient cycling within the bay are unknown, so understanding their detrital preferences is the first step in unlocking Batillaria’s role in the ecosystem.
- Presenter
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- Hamza Hussain, Senior, Biology (Molecular, Cellular & Developmental)
- Mentor
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- Jennifer Deem, Medicine
- Session
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Poster Session 3
- Commons East
- Easel #42
- 2:30 PM to 4:00 PM
In the United States, one-third of the adult population is considered obese. Although excessive food intake leads to obesity, a return to normal body weight is extremely difficult once established. A growing body of evidence finds that changes in the brain prevent a return to normal body weight. In particular, Agouti-related peptide (AgRP)-expressing neurons, which drive feeding and feeding-related behaviors, show blunted activity in response to food and hormonal cues in obese mice. Using a mouse model, our group found that sensed ambient temperature regulates AgRP neuron activity, such that cold increases AgRP neuron activity, and this increase in activity drives food intake, but this temperature sensitivity is lost in the obese mouse model. However, how AgRP neurons receive thermal information is not understood—owing to the speed with which AgRP neuron activity changes in response to cold sensation, thermal information is most likely relayed by an afferent circuit. Here, I report the identification of a novel population of tyrosine hydroxylase (TH)-expressing neurons located in the rostral paraventricular nucleus of the hypothalamus (PVHTH neurons) as candidate upstream mediators of cold-induced AgRP neuron activation. As evidenced by the expression of the immediate early gene, Fos, cold activates this population similarly to AgRP neurons, and these neurons send projections to the arcuate nucleus of the hypothalamus (ARC), where AgRP neurons are located. I hypothesized that activation of this population, as part of a larger thermoregulatory neurocircuitry, would shift the preferred ambient temperature of mice such that they prefer warmer temperatures, as well as increase food intake to levels seen in mice housed in the cold. My findings underscore the link between thermoregulation and energy homeostasis and begin to define a circuit which, if disrupted, might underlie the perseverance of obesity.
- Presenter
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- Shivam Bansal, Senior, Neuroscience
- Mentor
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- Sara Jane Webb, Psychiatry & Behavioral Sciences, Seattle Children's Research Institute
- Session
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Poster Session 3
- Commons West
- Easel #11
- 2:30 PM to 4:00 PM
Autism Spectrum Disorder (ASD) is a neurodevelopmental disorder characterized by social-communicative impairments and restricted, repetitive behaviors (RRBs). Children with ASD often have impairments in executive functioning (EF), a broad term for cognitive processes including working memory, planning, impulse control, inhibition, and mental flexibility. Previous research has identified direct links between EF problems with RRBs in children with ASD. Intrinsic brain activity measured by Resting-State EEG (RS-EEG), particularly activation of beta (12-30 Hz) and theta (4-8 Hz) bands, has been shown to reflect memory and inhibition. Prior RS-EEG research has found links between reduced theta and beta activation and increased alpha activation in children with ASD. Thus, this project examines the associations between EF problems and resting-state alpha, beta, and theta activation. This study includes 217 participants, ages 8-17 years (ASD=109) from the ACE GENDAAR network, a four-site NIH-funded project investigating sex differences in individuals with autism. ASD diagnosis was confirmed via gold-standard diagnostic measures. EF was assessed using the Behavior Rating Inventory of Executive Function (BRIEF), a parent-report with eight clinical scales measuring specific EF abilities. RS-EEG was measured using an eyes-open paradigm where children sat and looked at screensaver-like videos. Movement and blink artifacts were rejected, and Fast-Fourier Transformation was performed over clean segments. Average power in the alpha, beta, and theta bands was abstracted over 9 different areas across the head for each subject. We hypothesize that EF abilities in participants will correlate positively with theta and beta activity levels and negatively with alpha activity, specifically in the frontal regions. We hypothesize that, similar to children with ADHD, ASD participants will have a greater theta-beta ratio than typically developing (TD) participants. This study’s data can provide a better understanding of the relation between ASD and EF and identify biomarkers to distinguish between ASD and other EF dysfunction prognoses.
- Presenter
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- Clayton T Black, Senior, Economics, Civil Engineering
- Mentors
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- Travis Thonstad, Civil and Environmental Engineering
- John Stanton, Civil and Environmental Engineering
- Session
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Poster Session 3
- Commons East
- Easel #33
- 2:30 PM to 4:00 PM
This research project will focus on the measurement of the influence of the fibers on the strength of fiber-reinforced concrete (FRC), examining both the experimental method used and the theoretical background needed to extract the salient material properties. Here, the primary interest is in the tension strength. The stress-strain relationship of most engineering materials is determined with direct compression and tension tests. However, this method proves to be unsuitable for testing the tension strength of FRC due to various factors. In this research project, we will determine the stress-strain relationship of FRC using a flexural beam test. The beam test is considered more reliable because the load can be controlled better than in the direct tension test, and stress concentrations and eccentricities can more easily be avoided. However, the experimental results must be combined with theory to extract relevant information. In structural analysis and design, it is common practice to begin with a known stress-strain relationship and the dimensions of a beam section and integrate to determine curvature for a sequence of moments. Our approach is the reverse of this process. Using a system of differential equations relating strains, moments, and axial stresses, and with strain measurements from the top and bottom midspans of the beam, we intend to inversely develop the stress-strain relationship of FRC in compression and tension through differentiation of a polynomial regression. We expect results to indicate that fiber-reinforced concrete has a higher residual strength than what is currently accepted and that our testing procedure will yield more accurate and valuable results than traditional tests. These findings could change the way cementitious materials are tested and improve efficiency in the built environment thereby decreasing carbon emissions. This presentation will highlight the steps, challenges, results, and implications of our project.
- Presenter
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- Olivia Rose Walsh, Senior, Bioengineering
- Mentors
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- Savannah Partridge, Bioengineering, Radiology
- Anum Kazerouni, Radiology
- Session
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Poster Session 3
- Commons East
- Easel #29
- 2:30 PM to 4:00 PM
Women with dense breasts have increased amounts of fibroglandular tissue (FGT) and are at higher risk of developing breast cancer. Quantitative measurement of FGT from magnetic resonance imaging (MRI) could provide more robust measurement of density, supplanting conventional qualitative radiologist assessments. Current quantitative methods involve manual selection of a signal intensity threshold, which can be time consuming and subjective. Fuzzy c-means (FCM) clustering is an automated approach to tissue segmentation, offering a reproducible process for quantifying FGT volume. The aim of this study is to evaluate the efficacy of the FCM clustering in identifying FGT compared to manual thresholding. Women (N=10) who underwent screening breast MRIs at our institution were evaluated in this preliminary study. Fat-suppressed T1-weighted pre-contrast images acquired as part of their clinical breast MRI exams were used for FGT segmentation. Prior to segmentation, I cropped the images to include only the breast. FGT was then segmented two ways, 1) manually, using a signal intensity threshold that I chose and adjusted and 2) automatically, using existing lab software for FCM clustering. The Sørensen-Dice similarity coefficient was calculated between the manual and automatic segmentations for each patient to determine the degree of overlap. The concordance correlation coefficient (CCC) was calculated between automatic and manual segmentation volumes across the whole data set. Across the 10 patients, an average (± standard deviation) Dice coefficient of 0.81±0.04 was observed, indicating good spatial agreement between the manual and automatic segmentations. The CCC between the FGT volume from manual and automated segmentation was 0.89, demonstrating high correlation in volume estimates between the two methods. Fuzzy c-means clustering was determined to be an effective and efficient method of FGT segmentation in breast MRI data. Future work will evaluate the application of this technique in assessment of background parenchymal enhancement, a clinical marker of cancer risk.
- Presenter
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- Ruchika Sreeharsha (Ruchika) Gadagkar, Senior, Public Health-Global Health
- Mentors
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- Sara Jane Webb, Psychiatry & Behavioral Sciences, Seattle Children's Research Institute
- Megha Santhosh, Psychiatry & Behavioral Sciences, Seattle Children's Research Institute
- Session
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Poster Session 3
- Commons West
- Easel #12
- 2:30 PM to 4:00 PM
Autism Spectrum Disorder (ASD) is a neurodevelopmental disorder that often results in deficits in communication, social skills, and emotion regulation. Additional concerns include disruptions to the sleep wake cycle that result from circadian rhythm dysfunction. Individuals with ASD also generally demonstrate difficulty with emotional regulation, including internalizing behaviors that can present as disorders such as anxiety, depression, general mood disturbance, and externalizing behaviors such as aggression. Previous studies have suggested an association between increased sleep dysfunction and increased issues with internalizing/externalizing behaviors in children, and have insinuated a possible bidirectional relationship between the two. This study aimed to look at the relationship between sleep quality and emotion regulation (internalizing and externalizing behaviors) in adults with and without ASD. 80 adults (ASD=42) from the longitudinal Autism Center of Excellence 2 study, a five-site NIH-funded study on gender differences in autism, were included in the analysis. Autism diagnosis was confirmed via standardized measures. Participants completed the Pittsburgh Sleep Quality Index (PSQI), a measure of sleep quality and the adult self report (ASR), a measure of internalizing and externalizing behaviors. Analysis included correlations between sleep quality and internalizing and externalizing scores for ASD and typically developing (TD) groups. We hypothesized that individuals with ASD will demonstrate higher internalizing and externalizing scores and higher rates of sleep issues; and stronger correlation between the two. Additionally we explored gender differences in sleep quality within the sample. I hypothesized that decreased sleep quality and increased sensitivity to stimuli will increase emotional regulation problems in individuals with ASD. This study might provide evidence to support the increased use of therapy or behavioral interventions for better sleep to improve mental health in individuals with autism.
- Presenter
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- Matthew Nguyen, Senior, Biology (Molecular, Cellular & Developmental)
- Mentors
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- Takuma Uo, Medicine
- Stephen Plymate, Medicine
- Session
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Poster Session 3
- Balcony
- Easel #50
- 2:30 PM to 4:00 PM
Prostate cancer is the second leading cause of cancer death among men in the United States and its detrimental form, known as castration-resistant prostate cancer (CRPC), currently has no cure. The importance of cancer metabolism has been recognized as a potential target of anti-CRPC therapy. The Plymate Lab recently developed compounds known as selective glycolytic inhibitors (SGIs) that target glycolysis in selective types of cancers including CRPC. Specifically, SGI’s block the first step of glycolysis, in which glucose phosphorylation is catalyzed by hexokinases. Nevertheless, SGI proved not to be a traditional catalytic inhibitor. HK1 and HK2 are major hexokinases in prostate and other cells and their mitochondrial localization is pivotal for their activities. The goal of my project is to test the hypothesis that SGIs affect mitochondrial localization of HK1 and HK2. I used immunofluorescence techniques to examine the physical association between the hexokinases and mitochondria. To do so, I treated a prostate cancer cell line, LNCaP, with SGIs for 30 minutes, which is the amount of time I found the anti-glycolytic effect of SGIs to be evident. Upon doing so, I did not see any significant changes in subcellular localization of HK1 and HK2 between treated and non-treated groups. The majority of HK1 and HK2 were associated with mitochondria, which were fluorescently visualized by MitoTracker Red CMXRos, which labels mitochondria with red fluorescence. It has been reported that the association of mitochondria with hexokinases largely relies on its ability to bind to VDAC1. Thus, I am currently carrying out co-immunoprecipitation assay to assess physical association between HKs and VDAC1. This study will help determine whether SGIs display their anti-glycolytic activity by altering subcellular localization of hexokinases.
- Presenters
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- Gabriela (Gabi) Hoff, Senior, Marine Biology
- Hailey Anne Hochel, Senior, Marine Biology
- Mentor
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- José Guzmán, Marine Biology
- Session
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Poster Session 3
- Commons East
- Easel #19
- 2:30 PM to 4:00 PM
Impacts of climate change, such as warming ocean temperatures and increased prevalence of disease, greatly affect intertidal marine environments within the Puget Sound. These impacts can alter behaviors of marine invertebrates, resulting in ecological cascade effects within rocky intertidal zones. The goal of this study was to observe variation in growth and feeding behaviors of organisms within a trophic cascade including plankton, pacific blue mussels (Mytilus trossulus), and sea stars (Crossaster papposus and Pisaster ochraceus) as a representation of the rocky intertidal zone in the Puget Sound. Experiments were conducted under two temperatures, 11.8°C and 20.7°C, to simulate a control similar to current water conditions and an increased temperature similar to recent heat wave conditions. Plankton growth rate was measured by counting the change in number of individuals per 1 mL sample over a four day period. Mussel feeding behavior was measured by recording change in fluorescence over a four day period, both with and without the presence of a predator (sea star). Sea star feeding behavior was measured by counting the number of mussels consumed over a 24 hour period. The results showed decreased plankton growth in the increased temperature treatment (t-test, p=0.065). Mussel feeding rate decreased as a result of both increased temperature and presence of a predator (two-way ANOVAp=0.040). Sea star feeding rate additionally decreased under increased temperature (t-test p=0.090). Because these organisms are integral to rocky intertidal zones, we can use their behaviors as bioindicators and conclude that these ecosystems are impacted by climate change. Variation in behavior could result in significant changes in species abundance and ecosystem structure; it is essential to research how ecosystems within the Puget Sound will adapt to future environmental conditions.
- Presenters
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- Renee Wang, Senior, Computer Engineering
- Emelia May Hughes, Senior, Informatics (Human-Computer Interaction), Art
- Anson Huang, Senior, Computer Science, Political Science
- Mentors
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- Amy Zhang, Computer Science & Engineering
- Tanu Mitra, Information School
- Prerna Juneja, Information School
- Session
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Poster Session 3
- Commons East
- Easel #34
- 2:30 PM to 4:00 PM
Misinformation is a major problem in today’s online information ecosystem. One way that platforms address this problem is by providing viewers with signals so they can assess the credibility of the content that they encounter. However, there are few existing signals on online video-sharing platforms, which is concerning as video platforms like YouTube are a common way for people to get information. We seek to understand how citations can be applied as credibility signals to videos on the video-sharing platform YouTube. First, in an interview study, we investigated how users interacted with existing credibility signals on YouTube, and found that video intent and context shaped how users would apply both existing signals as well as future citations. We used these findings to inform our design and implementation of a browser plug-in that allows users to create and view citations on all videos they see on YouTube. We now want to explore how users might use this system to apply citations on YouTube and how viewing citations on a video might impact user behavior. In this second study, we plan to observe how the system affects the user's perception of video credibility and the effectiveness of our system as a credibility signal.
- Presenters
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- Jasmine Singh, Senior, Chemistry: Biochemistry (Bothell)
- Aaron Converse, Senior, Chemistry: Biochemistry (Bothell)
- Andrew Griggs Clark, Senior, Chemistry: Biochemistry (Bothell)
- Mentor
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- Lori Robins, Physical Sciences (Bothell Campus)
- Session
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Poster Session 3
- Commons West
- Easel #16
- 2:30 PM to 4:00 PM
Chronic wounds affect 20 million people worldwide and are a silent epidemic often occurring with a comorbid condition such as diabetes. Most often, these wounds are treated with wound dressings, topical formulations, and antibiotics; however, their effectiveness is hampered by the presence of biofilms. We have shown that hypochlorous acid (HOCl) is effective against chronic wound biofilms, in particular against Pseudomonas aeruginosa, one of the most persistent Gram-negative bacteria present in most chronic wounds. However, the mechanism of action of HOCl against P. aeruginosa remains unknown. Given the unique behavior of HOCl with P. aeruginosa survival, we hypothesized that the quorum sensing compounds and virulence factors would lose functionality after reacting with certain concentrations of HOCl. Here, we tested the effects of HOCl against elastase and N-3-oxo-dodecanoyl homoserine lactone (AHL), a virulence factor and quorum sensing molecule, respectively, that are excreted for P. aeruginosa survival in biofilms. Our primary aim was to study how hypochlorous acid interferes with elastase activity and modifies the AHL structure. The activity of elastase was monitored by UV-Visible spectroscopy and the effects of HOCl on the AHL was monitored by High-Performance Liquid Chromatography (HPLC). Elastase enzyme activity showed a dose response to various concentrations of HOCl. Simultaneously, we developed a successful method for monitoring modifications of the AHL. Our results suggest that HOCl can act to modulate communication signals used by P. aeruginosa. This opens up further opportunities to understand the mechanism of action of HOCl against quorum sensing compounds and virulence factors and provides useful clinical information for treating chronic wounds.
- Presenter
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- Vidha Sudhesh, Senior, Biochemistry, Biology (Molecular, Cellular & Developmental)
- Mentor
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- Pengyao Jiang, Genome Sciences
- Session
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Poster Session 3
- Balcony
- Easel #55
- 2:30 PM to 4:00 PM
Mutations are the main source of diversity due to the random changes in genetic sequence. Mutation rate can be influenced by genetic modifiers, DNA damage, and the environment. Mutator alleles, which cause high mutation rates, are less known about how often they arise in the natural populations and how they interact with other genomic changes, such as recombination and introgression. Using the natural isolates of the 1,011 strains of the budding yeast Saccharomyces cerevisiae, we examined the relative frequencies of different types of mutation calculated from natural polymorphisms, i.e. mutation spectrum, to determine potential historical impacts of S. cerevisiae mutation rate modifiers that affect certain mutation rates disproportionately. From the mutation spectra analysis, we observed African Beer strains are outliers and some French Dairy strains show a mutation spectra more similar to African beer strains than the rest of the strains. Our initial analysis of the two groups of strains suggests potential mutator allele introgression from the African Beer to some of the French dairy strains. We set out to examine de novo mutation spectra from African beer, French dairy strains with and without African beer Introgression. The natural strains have a variety of ploidies so we repurposed our existing mutation accumulation pipeline with haploid strains. Using CAN1 as a reporter gene, we deleted the endogenous locus using CRISPR-Cas9 and inserted a sensitive copy to measure the mutation spectra in these strains to test the hypothesis. We expect to find the introgressed French dairy strains’ mutation spectra resemble that from African beer strains if our prediction is correct. Ultimately, our results will shed light on how mutators behave in natural populations of budding yeast and how they contribute to evolution.
- Presenter
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- Anna Park, Junior, Biochemistry
- Mentor
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- Stuart Strand, Civil and Environmental Engineering
- Session
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Poster Session 3
- Commons East
- Easel #31
- 2:30 PM to 4:00 PM
The Strand Lab Formaldehyde Team studied the use of genetically engineered houseplants to reduce indoor air pollution. Our goal was to make these houseplants accessible to the public, provide environmentally friendly décor, while also making homes safer. Formaldehyde is a ubiquitous carcinogenic chemical found in homes across the world. The houseplants are genetically engineered to express the enzyme formaldehyde dehydrogenase (FALDH) cloned from bacterium Brevibacillus brevis. FALDH oxidizes formaldehyde to harmless formate. Our houseplant, Epipremnum aureum, commonly known as pothos ivy, was chosen for its ease of growth, for its susceptibility to genetic manipulation, and for its inability to flower, which prevents the uncontrolled spread of genetically engineered plants. We tested the abilities of these houseplants to remove formaldehyde from the air. With the use of a flow through bioreactor and high pressure liquid chromatography (HPLC) we determined that formaldehyde was removed more rapidly by genetically engineered pothos ivy compared to the wild-type. By using the bioreactor with a permeation chamber to dose the inflowing air with trace amounts of formaldehyde we exposed the plants to concentrations of formaldehyde typical of those found in homes. We also used 2,4-dinitrophenylhydrazine (DNPH) traps to concentrate the formaldehyde in the effluent of the bioreactor for injection onto the HPLC. Thus, we were able to determine whether and with what rates the genetically engineered plants removed and degraded formaldehyde.
- Presenter
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- Sanika Kulkarni, Senior, Biology (Molecular, Cellular & Developmental)
- Mentors
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- Sara Jane Webb, Psychiatry & Behavioral Sciences, Seattle Children's Research Institute
- Megha Santhosh, Psychiatry & Behavioral Sciences, Seattle Children's Research Institute
- Session
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Poster Session 3
- Commons West
- Easel #13
- 2:30 PM to 4:00 PM
Autism Spectrum Disorder (ASD) is a neurodevelopmental disorder characterized by social, communicative, cognitive, and behavioral impairments, observable in over 2% of adults in the United States. Hedonic capacity is a concept that is defined as reward responsiveness and has become associated with ASD and related disorders. When faced with stimuli that are typically considered to be rewarding, one’s level of hedonic capacity can be determined by his or her ability to feel pleasure in response. Research has shown that individuals with ASD experience decreased levels of social and interpersonal pleasure when compared to typically developing (TD) individuals. Considering the prevalence of social impairments in autism, I aim to analyze the relationship between hedonic capacity for interpersonal pleasure and autism social traits in ASD and TD adults. 99 adults (ASD = 52) from the longitudinal ACE2 study, a five-site NIH-funded study on gender differences in autism, were included in the analysis. Participants completed the Anticipatory & Consummatory Interpersonal Pleasure Scale (ACIPS), which assesses an individual’s ability to look forward to interactions with other people (anticipatory social pleasure) as well as to experience pleasure for social/interpersonal interactions when they occur. We also utilized the Social Responsiveness Scale (SRS-2) to measure participant social responsiveness, including social motivation. I expect ASD individuals to have a lower ACIPS score and more deficits in social responsiveness. Additionally, I expect that individuals with decreased interpersonal pleasure will have greater social responsiveness impairments and expect this relationship to be stronger in the ASD group. Understanding the relationship between hedonic capacity for interpersonal pleasure and social responsiveness will allow us to further understand how decreased social pleasure may be related to autism traits and symptoms.
Poster Presentation 4
4:00 PM to 5:30 PM
- Presenters
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- Selina Teng, Senior, Mechanical Engineering: Mechatronics Mary Gates Scholar
- Natalie Dean, Senior, Mechanical Engineering: Mechatronics
- Yusuf Rasyid, Senior, Aeronautics & Astronautics
- Mentor
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- Igor Novosselov, Mechanical Engineering, The University of Washington
- Session
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Poster Session 4
- Commons East
- Easel #42
- 4:00 PM to 5:30 PM
The detection of bioaerosols is critical to the control of public health hazards. Improvements in detection technology enable better tracking of infectious diseases, allergens, biogenic pollutants, and biowarfare agents. Bioaerosols are typically detected through laboratory analysis on collected aerosol samples. Porous filters exist for collecting aerosols, but are bulky, which makes them unsuitable for many testing environments and results in a dilute sample due to the large collection region. We present an automated microfluidic device for the collection of bioaerosols. Our design aerodynamically focuses aerosol particles into a microwell collection region, then elutes (washes off) the contents of the well into a 10 μl volume for analysis. This method automates the elution process and results in a tenfold increase in sample concentration compared to conventional filtering, making it highly compatible with analysis methods such as spectroscopy, plaque assay, and qPCR. In preliminary experiments, we evaluated device performance by collecting non-biological test particles. We then compared the device’s collection efficiency to that of reference filters and found the efficiency to be approximately 80%. Additionally, we applied a water-soluble sacrificial layer on the microwell to reduce the elution time. To optimize the sacrificial layer, sucrose solutions of varying concentration were tested on 3D-printed microwells. The next focus is on optimizing the elution protocol to achieve peak elution efficiency in the minimum timeframe. We, the undergraduate research assistants on the team, are responsible for running experiments, analyzing data, and presenting to stakeholders. This project will ultimately provide a fast and efficient method for users to examine a room for bioaerosols, with little to no training and minimal user exposure to hazardous air. We hope that this device can be provided to a variety of beneficiaries, including healthcare providers for immunocompromised individuals, severe allergy sufferers, and virulent disease researchers.
- Presenters
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- Jillian Renee Lumacad Reyes, Senior, Psychology
- Linh Pham, Senior, Psychology, Philosophy UW Honors Program
- Bellamie A Sy, Senior, Psychology
- Aliya Serena Tessa Marie Sciamanna, Senior, Psychology
- Mentor
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- Sapna Cheryan, Psychology
- Session
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Poster Session 4
- MGH 241
- Easel #71
- 4:00 PM to 5:30 PM
Workplace diversity and inclusion (D&I) efforts are well-intentioned but often too focused on meeting metrics instead of making structural changes that are directly aligned with the commitment to D&I. To examine people’s perception of company training towards D&I efforts, the current study investigates whether knowing a company is dedicated to implementing D&I initiatives influences their perception on the necessity of other systemic interventions. We expose each participant to a company that implements D&I training (diversity training company) and a company that does not (no diversity training company). Then, we measure their perception of each company's need for structural changes. We hypothesize that participants presented with the diverse training company will rate the company’s future diversity efforts as less necessary. The finding of this research provides evidence that the presence of D&I training may have unintended consequences of preventing organizations from making other important systemic changes.
- Presenters
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- Eui Jeong, Senior, Construction Management
- Connor Noel Anderson, Senior, Construction Management
- Mentor
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- Ken-Yu Lin, Construction Management, College of Built Environments, UW
- Session
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Poster Session 4
- Commons West
- Easel #1
- 4:00 PM to 5:30 PM
- Presenter
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- Bruce An Clarke, Senior, Psychology, Communication
- Mentor
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- Valerie Manusov, Communication
- Session
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Poster Session 4
- Commons East
- Easel #37
- 4:00 PM to 5:30 PM
Implications of social media on social relationships, especially those of younger people, has been widely studied in recent years as adoption of various apps grew rapidly during the late 2010s. Within this research has been a focus on the use of social media to maintain relationships. Snapchat is one of the most popular social media platforms used among Gen-Z individuals. This study investigates how college students used Snapchat during early 2021 in the COVID-19 pandemic to keep up with their friends when more typical forms of engagement were suspended. The study targeted concepts such as relational maintenance, relational closeness, relational well-being, and comparison to face-to-face communication. The study started with four virtual focus groups where I gained firsthand accounts of Snapchat use by UW students. My advisor and I then created a survey based on responses from these focus groups and administered it online to people recruited from 17 college-centric subreddits from across the United States. Results indicated a dichotomy between members of Gen-Z in their Snapchat use, where a certain portion found Snapchat to be related to positive developments within their friend group while the other portion saw the app providing an inadequate amount of closeness and maintenance. These findings suggest that Gen-Z should not be generalized as one homogenous group, but, rather, recognized as two subsets of a generation who have differing views and preferences when it comes to the influence of their virtual communication habits on their friendships. When looking at the present state of the COVID-19 pandemic, this study would be worth conducting again to identify differences now that in-person meetings have become more common.
- Presenter
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- Megana Shivakumar, Senior, Biology (Molecular, Cellular & Developmental)
- Mentor
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- Paul Drain, Global Health
- Session
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Poster Session 4
- MGH 241
- Easel #78
- 4:00 PM to 5:30 PM
Globally, about 10% of people living with HIV (PLHIV) also have concurrent Hepatitis B virus (HBV) infection. Without routine screening for HBV, the choice of antiretroviral therapy can be more difficult to manage, as not all medications treat both infections. The objective of this research was to identify risk factors that put PLHIV at higher risk of HBV infection. We conducted a prospective clinic-based study from 2013 – 2017 in Durban, South Africa. Participants were enrolled into the study if they tested positive for HIV, and all PLHIV were tested for HBV after enrollment. Follow up assessments were conducted at 3, 6, and 12 months after enrollment. Patients completed questionaries pertaining to sociodemographic status, medical history, clinical symptoms and mental health at each visit. I compared prevalence of HBV between age groups using a T-test. Univariate and multivariate logistic regression models were conducted on co-variates of the data set using the ‘dplyr’ and ‘stats’ packages in R. I measured adjusted odds ratios (aORs) for each covariate to compare risk factors for those with HBV and HIV compared to PLHIV. A total of 3105 PLHIV were enrolled, with a mean age of 33 years and 43% (n=1331) male. Of those, 196 (6%) individuals tested positive for HBV, with a mean age of 33 years and 62% (n=121) male. Participants aged >25, who were born before South Africa implemented routine infant vaccination for HBV in 1995, were more likely to have HBV (p=0.043). HBV diagnosis was associated with drinking alcohol over the past year (aOR = 1.17), lack of condom use (aOR = 1.10), and income >10,000 ZAR/month (aOR = 1.63). Implementing routine HBV testing for adults born before 1995 can help prevent the further increase of HBV infection rates. These study findings also provide additional support for enhanced HBV screening among PLHIV.
- Presenter
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- Gavin Hooper, Senior, Biochemistry
- Mentor
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- Libin Xu, Medicinal Chemistry, libinxu@uw.edu
- Session
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Poster Session 4
- Commons East
- Easel #29
- 4:00 PM to 5:30 PM
Lipid peroxidation has been found to be associated tightly with ferroptosis, a type of programmed cell death. Our lab recently reported that lipids with unconjugated and conjugated double bonds undergo lipid peroxidation via different mechanisms. Importantly, conjugated polyunsaturated fatty acids (PUFAs) were found to be more reactive to lipid peroxidation than their non-conjugated isomers. Since ferroptosis is caused by lipid peroxidation, we hypothesize that the addition of different exogenous lipids will affect the induction of ferroptosis in cancer cells differently. We treated multiple cancer cell lines with a variety of saturated, monounsaturated, polyunsaturated FAs, and other biologically important lipids at varying concentrations to obtain the EC50 values, the concentrations of various lipids where 50% of cells are viable. We then treated the cell lines with ferroptosis inducers in the presence and absence of various lipids at their EC50 concentrations to observe changes in cell viability. We found that while some biologically important lipids protect the cells from ferroptosis, PUFAs enhance ferroptosis induction. Among PUFAs, the conjugated ones show higher potency compared to their nonconjugated counterparts. We then performed flow cytometry to compare lipid peroxidation accumulation between lipid treatments and found that conjugated PUFAs lead to higher lipid peroxidation levels. Additionally, according to the proposed lipid peroxidation mechanism of conjugated PUFAs, conjugated aldehydes could potentially form as secondary oxidation products. Aldehydes are highly electrophilic and react readily with nucleophiles in cells, including DNA and proteins. We performed cell viability assays with unsaturated, nonconjugated, and conjugated aldehydes and found that the conjugated ones are the most toxic to the cancer cells, suggesting that they contribute to the high potency of conjugated PUFAs in inducing ferroptosis. Identifying the effects of biologically important lipids and their oxidation products on the induction of ferroptosis in cancer cells can lead to the development of therapeutic candidates.
- Presenter
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- Gabriella Ruth Green, Senior, Public Health-Global Health
- Mentors
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- Sarah Benki-Nugent, Global Health
- Michelle Emerson, Health Services, Toward Universal Newborn and Early Childhood Hearing Screening in Kenya
- Session
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Poster Session 4
- MGH 241
- Easel #77
- 4:00 PM to 5:30 PM
Towards Universal Newborn and Early Childhood Hearing Screening in Kenya (TUNE) is a project designed to introduce low-cost phone applications, akin to a standard tool, to screen for middle ear fluid in children. The device, which can be used by non-specialists, has the potential to provide low- and middle-income countries the opportunity to address problems in ear and hearing health that could otherwise impair childhood development. Kenya does not have a universal newborn and early childhood audiology screening program due to a lack of trained screeners and the high cost of assessment tools. The TUNE team met twice weekly via Zoom since colleagues lived in both Seattle and Nairobi, Kenya. My early responsibilities included documentation of stakeholder input. In September 2021, we sponsored a healthcare worker training program in Nairobi. In support of this work, I generated the training videos, created a website, and developed slide decks. These tools were used to provided healthcare workers with a background on hearing health and the importance of early identification of hearing loss, general information about the phone application, and trained them to use the device with a detailed instructional video. Healthcare workers were then given time to practice using the application. Finally, they were asked to complete a survey about the application. Most respondents reacted positively to the tool, with 100% of participants reporting they “would be comfortable using the device ‘as is’ in their work.” Most indicated that they would recommend using the application but noted that there were updates that could make the application more user friendly. We used the resulting qualitative data to inform future iterations of the application, a stakeholder workshop and policy recommendations. Ultimately this technology may help ensure that children’s growth, development, and educational needs are met in low- and middle-income countries.
- Presenter
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- Irissa Elaine Danke, Senior, Marine Biology
- Mentors
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- Skyla Walcott, National Oceanic and Atmospheric Administration
- Paul Conn, Wildlife Science
- Erin Moreland, Aquatic & Fishery Sciences, NOAA Fisheries
- Peter Boveng, National Oceanic and Atmospheric Administration, NOAA Alaska Fisheries Science Center
- Session
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Poster Session 4
- Commons East
- Easel #44
- 4:00 PM to 5:30 PM
Aerial surveys are a tool commonly used to estimate population abundance for many species, yet little is known about how aircraft presence impacts animal behavior. The National Oceanic and Atmospheric Administration (NOAA) periodically conducts surveys in the U. S. waters of Alaska to monitor Arctic seal populations. These surveys are important as trends show reductions in the sea ice that these pinniped species depend on. Quantification of ringed seal (Pusa hispida) and bearded seal (Erignathus barbatus) rates of flushing from the sea ice into the water in response to aircraft overflights is necessary to strengthen population estimates and implement sound policy measures for activities in Alaska that may impact these pinnipeds. In the spring of 2021, NOAA conducted aerial surveys over the sea-ice of the Beaufort Sea. As an intern I separated the video into trials that captured seals before, during, and after the plane passed overhead. For each individual seal I then recorded species, weather, group size, distance from the plane, and seal behavior changes and geographic locations and analyzed which factors influence seal flushing behavior. In 161 trials, we recorded 266 ringed seals and 21 bearded seals. Only one bearded seal flushed (4.8%) while 47.8% of all ringed seals flushed. Most ringed seals flushed before the plane passed overhead. Generalized linear models indicated that distance from flight path and group size exerted the greatest influence on flushing behavior while weather and plane altitude were less important. Less distance from the flight path and larger group sizes led to higher ringed seal flushing rates. Understanding ice seal behavior will improve population estimates in future surveys. Overall flushing rates are important indicators of the disturbance ringed and bearded seals experience as a result of commercial and scientific activity in the Arctic and may be useful for permitting processes.
- Presenter
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- Hannah R. Flores, Senior, Microbiology
- Mentors
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- Karen Levy, Environmental & Occupational Health Sciences
- Nicolette Zhou, Environmental & Occupational Health Sciences
- Christine Fagnant, Environmental & Occupational Health Sciences
- Session
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Poster Session 4
- Balcony
- Easel #45
- 4:00 PM to 5:30 PM
Individuals experiencing homelessness and housing instability in King County have inadequate access to water, sanitation, and hygiene (WASH) services. This urgent matter of community health has only been exacerbated by the coronavirus disease (COVID-19) pandemic in recent years and can necessitate open defecation or unsafe disposal of wastewater. Particularly among those residing in recreational vehicles (RVs) and use their bathroom facilities, unsafe sanitation practices increase the risks of intestinal pathogen transmission and infection in densely populated communities. In a continuation of efforts to address this, I have developed a study that aims to identify an optimal method of RV wastewater concentration for downstream detection of pathogens. With informed consent from RV residents and sampling assistance from Seattle Public Utilities, I have began collecting a representative collection of samples of RV wastewater from multiple neighborhoods across Seattle. I have utilized a split-and-seed approach in which half the samples were seeded with known amounts of target bacterial, viral, and spore-forming organisms, and the other half left unseeded as a control. These samples will be used to compare two methods of sample concentration, skimmed milk flocculation and membrane filtration, using a weighted rubric that evaluates biosafety, seeded organism recovery efficiency, personnel time, and cost. Upon observation in the lab, I have found that skimmed milk flocculation led to inhibition during detection via molecular assays. Additionally, high turbidity of the samples yielded significant logistical challenges with processing skimmed milk samples, leading my team and I to instead favor the membrane filtration technique. As we move forward, I anticipate detecting elevated levels of pathogens in wastewater from RVs when compared to samples from control locations chosen to represent populations living in sewered and unsewered environments representing populations. Upon development of the optimized protocol, my work will be prepared for publication in a peer-reviewed journal and shared with the City of Seattle.
- Presenter
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- Renee Michelle Gibson, Senior, Biochemistry
- Mentor
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- Darrian Bugg, Pathology
- Session
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Poster Session 4
- Commons East
- Easel #23
- 4:00 PM to 5:30 PM
Following a heart attack, clinically known as a myocardial infarction (MI), the heart undergoes changes that replace healthy heart muscle with rigid scar. Fibrotic scarring can lead to long term heart dysfunction, arrhythmias, and potentially heart failure. Currently, there are no anti-fibrotic therapies available to patients that can help to stop, slow, or reverse the heart's fibrotic response to injury. It is thought that the transition of fibroblasts to activated matrix secreting myofibroblasts underlie the hearts fibrotic response, and harnessing these transitions holds therapeutic promise. Although the mechanisms behind these transitions remain poorly understood, recent genetic mouse models removing the mitogen-activated protein kinase p38α in resident cardiac fibroblasts have shown that fibroblasts void of p38α fail to form activated myofibroblasts in response to MI. This resulted in over a 50% scar area reduction after MI, but these mice were prone to cardiac rupture since they failed to form an early protective scar crucial to maintaining the heart’s structural stability. Thus, when considering the therapeutic window for anti-fibrotic therapies, timing is essential. This led us to investigate the ideal therapeutic window for small molecule p38 inhibition to reduce scarring and preserve cardiac function in a mouse model of MI. A p38 inhibitor was administered to mice either immediately following MI, to reduce the formation of myofibroblasts, or 3 days following MI to try to initiate myofibroblast deactivation to reduce overall scarring but also give time for initial protective scar to form. Following 10 days post MI, mice receiving a p38 inhibitor showed preserved cardiac function and reduced pathological remodeling. Yet, fibrosis was only significantly reduced in mice receiving the inhibitor 3 days following MI. This data suggests that targeting myofibroblast deactivation holds therapeutic promise in reducing pathological fibrotic remodeling, although further studies are needed to fully validate these findings.
- Presenter
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- Tara Michelle (Tara) Young, Sophomore, Biochemistry Mary Gates Scholar, UW Honors Program
- Mentor
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- Monica Guo, Microbiology, University of Washington School of Medicine
- Session
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Poster Session 4
- Commons West
- Easel #9
- 4:00 PM to 5:30 PM
DNA replication is vital to most every organism, yet key processes in replication are not yet understood. As the replisome moves through a strand of DNA, it naturally induces a state where the DNA strand wraps around itself, termed ‘positive supercoiling.’ Positive supercoiling knots DNA, preventing DNA from being pulled apart further during replication, with ~100 supercoils formed every second during DNA replication in bacteria. These positive supercoils must be resolved for DNA replication to continue, a task performed by topoisomerase enzymes. However, the mechanism for topoisomerase recruitment to positive supercoils is not known. Growth-Associated Protein in Regulation (GapR) is a structuring protein that stimulates topoisomerases in α-proteobacteria: without GapR, α-proteobacteria die off, unable to replicate their DNA, suggesting GapR is likely a missing regulator to topoisomerase recruitment. The focus of my research is the mechanism for how GapR interacts with topoisomerases, and I hypothesize that GapR interacts directly with topoisomerases. I am studying this interaction by analyzing interacting proteins from interaction assays between GapR and proteins from Caulobacter crescentus. In initial assays, I utilized histidine-tagged GapR to interrogate potential interacting proteins and found multiple bands of proteins in the size range of topoisomerases, supplemented with similar findings for 3xFLAG tagged topoisomerase subunits GyrA and ParC identifying GapR-sized proteins, suggesting a possible direct interaction between GapR and topoisomerase enzymes. Because topoisomerase inhibitors are anticancer and antimicrobial therapeutics, understanding the mechanism of how GapR and topoisomerases interact will reveal crucial information regarding the topoisomerase regulation of DNA replication and could have far-reaching implications for both antibacterial drugs and cancer treatment.
Visual Arts & Design Presentation 4
2:00 PM to 3:30 PM
- Presenter
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- Ruby Khin (Ruby) Barone, Junior, Art History, Comparative History of Ideas Mary Gates Scholar
- Mentors
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- José Antonio Lucero, Comparative History of Ideas, International Studies
- Maria Elena Garcia, Comparative History of Ideas
- Adam Warren, History
- Lydia Heberling, Comparative History of Ideas, University of Washington, Seattle
- Session
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Visual Arts & Design Showcase
- Odegaard Undergraduate Library
- 2:00 PM to 3:30 PM
This project explores the history and power of language in relation to graffiti writer Rammellzee’s philosophy of Ikonoklast Panzerism as well as to his art. Using informal interviews, ethnographic engagement, and close readings relating to Rammellzee and the alphabet’s history, I investigate how the individual can claim the power of language back from colonizers and oppressors through subversive art. I question how Rammellzee’s work can be used to reimagine the alphabet as a tool to deconstruct monuments of oppression and imperialism that are pervasive to society. Rammellzee founded Ikonoklast Panzerism on the idea that each individual letter of the alphabet can be armored and weaponized in order to free themselves from the institutions which wield the power of language over the rest of society. He bases his beliefs in the medieval history of monastic illuminated calligraphy and uses his theories to create art which subverts structures of power. I argue that Rammellzee’s work reveals the potential of individualized power by reclaiming the almighty power of language and challenging the limitations of legibility and standardization. Drawing from concepts such as ethnographic refusal, and from the writing of scholars like Michel-Rolph Trouillot to inform my creative work, this project emphasizes the power of the written word in today’s world and investigates how language can be reimagined and repurposed by each individual. I synthesize my research findings into a creative form that touches on my own relationship to language in academia, and how I can apply Rammellzee’s ideas to my own life.
Poster Presentation 4
4:00 PM to 5:30 PM
- Presenter
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- Joey Liang, Senior, Bioengineering Mary Gates Scholar
- Mentor
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- Suzie Pun, Bioengineering
- Session
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Poster Session 4
- Commons West
- Easel #6
- 4:00 PM to 5:30 PM
The SARS-CoV-2 Delta variant, first detected in India, has contributed significantly to the 78 million global COVID-19 cases throughout the course of the pandemic. As such, effective diagnostic tools remain crucial for controlling widespread infection. DNA aptamers are single-stranded, self-folding oligonucleotides that can bind to specific targets with high specificity and affinity. DNA aptamers are especially useful for diagnostic applications because they are stable, inexpensive, consistent between batches, and allow for additional chemical modifications for diagnostic applications. On the other hand, commonly-used alternatives such as antibodies are difficult to store and are produced through a labor-intensive cellular process that makes them susceptible to batch-to-batch variation. This project selected for DNA aptamers that bound to the S1 domain of the SARS-CoV-2 Delta variant spike protein using the iterative method SELEX (Systematic Evolution of Ligands by Exponential Enrichment). In each round of SELEX, a starting aptamer pool was first exposed to undesirable proteins in a process known as negative selection. Aptamers that bound strongly to these unwanted proteins were removed from the aptamer pool using magnetic Dynabeads. In an analogous process of positive selection, aptamers with high affinity for the Delta S1 spike protein were retained in the aptamer pool, while nonspecific aptamers were discarded. With each passing round of SELEX, the stringency of aptamer binding was increased such that only the highest affinity aptamers remained in the final SELEX rounds. These final rounds were then sequenced through Next-Generation Sequencing (NGS) and the aptamers that displayed the highest enrichment were characterized using a combination of ELISA (enzyme-linked immunosorbent assay) and biolayer interferometry. In the near future, effective aptamers discovered through this process will be applied in antigen testing applications through the use of tools like lateral flow assays.
- Presenter
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- Abi Chandru, Senior, Biochemistry Mary Gates Scholar
- Mentor
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- Zin Khaing, Neurological Surgery
- Session
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Poster Session 4
- Balcony
- Easel #53
- 4:00 PM to 5:30 PM
The older population (≥65 years old), projected to double by 2030, is the fastest growing age group and represents 20% of the US population. Normal aging of the brain results in a nearly 30% reduction of microvasculature in the cerebral cortex with significant drops in capillary density, vascular responses to metabolic demand, and reduced angiogenic capabilities signifying the “sensitive” nature of the aging brain to ischemic injuries. The aged spinal cord is also vulnerable to injuries; in recent years, spinal cord injuries (SCI) from ground falls are among the most common trauma suffered by older patients. Unfortunately, we know almost nothing about how spinal cord microvasculature, hemodynamics, and inflammation changes with age. The present study aims to address this knowledge gap. Our group has recently developed a novel intravital ultrafast contrast enhanced ultrasound (CEUS) imaging to visualize blood flow within the microvasculature with unparalleled temporal (30,000 frames per second) and spatial (down to 50 micron) resolution. Unlike other imaging modalities limited to only a few hundred microns deep from the surface of the tissue (e.g., laser speckle and two photon imaging), ultrafast CEUS imaging allows us to examine intraparenchymal microvascular structure and blood flow hemodynamics within the entire depth of the spinal cord tissue in real-time. We applied this innovative technique to study intraspinal microvasculature anatomy and function during normal aging, and age-related microvascular vulnerabilities after traumatic SCI (tSCI). We also examined differences in inflammatory markers from aging using basic histological and microscopy techniques. Because previous studies have detected microvascular density differences between male and female rodent and human models, we have also measured microvascular changes during normal aging in both sexes. Results from this study will ultimately be foundational to understanding sex and age-related alterations in both the static and dynamic microvascular function of the spinal cord.
- Presenter
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- Khushi Yadav, Junior, Pre-Sciences
- Mentors
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- Michael Bruchas, Anesthesiology, Departments of Anesthesiology and Pharmacology
- Anthony English, Pharmacology
- Session
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Poster Session 4
- Commons West
- Easel #13
- 4:00 PM to 5:30 PM
The consumption of Cannabis has increased with legalization, rising 46% from 2019 to 2020 in the US. The primary psychoactive compound in Cannabis, áƒ9-tetrahydrocannabinol (THC), modifies motivation and induces hypolocomotive effects that cause patients to stop using medical marijuana. Given the increasing frequency of Cannabis use and the unwanted side effects of THC, I sought to decipher the motivational and locomotive effects of THC on prefrontal cortex (PFC) activity during appetitive Pavlovian conditioning. I utilized biological sensors to measure neural activity (CamKIIa-GCaMP6f for calcium in projection neurons (N=3) and eCB2.0 for total endocannabinoid activity (N=6)) in WT mice aged 8-12 weeks. Neural activity (utilizing fiber photometry) and general behavior was recorded during appetitive Pavlovian conditioning. Here, a house light in the behavioral chamber (conditioned stimulus (CS)), initiated 6s before a sipper (sucrose) extended for 20 seconds (unconditioned stimulus (US)). After a random inter-trial interval of 60, 90, 120, or 150s, another event triggered a reward to consolidate an association between the house light (CS) and the reward (US). Mice experienced this conditioning for 25 minutes every day for 5 days. On day 6, I treated mice with either a moderate dose of THC (5 mg/kg) or vehicle to measure changes in neural and endocannabinoid activity during conditioning. I found that both endocannabinoid and calcium signaling were tightly locked to the CS and the US. Interestingly, trials where THC-treated mice did not interact with the sipper (THC-dependent demotivation), neural activity matched the pattern during training days. These data suggest time-locked neural activity linked to stimuli, separate from the locomotor output, to receive the reward. This study contributes to the understanding of THC’s effects on signaling during motivated versus locomotive behaviors to inform future THC-derived treatment paradigms.
- Presenter
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- Jenny Du, Sophomore, Pre-Sciences
- Mentors
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- Hailey Loucks, Pediatrics
- Angela Christman, Pediatrics, The University of Washington School of Medicine
- Session
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Poster Session 4
- Commons East
- Easel #31
- 4:00 PM to 5:30 PM
Joubert syndrome (JS) is a neurodevelopmental disorder diagnosed by the appearance of a “molar tooth sign” on an axial brain magnetic resonance imaging (MRI). JS patients present with hypotonia (low muscle tone), abnormal eye movements, and ataxia (uncoordinated movements). Subsets of patients develop progressive medical complications. Autosomal recessive, X-linked and rare dominant causes of JS in >40 different genes can be identified by DNA sequencing in ~75% of families. Cryptic DNA variants and alternative inheritance mechanisms are thought to account for the other 25% of families. The goal of this project is to evaluate the role of non-canonical splice variants in the pathogenesis of JS. We identified candidate splice variants in MKS1 from whole genome and targeted sequencing data and prioritized using SpliceAI annotation. A synonymous variant in patient 1 and a 30 base pair intronic deletion in patient 2 were identified. For each variant, we designed two sets of primers to flank the affected splice junction. Next, we extracted RNA from patient fibroblasts. We converted RNA into complementary DNA (cDNA) and amplified using polymerase chain reaction (PCR). Using gel electrophoresis and Sanger sequencing, we compared PCR products from patients versus controls. We identified differences in DNA band sizes between unaffected control and patient samples. Based on Sanger sequencing, we determined that exon 4 is skipped in patient 1, but we were unable to determine the specific aberrant splicing event in patient 2. We confirmed the pathogenicity of candidate splice variants, identifying the precise genetic cause. An accurate genetic diagnosis informs prognosis, avoids unnecessary work-up, and guides monitoring for associated complications. Defining all genetic causes of JS expands our knowledge of the genetic mechanisms underlying recessive Mendelian conditions, confirming a substantial role for non-canonical splice variants.
- Presenter
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- Jordan Lindsay Brown, Senior, Biochemistry
- Mentors
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- Dustin Maly, Chemistry
- Zachary Potter, Chemistry
- Session
-
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Poster Session 4
- Commons East
- Easel #33
- 4:00 PM to 5:30 PM
T cell activation is an essential element of the adaptive immune response. When the T-cell antigen receptor (TCR) interacts with a peptide antigen bound to a major histocompatibility complex (MHC), lymphocyte-specific protein tyrosine kinase (Lck) phosphorylates the CD3ζ chains of the receptor complex, initiating an intracellular signaling cascade. Therefore, Lck plays a crucial role in TCR signal transduction and thus Lck’s kinase activity and scaffolding function are tightly regulated by intramolecular protein-protein interactions (PPIs). Regulation is conferred by phosphorylation of two tyrosine residues on Lck, leading to conformational changes. When the C-terminal tail tyrosine is phosphorylated, the alignment of catalytically necessary residues is perturbed, rendering an inactive closed conformation. However, when the C-terminal tail is dephosphorylated, and the activation loop tyrosine is phosphorylated, Lck adopts a catalytically active open conformation. Using its regulatory domains, Lck also functions as a scaffold. First, Lck uses its tyrosine kinase domain to phosphorylate the kinase ZAP-70. Then, Lck bridges ZAP-70 to LAT by binding both proteins using its regulatory SH2 and SH3 domains. To study the intramolecular regulation of Lck’s kinase activity, we performed a Deep Mutational Scan (DMS) in yeast to measure the activity of ~5,000 single amino acid variants of Lck. Because Lck’s kinase activity is toxic to yeast, we can infer information about Lck’s kinase activity from changes in abundance of yeast expressing individual Lck variants, relative to wild type, over time. Specifically, we analyze the mutations along the SH2-SH3/kinase domain PPI which we hypothesize perturb the accessibility of Lck’s SH2/SH3 domains. In Lck variant expressing T cells, we expect to see differences in Lck’s binding partners due to differences in Lck’s SH2 and SH3 domain accessibility. This research will help us better understand Lck’s role in T-cell activation, with the long-term vision of leveraging Lck variants in next-generation T-cell therapies.
- Presenter
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- Grigory Loginov, Senior, Neuroscience
- Mentors
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- Larry Zweifel, Psychiatry & Behavioral Sciences
- Jordan Elum, Neuroscience
- Session
-
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Poster Session 4
- MGH 241
- Easel #69
- 4:00 PM to 5:30 PM
The mesolimbic dopamine system mediates various behavioral functions, including motivation and reward association. Midbrain dopamine neurons of the ventral tegmental area (VTA) send projections to the nucleus accumbens (NAc), forming the mesolimbic pathway. It has been hypothesized that two subregions of the NAc, core and shell, are differentially involved in motivation and reward association. Previous studies identified distinct groups of dopamine neurons with synaptic projections to either the core or shell. The goal of this project is to establish the functional roles of core- and shell-projecting VTA neurons in motivated behavior. More specifically, we investigate whether either subpopulation is necessary or sufficient to reinstate an extinguished goal-directed behavior. The optogenetic approach allows for millisecond-precise gain or loss of function in distinct neural circuits. We use transgenic mice engineered to express Cre-recombinase in either core- or shell-projecting dopamine neurons. Cre-dependent targeting confers cell-type specificity while local intracranial injection of light-sensitive opsins via viral vector provides anatomical specificity. After surgical manipulations, mice undergo a conditioning task with separate acquisition, extinction, and reinstatement phases to measure the rate of food reward retrieval. Operant conditioning paradigms provide the ability to dissect how cues, contexts, and instrumental responses influence goal-directed behavior. During acquisition, mice are trained for six days of lever pressing for food reward paired with an audiovisual cue. In the extinction phase, no reward or cue is delivered. During reinstatement, lever pressing is followed by laser stimulation and cue presentation. We hypothesize that VTA-core-projecting and VTA-shell-projecting neurons differentially regulate cued reinstatement behavior. Our project will provide insight into the functional organization of the mesolimbic pathway and its role in motivated behavior. Collectively, these studies will establish the anatomical basis of dissociable aspects of motivation, extinction, and reinstatement of reward-seeking behaviors, which are implicated in substance abuse and obsessive-compulsive disorders.
- Presenter
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- Laila Rose Weatherly, Senior, Biochemistry UW Honors Program
- Mentors
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- Allegra Johnson, Radiology
- Natalia Kleinhans, Radiology
- stephen dager, Bioengineering, Radiology
- Sharon Ornelas, Radiology
- Session
-
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Poster Session 4
- Balcony
- Easel #55
- 4:00 PM to 5:30 PM
Although the prevalence of cannabis use among pregnant individuals in the US has increased dramatically over the past decade, limited research is available on the impacts of prenatal cannabis exposure (PCE) on infant development. The main psychoactive compound in cannabis, tetrahydrocannabinol (THC), has been shown to cross the placenta during pregnancy, suggesting potential impact on fetal development. Previous studies yield contradictory findings, yet many link prenatal cannabis use to postnatal outcomes such as impaired motor development. However, many of these studies were conducted before recreational cannabis use was legalized in many states, and often failed to control for known teratogens such as tobacco and alcohol. To address this gap, pregnant individuals from the greater Seattle area who used cannabis frequently (3-5 days/week) during the first trimester (PCE; n=37) or did not use any (control; n=35) were enrolled into this observational study. Use of cannabis, medications, and other drugs were tracked in real-time via weekly surveys throughout pregnancy. After birth, we assessed infants between 6-9 months of age using the Early Motor Questionnaire (EMQ). Birth information including weight, length, head circumference, and Apgar scores (1/5min) were also obtained for each infant after birth. I will investigate group differences on the EMQ and sample characteristics using independent samples T-tests. I hypothesize that infants with PCE will have poorer motor development compared to control infants. I also hypothesize that infants with PCE will have reduced birth weight, head circumference, and length. Due to increasingly widespread cannabis use, research on the impacts of PCE while controlling for demographic factors and known teratogens remains essential to support pregnant individuals in making informed decisions. Additional research on the relationship between PCE dosage and frequency on infant brain development will further aid in providing this necessary and comprehensive guidance.
- Presenters
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- Sophia Trang (Sophia) Pham, Senior, Public Health-Global Health
- Esha Mahal, Senior, Public Health-Global Health
- Mentor
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- Yongdong Zhao, Pediatrics
- Session
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Poster Session 4
- Balcony
- Easel #60
- 4:00 PM to 5:30 PM
Chronic non-bacterial osteomyelitis (CNO), also known in its severist form as Chronic Recurrent Multifocal Osteomyelitis (CRMO), is a rare, auto-inflammatory disease with no present cure. The disease involves the chronic inflammation of normal, healthy bone without the presence of infection. Currently, no medications have been approved by the US Food and Drug Administration specifically for CNO. Consequently, many different types of medications, including disease modifying anti-rheumatic drugs (DMARDs) and tumor necrosis factor (TNF) inhibitors, and Bisphosphonates are being prescribed off label. However, patients can have significant side effects after taking these medications and consistent reports on the prevalence of these serious adverse events (SAE) among CNO patients are lacking. We will be examining instances of COVID-19 infection, hospitalizations, and psoriasis while taking CNO medication. We aim to investigate the association between taking various medications with the prevalence of SAEs among patients under 21 years old. For our research, we are drawing information from one of the largest CNO clinical research databases, Seattle Children’s Hospital’s database from January 2014 - present day. We hypothesize that all medications will be well tolerated by CNO patients under 21 years old. Through self-reported patient data and physician examination, information on SAE prevalence was collected. The patient population includes 351 patients treated with DMARDs, 294 treated with TNFs, and 89 treated with Bisphosphonates. General statistical methods were used to summarize the data and determine correlation; descriptive statistics was used to report the incidence rate per 100 patient years.As there is minimal knowledge about effective treatments for CNO, we expect that the results of this study will shed light on the reliability of various medications, improving patient disease management and possibly lead to a cure.
Visual Arts & Design Presentation 4
2:00 PM to 3:30 PM
- Presenter
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- Olivia M. Anderson, Junior, Dance
- Mentor
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- Jennifer Salk, Dance
- Session
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Visual Arts & Design Showcase
- Odegaard Undergraduate Library
- 2:00 PM to 3:30 PM
This solo dance work explores ways in which the male gaze inhibits women's lived sexual expression and identity. As a choreographer and dancer, I will be utilizing creative and embodied research to physically interrogate the portrayal of female bodies as visual and sexual objects. I draw stylistically on the work of modern choreographer Pina Bausch, specifically exploring the way her work displays societally-recognizable misogynistic gender roles and objectified female bodies on stage, then contrasting that with powerful and deeply emotional movement expression from the female dancer, showing that she is much more than the images society places on her, and these images stifle her identity, her freedom, and her truth. I also draw on the work of writer and art critic John Berger, primarily in his examination of the culture of voyeurism and exploitation of female bodies in classical nude paintings. I incorporate bodily shapes from these "nudes'' and also from contemporary advertisements, in both of which women's bodies are often sculpted and twisted out of realistic proportion in order to better suit the male viewer's fantasy, ultimately born of a male fear of rejection from the sexually empowered and autonomous woman. My embodiment of these images exposes the effort and exhaustion behind them. The visceral emotionality in this work comes from my desire to physically challenge these ideas within my own body, as I explore the ways in which I've internalized and performed these harmful notions of desirability and femininity in my daily life.
Poster Presentation 4
4:00 PM to 5:30 PM
- Presenters
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- Mallory Quinn Gustafson, Senior, Biology (Bothell Campus)
- Briahna Lynne Koger, Junior, Biology (Bothell Campus)
- Ada (Adama) Bojang, Senior, Biology (Bothell Campus)
- Imaan Razia Ranjha, Senior, Biology (Bothell Campus)
- Max Morioka Llewellyn, Recent Graduate,
- Mentor
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- Keya Sen, Biological Sciences, UW Bothell
- Session
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Poster Session 4
- MGH 241
- Easel #79
- 4:00 PM to 5:30 PM
Carbapenem-resistant Enterobacteriaceae (CRE), usually belonging to the bacterial species E. coli or Klebsiella pneumoniae, are resistant to carbapenem antibiotics, which are often used as a last resort in treating infections. CRE is a growing public health concern as it spreads rapidly within certain settings like hospitals. Currently, limited research assessing the presence of CRE within environmental samples is available. Without this research, the abundance of CRE and therefore its threat to public health remains unclear, making mitigation strategies challenging. This study seeks to identify if CRE resides in the protected wetlands at the University of Washington Bothell campus. Because crows, specifically Corvus brachyrhynchos, provide an impeccable habitat for Enterobacter species, and because of the large crow population in this area, we want to find out if crows are bringing in any CRE strains to the wetland. To answer this question, samples of both wetland water and crow feces have been collected from strategic locations, and using selective plating potential CRE strains have been isolated. The isolated Enterobacter species have undergone a modified Hodge test with both meropenem and ertapenem. Isolates suspected to have resistance to either antibiotic are undergoing PCR with primers specific to the genes blaKPC, blaNDM, and blaOXA, genes which are common culprits of carbapenem resistance. We plan to perform multidrug resistance testing to determine if our isolated strains are resistant to other antibiotics. After conclusion of this project, we will be able to say if crows could be responsible for bringing these antibiotic-resistant bacteria of clinical importance to the Bothell Wetlands, and what health risks they pose to the community.
- Presenters
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- Fiona Wang, Junior, Computer Science
- Jason Pyke, Senior, Informatics
- Jenny Xu, Senior, Biochemistry, Applied & Computational Mathematical Sciences (Biological & Life Sciences)
- Airei Fukuzawa, Senior, Computer Science
- Peachyapa (Peach) Saengcharoentrakul, Senior, Informatics: Data Science, Philosophy
- Mentor
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- Yongdong Zhao, Pediatrics
- Session
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Poster Session 4
- Balcony
- Easel #61
- 4:00 PM to 5:30 PM
Juvenile idiopathic arthritis (JIA) is the most common rheumatic disease in children and frequently presents in knees, followed by ankles, wrists and elbows. JIA is typically evaluated by pediatric rheumatologists using joint exams. However, musculoskeletal ultrasound or MRI with contrast can be used for greater sensitivity but are more expensive and require extensive operator training. In contrast, infrared thermal imaging is a noninvasive tool that is quick, economical, and precise in detecting temperatures of different body parts. Thermal cameras are becoming increasingly accessible and can be used with smartphones, like the FLIR ONE Pro camera by Teledyne FLIR. Recent efforts with temperature after within limb calibration (TAWiC) algorithms have made use of thermal imaging and demonstrated promising results in detecting arthritis in knees and ankles. However, the current TAWiC algorithm implementation has limited scalability due to its dependency on trained technicians to identify key anatomical points. We leveraged existing computer vision libraries like OpenCV and human pose estimation models like OpenPose to automate the TAWiC algorithm. We designed a pipeline that first entails extracting thermal and visible images from a radiometric JPEG generated by a FLIR ONE Pro. The extracted images are subsequently co-registered. Key anatomical points are then labeled in the visible image using OpenPose and contours drawn around the regions of interest. The contours coupled with the labeled key points are used to segment and retrieve the temperatures of specific anatomical regions. We collected preliminary data that demonstrated the feasibility of this workflow. We anticipate that similar TAWiC measurements will be generated when using the automated approach to re-analyze participant thermal images. Automating this algorithm will increase the scalability of this approach and allows for extending this algorithm to other joints.
- Presenters
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- Molly Wren Stephenson, Senior, Biochemistry
- Damielle Hieber, Senior, Biochemistry McNair Scholar
- Eden Vanderlyn Mahina Anana, Senior, Chemistry
- Mentors
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- Ashleigh Theberge, Chemistry
- Sanitta Thongpang, Chemistry
- Session
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Poster Session 4
- Commons East
- Easel #35
- 4:00 PM to 5:30 PM
The rapid rise of bioanalytical testing has renewed discussions in improving the collection of bacteria through oral sampling. Current diagnostic tests for common respiratory illnesses such as strep throat are invasive and uncomfortable, especially for children. Undiagnosed, these treatable diseases can cause serious damage. The Theberge lab has created the CandyCollect, a saliva sampling device intended to be a child-friendly alternative to current sampling techniques for home and clinical settings. The CandyCollect utilizes candy in the design to appeal to children, a unique component that requires additional testing and standardization to be appropriately implemented. This study explores the intersectionality of safety, design, effectiveness, and ease of application by using candy to increase children's compliance and act as a built-in timer. Our goal is to modify the existing device with these objectives in mind. Several types of candy were made using different ingredients, flavors, and textures, and the interaction of these candies with oral bacteria and saliva was investigated. We engineered the device using rapid prototyping, computer-numerical-control (CNC) milling, and silicone mold development. These methods allow for the flexibility to modify the design of the candy and sampling device. We then designed a survey for a human subjects study for adults (>18 years) to receive useability feedback and adapt the device components. Our analysis of these results determines the variety of candy that is most suitable for large scale use. The findings of this study will offer an improved method for child diagnostics and encourage other industries to redesign traditional sampling procedures.
- Presenter
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- Tiara Schwarze-Taufiq, Senior, Neuroscience, Public Health-Global Health Mary Gates Scholar, Washington Research Foundation Fellow
- Mentor
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- Jessica Young, Pathology
- Session
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Poster Session 4
- Commons East
- Easel #27
- 4:00 PM to 5:30 PM
Alzheimer’s Disease (AD) is a neurodegenerative disease that is the most common cause of dementia. One hallmark of AD pathology is hyperphosphorylation of Tau protein. Tau is a neuronal-specific protein that stabilizes microtubules. Hyperphosphorylation of Tau leads to loss of its normal function and promotes aggregation into neurotoxic fibrillary tangles. While Tau aggregation is well-documented, the exact role of Tau loss-of-function in AD pathogenesis remains uncharacterized. The goal of our project is to determine the mechanism by which Tau loss-of-function contributes to AD pathogenesis. We hypothesize that Tau loss-of-function contributes to AD pathogenesis by activating the cellular stress response in neurons, characterized by DNA damage, stress granule formation, and immune activation. To test this hypothesis, we produced mixed cultures of neurons and astrocytes derived from human induced pluripotent stem cells. We generated three cell lines: one in which Tau expression was knocked out (Tau KO), another in which Tau expression was knocked down (shTau), and control lines. To determine whether genes implicated in the cellular stress response are upregulated in Tau KO neurons, we used RNAseq and real-time polymerase chain reactions (RT-PCR). Then, we used immunocytochemistry to detect protein markers of cellular stress in neural progenitor cells and neurons from all three lines. Preliminary results indicate upregulation of genes and proteins associated with neuroinflammation and stress granule formation. Regarding neuroinflammation, Tau-depleted neurons exhibit increased secretion of chemoattractant cytokines, and tau-depleted astrocytes demonstrate increased glial fibrillary acidic protein expression suggestive of pro-inflammatory cytokine induction. In terms of cellular stress, Tau-depleted neurons show increased levels of proteins involved in stress granule formation and cytoplasmic double-stranded RNA known to induce stress granules. By elucidating the role of Tau loss-of-function in AD pathogenesis, this research could inform therapeutic targets for AD.
- Presenters
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- Melinda Moehring, Senior, Industrial Engineering
- Jungmin (AJ) Ahn, Senior, Industrial Engineering
- Mentors
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- Zelda Zabinsky, Industrial Engineering
- Pariyakorn Maneekul, Industrial Engineering
- Chiwei Yan, Industrial Engineering
- Session
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Poster Session 4
- Commons East
- Easel #39
- 4:00 PM to 5:30 PM
Airline flight schedules face various kinds of stochastic disruptions, such as inclement weather, that cause flight delays. These delays then propagate and disrupt the regular operations of subsequent downstream flights. These propagated delays can be extremely costly to airlines, so it is beneficial to reduce disruptions to subsequent flights. To minimize these disruptions, we consider the stochastic nature of these disturbances when creating aircraft routes that reduce delay propagation and are manageable once disrupted. In this study, we develop and compare three stochastic optimization models to optimize aircraft routing: (i) robust optimization, (ii) chance-constrained programming, and (iii) stochastic programming. To solve these models, we modify an efficient approach for solving vehicle routing problems with time windows and capacity constraints known as the Vehicle Routing and Scheduling Algorithm (VeRSA) for these three models. VeRSA is the integration of a heuristic with an exact method to quickly find a feasible solution while also providing an optimality gap and a guaranteed optimal solution. A benefit of VeRSA is the ability to devise a flexible index that can accommodate different objectives for various forms of uncertainty. VeRSA can also modify the feasibility routine that accommodates the complex aircraft maintenance constraints, which is a challenge in the mathematical programming approach. Using various delay scenarios, we compare the performance of the solutions from our three stochastic optimization models and discuss insights regarding their performance differences. Preliminary results using the base model and a small example have been solved in Gurobi while future results using real data from airlines in VeRSA are pending.
- Presenter
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- Chandni Rajesh, Senior, Environmental Science & Resource Management (Landscape Ecology & Conservation) UW Honors Program
- Mentors
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- T.J. Clark, Biology, Quantitative Ecology & Resource Management, Wildlife Science
- Aaron Wirsing, Environmental & Forest Sciences
- Session
-
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Poster Session 4
- Balcony
- Easel #46
- 4:00 PM to 5:30 PM
Cyclic population tendencies, found in small mammals like voles, lemmings, and snowshoe hares, have fascinated ecologists for over a century. More recently, it has been suggested that large mammals like ungulates may have cyclic patterns as well. For example, Indigenous history and palaeoecological records show that caribou or reindeer (Rangifer tarandus) can have population cycles that last from 50-100 years. Though caribou are well-studied globally, few studies have examined the underlying conditions prompting these dynamics, and so little is known about what causes them. It is hypothesized that factors such as climate, vegetation growth, predation, density-dependence, and subsistence harvest are all influential. I aimed to identify which of these factors contribute to population cycling, and better understand how to manage caribou for subsistence and recreational harvest. To do so, I built a tri-trophic mathematical model based on ordinary differential equations representing wolf-caribou-vegetation dynamics under various parameter scenarios. Based on available data, I chose to focus on North American barren-ground caribou herds located in Alaska and Canada. I extracted parameter values from existing literature on caribou and moose to parameterize my tri-trophic model. I ran my model in R, manipulating parameter values to see which factors influenced cycle period and amplitude most significantly. The results from these model simulations can better inform future management strategies and policy implementation surrounding sustainable harvest. Caribou are immensely important to Indigenous communities for cultural and subsistence purposes. With a shift in global climate, sensitive biomes such as the tundra are increasingly at risk of experiencing lasting negative impacts which will severely impact wildlife and other biotic systems. Adaptive caribou management is crucial to ensure survival for this globally declining species.
- Presenter
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- Anna Elias-Warren, Senior, Public Health-Global Health
- Mentors
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- Helen Chu, Allergy and Infectious Diseases
- Caitlin Wolf, Allergy and Infectious Diseases
- Jennifer Logue, Allergy and Infectious Diseases
- Session
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Poster Session 4
- Commons West
- Easel #11
- 4:00 PM to 5:30 PM
Since late 2020, vaccination rates against SARS-CoV-2 have increased with 64% of the U.S. population fully vaccinated as of February 2022 [CDC, 2021]. Although vaccines are an effective method of protection, breakthrough cases have been occurring especially with variants of concern (VOC). Vaccination has remained protective against severe disease for multiple VOCs, including Delta and more recently Omicron. It is important to understand how different levels of vaccination, such as the number of doses received, impact symptom severity as additional VOCs continue to emerge. I utilized data collected from the Husky Coronavirus Testing research program, which provides testing to students, faculty, and staff at the University of Washington, to evaluate the relationship between severity of COVID-19 symptoms and number of doses received and type of vaccine received. Self-reported symptom severity data was collected from individuals who completed a follow-up questionnaire 7 days after testing positive for COVID-19. This analysis can help us to learn more about vaccination status and its impact on illness severity in those infected with the omicron variant. From this research I anticipate vaccinated individuals to report mild COVID-19 symptoms and those who are unvaccinated, or only slightly vaccinated to report more moderate or severe symptoms.
- Presenter
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- Britney Michelle Ellisor, Senior, Biochemistry
- Mentors
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- Joyce Yi-Frazier, Pediatrics, Seattle Children's Research Institute
- Samantha Scott, Psychology, University of Denver
- Maeve O'Donnell, Pediatrics
- Session
-
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Poster Session 4
- Balcony
- Easel #58
- 4:00 PM to 5:30 PM
Adolescents with type 1 diabetes (T1D) are at risk for poor physical and psychosocial outcomes. Diabetes-related family conflict has previously been associated with youths' glycemic control (HbA1c). However, less is known about how family conflict associates with other health outcomes. This project aimed to explore correlations between adolescent and parent reported family conflict with diabetes-distress, depressive symptoms, resilience, and health-related quality of life (HRQOL) for both adolescent and parent. Eligible patients were enrolled in a two-site randomized controlled psychosocial intervention study. Participants were ages 13-18 with T1D for over a year and elevated levels of diabetes distress. At baseline, patients and their parent completed measures of: diabetes-specific family conflict (DFCS), HRQOL (T1DAL), diabetes distress (PAID-T), depressive symptoms (PHQ-8), and resilience (CD-RISC). HbA1c was pulled from participants medical charts. Descriptive statistics were used to summarize demographic variables, and bivariate correlation analyses were used to investigate the association between DFCS and the other psychosocial variables. Adolescents (N= 131; 53.4% female, 6.1% identified as another gender, 78.6% White, 9.9% Black, 2.3% Asian, 3.1% American Indian/Alaskan Native, and 80.9% Non-Hispanic, average age 15.38  1.5) DFCS scores correlated with more diabetes-distress (r=0.386, p<0.001), depressive symptoms (r=0.334, p<0.001), and less HQOL (r= -0.303, p<0.001). Parents’ (N=131; 79.4% White, 9.2% Latino/Mexican 6.1% Black, 2.3% Asian, 0.8% other, 79.4% private insurance) DFCS scores correlated with higher youth A1C (r=0.280, p<0.001), higher parent diabetes distress (r= 0.479, p <0.001), and lower parent resilience (r= - 0.200, p = 0.022) and HQOL (r = -0.369, p < 0.001). Both parent and patient reports appear to be an important area of further investigation for determining correlates of poor physical and psychosocial wellbeing in this high-risk group. While further investigation is needed, screening for family conflict may be important in clinical procedure, as it may become a future target for intervention.
- Presenter
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- Anne Liu, Senior, Applied Mathematics
- Mentor
-
- Thomas Trogdon, Applied Mathematics
- Session
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Poster Session 4
- Balcony
- Easel #49
- 4:00 PM to 5:30 PM
Computing solutions to partial differential equations using the fast Fourier transform can lead to unwanted oscillatory behavior. Because of the periodic nature of the Fourier transform, waves that leave the interval on one side reappear on the other. However, the fast Fourier transform is a very efficient numerical tool, so it is important to find a way to damp these oscillations so that this transform can still be used. Our goal is to accurately model nonlinear partial differential equations on an infinite domain by considering a finite interval and implementing various damping techniques outside of the interval. We consider the Korteweg-de Vries equation with an initial condition that produces leftward traveling oscillations and a rightward traveling soliton. To damp the wrap-around oscillations, we have used the Strang-splitting method to solve the heat equation with a non-zero diffusion coefficient on the left side of the interval. To stop the soliton from wrapping around, we judiciously multiply the solution values by a decaying exponential on the right side of the interval. We have found that this damping process produces much more accurate solutions at larger times than the undamped solution when modeling solutions on an infinite interval. This method also applies to the nonlinear Schrodinger equation with some additional modifications.
- Presenter
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- Lina Park, Senior, Neuroscience Mary Gates Scholar, UW Honors Program
- Mentors
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- Jessica Young, Laboratory Medicine and Pathology
- Charles A Williams, Laboratory Medicine and Pathology
- Session
-
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Poster Session 4
- Commons East
- Easel #26
- 4:00 PM to 5:30 PM
- Presenter
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- Alicia Bea (Alicia) Feichtenbiner, Senior, Chemistry, Classical Studies, Neuroscience UW Honors Program
- Mentor
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- Amber Nolan, Laboratory Medicine and Pathology
- Session
-
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Poster Session 4
- Commons East
- Easel #25
- 4:00 PM to 5:30 PM
Astrocytes, in addition to neurons, are vital cells in the brain that contribute to maintaining function. Like neurons, astrocytes can also accrue abnormal deposits of proteins with aging and neurodegenerative disease. However, how these abnormal proteins in astrocytes contribute to cognitive decline has not been well-studied as opposed to neurons. Phosphorylated tau is one protein that can accumulate in astrocytes and is often referred to as tau astrogliopathy. Tau astrogliopathy frequently accompanies the pathology of chronic traumatic encephalopathy- a neurodegenerative pathology associated with repetitive head injury. Given this information, we hypothesized that tau astrogliopathy would also occur at a higher incidence and with increased levels of pathology in those with a history of a single traumatic brain injury (TBI), especially those associated with loss of consciousness (LOC). We evaluated and quantified tau astrogliopathy in brain sections from donors with TBI and LOC compared to age-, sex-, and cognitive-status matched controls, from the University of Washington neuropathology research core. Specifically, the density of thorny shaped astrocytes (TSA) and granular fuzzy astrocytes (GFA) in different tissue locations (white matter, grey matter, etc.) throughout different cortical and subcortical regions was quantified. Preliminary data showed a higher density of tau astrogliopathy in cortical sections but not subcortical regions in the TBI with LOC cohort compared to the control group. This supports our hypothesis that there is an association between TBI and tau astrogliopathy; further research is needed to understand the clinical implications of this finding.
- Presenter
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- Anna Finch, Senior, Oceanography, Biochemistry UW Honors Program
- Mentors
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- Anitra Ingalls, Oceanography
- Joshua Sacks, Oceanography, University Of Washington
- Laura Carlson, Oceanography
- Session
-
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Poster Session 4
- Balcony
- Easel #48
- 4:00 PM to 5:30 PM
Photosynthesis and organic matter production by photoautotrophs in the upper ocean are fueled by sunlight. In previous research, environmental metabolite concentrations in the sunlit ocean have been found to display significant 24-hour periodicity. Prochlorococcus is a marine cyanobacteria that is the smallest and most abundant photosynthetic organism on Earth and is a key primary producer in the ocean’s vast oligotrophic gyres. Past studies employing transcriptomics and flow cytometry-based approaches revealed that cell division, metabolism, and gene expression of Prochlorococcus are synchronized with the daily light-dark cycle, but the impacts of these diel changes on the Prochlorococcus metabolome remain poorly understood. Here we investigate how levels of particulate metabolites in Prochlorococcus vary over simulated light-dark cycles in a non-axenic culture. We grew Prochlorococcus MED4 and its associated consortium of heterotrophic bacteria over daily light-dark cycles in culture and sampled for particulate and dissolved metabolites every 6 hours for a total of 48 hours. We extracted metabolites using a modified Bligh and Dyer extraction and quantified metabolites using liquid chromatography paired with mass spectrometry. To detect diel patterns in metabolite concentrations, we used Rhythmicity Analysis Incorporating Nonparametric methods to identify significant changes in Prochlorococcus’ metabolome over the light-dark cycle. Sucrose, a disaccharide sugar, varied over the diel cycle and peaked at the end of the light cycle, highlighting the use of this compound for energy storage in Prochlorococcus. Glutamine, a metabolite associated with nitrogen assimilation, displayed diel variation and peaked at midnight, lagging the peak in sucrose by 6 hours. These results indicate diel partitioning of Prochlorococcus’ metabolic functions related to energy storage and nitrogen assimilation. This diel partitioning mirrors prior results observed in environmental metabolomes and transcriptomes.
- Presenter
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- Natasha Ciboulet, Junior, Pre-Sciences
- Mentors
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- Spencer Wallace, Astronomy
- Thomas Quinn, Astronomy
- Session
-
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Poster Session 4
- Balcony
- Easel #52
- 4:00 PM to 5:30 PM
This research project involves analyzing planetesimal accretion through the use of an N-body simulation. A terrestrial planet passes through many stages of growth including: dust grains, pebbles, planetesimals, embryos, to planets. This study focuses on the formation process between planetesimals and embryos. Current simulations demonstrating terrestrial formation use parameters similar to those of our own solar system. This investigation attempts to envision this process at a more “bunched” up scale, such as in the case of the Trappist-1 system. Our inner solar system, a radial distance from the Sun to Mars, is about 25 times larger than the entire Trappist-1 system, meaning that its planets were formed much closer to its star. Through the use of N-body simulations, we can begin to understand the unknown formation of this system as well as others with similar characteristics. These N-body simulations are processed through the University of Washington’s supercomputer Hyak, approximating the motion of the particles that represent the planetesimals and detect if any are in a collision course. Two short period simulations were run using a number of sophisticated collision models that differ in how the particles interact and formation efficiency. The previous collision model used parameters calculated in 2005. The second newer model uses parameters from 2021, which I have programmed into the model's initial condition files. The study’s purpose is to compare the outputs of the collision models through a variety of quantitative and qualitative factors, concentrating on particle growth and runaway growth. More specifically, the data is measured through plots that depict the semi major axis vs. eccentricity, max mass over mean mass as a function of time, and the ratio of collisions that result in a merger. This will later lead to the investigation of which models can accurately replicate terrestrial formations such as the Trappist-1 system.
- Presenter
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- Elsa Frances McMahon, Senior, Microbiology
- Mentors
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- David Fredricks, Medicine, Fred Hutchinson Cancer Research Center
- Tina Fiedler, Microbiology, Fred Hutch
- Session
-
-
Poster Session 4
- Balcony
- Easel #51
- 4:00 PM to 5:30 PM
Following allogenic hematopoietic cell transplantation (allo-HCT), patients are at risk of developing graft-versus-host disease (GvHD) in which donor T-cells attack the recipient’s healthy tissues, including in the gut leading to inflammation, diarrhea, and sometimes death. Low gut bacterial diversity in the host has been associated with GvHD severity. Anaerobic bacteria in the Lachnospiraceae family, specifically Blautia species, have been associated with reduced GvHD related mortality. Using family and genus specific qPCR assays, we quantified the bacterial concentrations of Lachnospiraceae and Blautia species pre- and post-transplant in patients. We extracted DNA from stool samples of 306 HCT patients. Samples were collected pre-transplant and post-transplant at day 30 and day 60. GvHD gut stage was graded 0-1 (none-mild), 2-4 (moderate-severe). Quantitative PCR assays were designed using primers targeting specific regions of the bacterial 16S rRNA gene. Amplicon specificity was confirmed using post-run melt curve analysis. There was a significantly higher (p=0.016) concentration of Lachnospiraceae in patients presenting none-mild GvHD (6.78x107 copies per swab) versus moderate-severe gut GvHD (1.84x107) at day 60. A similar association for Lachnospiraceae was trending (p=0.088) at day 30. In addition, there was significantly higher concentrations of Blautia species in patients with none-mild (3.33x106 at d30, 1.05x107 at d60) versus moderate-severe gut GvHD (1.35x105 at d30, 1.41x106 at d60) at both day 30 (p=0.026) and day 60 (p=0.014) post allo-HCT. There were lower concentrations of both Lachnospiraceae (1.89x107) and Blautia (2.30x106), regardless of GvHD stage, at day 30 versus pre-transplant (p<0.0001) or day 60 (p<0.0001), likely reflecting the impact of antibiotic treatment during neutropenia immediately following allo-HCT. Higher concentrations of Lachnospiraceae and Blautia in the gut following transplant were associated with less severe gut GvHD; these bacteria could be markers or drivers of less severe GvHD.
- Presenter
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- Andrea Chang, Senior, Biology (General)
- Mentors
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- Maitreya Dunham, Genome Sciences
- Chiann-Ling Yeh, Genome Sciences
- Session
-
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Poster Session 4
- Commons West
- Easel #21
- 4:00 PM to 5:30 PM
The genetic makeup of beer-brewing yeast plays an essential role in determining the flavor profile during production of beer. With functional copies of genes on the MAL locus, beer yeasts, namely Saccharomyces cerevisiae, can utilize maltose and maltotriose as their carbon source. The three genes in this locus are responsible for the regulation (MALx3), transport across membrane (MALx1), and breakdown of sugars (MALx2) in brewers’ wort. If a strain lacks a functional copy of any of these three genes, it cannot digest these alternative sugars. Alternatively, some strains have more than one MAL locus, but which loci are functional, remains unknown. Apart from previous studies that have investigated a handful of MAL alleles, the function of the genes in these duplicated loci (or paralogs) cannot be determined based on sequences alone. To address this problem, I experimentally tested the function of alleles from 1,011 natural isolates. I focused on MALx3 because the reference strain lacks a functional MALx3 allele, preventing its growth in maltose. Therefore, introduction of any functional MALx3 alleles should permit growth in maltose. To test this, I cloned ~250 MALx3 alleles from three different loci (MAL1, MAL3, MAL7) and transformed the reference strain to generate three yeast libraries. The library with the MALx3 gene of the MAL3 locus, or MAL33, successfully grew to saturation after ~2.5 days of incubation in 2% maltose, showing this approach can be used to determine the function of MAL33 alleles. Looking forward, I will use DNA barcodes to track the growth of alleles in maltose to pinpoint which are functional. With the MAL loci serving as a great candidate for understanding paralog differences, by identifying the functional paralogs, we can better understand the evolutionary history of MAL genes and what role these loci play in the brewery and across all natural isolates.
- Presenter
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- Juliana Moreno, Junior, Pre-Sciences
- Mentor
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- Sara Daneshjoo, Comparative Medicine
- Session
-
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Poster Session 4
- Commons West
- Easel #17
- 4:00 PM to 5:30 PM
The concept of mild cognitive impairment (MCI) has evolved over the past several decades to represent a state of cognitive function between that seen in normal aging and dementia. Clinically, it is challenging to fully characterize and propose strategies for treatment partly becuase little is known about the extent of underlying pathology and why some individuals are resistant, and some are susceptible. This study describes a model of naturally occurring MCI in middle-aged mice that will help address neuropathology and resistance questions. C57BL/6 mice, 20 months of age, were tested for cognition using a spatial navigation learning task, a box maze, that identified a fast-learning group (MCI resistant) and a slow-learning group (MCI susceptible). Regarding strength and activity performance, both groups performed equally well. Brains were collected and either flash frozen and stored at -80°C, or placed in formalin for sectioning and immunohistochemistry (IHC). Preliminary data suggest a number of messaging pathway differences in the brains of MCI resistant and MCI susceptible mice. One such pathway appears to involve inflammatory cytokines providing the rationale to test for expression of inflammatory regulators MCP1 and TNF-ðœ¶, using IHC and digital imaging. I am currently staining the brains using these IHC assays and then running the images through a digital imaging program known as Qupath. The expectation is that MCI resistant mice will display low levels of MCP-1 and TNF-𜶠expression while MCI susceptible mice will show high levels of MCP-1 and TNF-𜶠expression in the brain. Additional data will help establish naturally occurring cognitive impairment in middle aged mice as a useful model for studying neuropathology and therapeutic approaches related to MCI in people with increasing age.
- Presenter
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- Jamison Charles (Jamey) Siebart, Senior, Bioen: Nanoscience & Molecular Engr Levinson Emerging Scholar, Mary Gates Scholar, UW Honors Program
- Mentors
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- Andre Berndt, Bioengineering
- Michael Rappleye, Bioengineering
- Session
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Poster Session 4
- Commons West
- Easel #3
- 4:00 PM to 5:30 PM
The discovery of fluorescent proteins led to the development of various protein-based biosensors that are vital in the goal to decipher the complexity of neural networks. Genetically encoded fluorescent indicators (GEFIs) are protein-based sensors with cell type specificity that increase in fluorescence upon ligand binding and allow for passive monitoring of neuronal signals. However, the development of such sensors is limited by the slow throughput of traditional protein engineering which has long engineering cycles of new plasmid variants. My project tackles this problem through the development of an optogenetic microwell array screening system (Opto-MASS) that effectively generates and screens unbiased genetic libraries of GEFIs in mammalian cells. The platform identifies high performing sensor variants on a custom microarray and effectively isolates and recovers their genetic material. This new platform was used to develop a sensor for the μ-opioid receptor (MOR), which is a G-protein coupled receptor and is responsible for the pain relieving effects of opioids and addiction. The platform has developed a MOR sensor that surpasses the standard in the literature in response to the synthetic opioid peptide agonist [d-Ala2, N-Me-Phe4, Gly-ol5]enkephalin (DAMGO). I used this platform to engineer a new class of MOR sensors that are ligand-specific to endogenous opioids versus exogenous opioids and optimized the sensors for maximum spatial and temporal precision. The development of a MOR sensor through this iterative process allows researchers to further investigate the molecular mechanisms underlying the pathology of addiction and provides a novel platform for protein engineers to more efficiently develop a wide variety of biosensors.
Visual Arts & Design Presentation 4
2:00 PM to 3:30 PM
- Presenters
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- David Melgoza, Junior, Business Administration
- Fadumo Roble, Senior, Political Science
- Melissa Guadarrama, Senior, International Studies: Latin America, Law, Societies, & Justice
- Aliya Adan, Freshman, Pre-Sciences McNair Scholar
- Jacquelyn Jimenez Romero, Sophomore, Communication (Journalism)
- Mentor
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- José Antonio Lucero, Comparative History of Ideas, Jackson School of International Studies
- Session
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Visual Arts & Design Showcase
- Odegaard Undergraduate Library
- 2:00 PM to 3:30 PM
The United States immigration system was created upon the ideas of white supremacy. There have been many instances of xenophobia and racism throughout history used as a ploy to justify anti-immigration policies. The US-Mexico border, Latin America, and the Caribbean play a significant role in the conversations around immigration due to the intersection of various racial identities; white supremacy plays a part in justifying discrimination and violence towards people of color. This research asks how racial differences influence US immigration incarceration and deportation. This is conducted by comparing the historical and contemporary contexts of border patrol and immigration policy to analyze the modern-day landscape of immigration and how it has or has not transformed over time. This was achieved through a literature review of historical sources around immigration policy and secondary research on the history of the US immigration system. Desired and achieved recruitment consisted of two academic professors who had extensive research and knowledge on the historical and contemporary framework of the US immigration system as well as two US community organizations focused on advocating for Black and Indigenous immigrant rights. They were identified through their research and activism, centered around the intersections of race and immigration. Drawing upon interviews and secondary research sources, our research group presents an in-depth series of podcast episodes, which feature candid discussions with professors and organizations heavily involved with the immigrant community. These interviews allow the listener to gain a deep understanding of how racial differences impact and shape immigrant incarceration and deportation. Overall, our research group hopes to demonstrate how immigration policy has disproportionate impacts depending on a person's race, leading to varying experiences and statistical differences in incarceration and detention rates. ​​Through this podcast, our research group hopes to inspire conversation around the intersection between race and today's immigration policy.
Poster Presentation 4
4:00 PM to 5:30 PM
- Presenters
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- Hoang Le, Senior, Psychology
- Ailee Vu, Senior, Psychology
- Niya Park, Senior, Informatics: Biomedical and Health Informatics, Psychology
- Mentors
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- Rashed AlRasheed, Psychology
- Shannon Dorsey, Psychology
- Session
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Poster Session 4
- MGH 241
- Easel #70
- 4:00 PM to 5:30 PM
Ever since the COVID-19 outbreak, hate crimes and violence towards minoritized groups such as Black and Asian people have surged. Consequently, Black, Indigenous, and People of Color (BIPOC) continue to face several mental health challenges as well as inaccessibility to mental health care. The literature suggests that culturally responsive psychotherapy can improve BIPOC clients’ clinical outcomes. Thus, this study examines the actions community mental health (CMH) clinicians have taken to better serve BIPOC clients. Data came from a Washington State-funded cognitive-behavioral therapy training initiative (CBT+) in 2020 - 2021. CMH clinicians and supervisors attended a virtual CBT training followed by six months of expert consultation and completed pre-training and post-consultation surveys. In the surveys, CMH clinicians reported on the frequency of performing certain actions to better serve their BIPOC clients (e.g., discuss issues of race or racism with BIPOC clients) using a 5-point Likert Scale ranging from 0 (Never) to 5 (Always). We conducted descriptive statistics to summarize clinicians’ responses. Our analyses showed that clinicians most frequently incorporated the following actions when working with BIPOC clients: “consider the client's ethnicity” and “the use of bilingual staff or interpreters for those whose English is not their first language.” On the other hand, clinicians appeared to rarely collaborate with natural community healers, spiritual healers, clergy, etc., as part of their service delivery. Our findings suggest that CMH clinicians have taken several actions to thoughtfully consider and incorporate BIPOC clients’ backgrounds and context into treatment delivery. However, certain CMH clinicians' actions to better serve BIPOC clients occur more frequently than others. Future research should better understand which culturally responsive actions are most helpful in helping BIPOC clients’ experiences in CMH.
- Presenter
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- Gillian D. (Gillian) Pereira, Senior, Materials Science & Engineering, Biochemistry UW Honors Program
- Mentors
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- Miqin Zhang, Materials Science & Engineering
- Yang Zhou, Materials Science & Engineering
- Session
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Poster Session 4
- Commons East
- Easel #40
- 4:00 PM to 5:30 PM
Creating novel anti-cancer drugs aimed at targeted glioblastoma multiform (GBM), a type of brain cancer, is slow, extremely expensive, and remains a persistent challenge within the medical field. To address this challenge, our team’s research project is aimed at creating scaffolds from chitosan-hyaluronic acid (CHA) to mimic the brain microenvironment and serve as a platform for high throughput screening (HTS) of cancer drugs. 3D culture systems can promote more cell-cell and cell-matrix interactions, which can closely mimic the in vivo extracellular matrix environment. Studies have shown that the drug resistance of 3D-cultured cancer cells can better reflect the in vivo situation, and thus can potentially improve the success rate in drug screening processes. CHA scaffolds are especially beneficial for culturing GBM cells, as hyaluronic acid (HA) is a major component in brain tissues. To generate the scaffolds, we used different freezing rates and temperatures to create freeze-dried 8 wt% CHA scaffolds with pore sizes of 60, 120 and 180 μm. We characterized the compressive modulus of the scaffolds using the Instron test machine, and the porosity using liquid replacement methods. Cell studies with 3 different cell lines are currently being conducted on these scaffolds, after which an AlamarBlue assay will be used to determine the optimal pore size for each cell line in terms of their growth and drug resistance. The results of this can prove that our CHA scaffolds have good flexibility in response to different cancer cell line 3D cultures and have good potential to be an HTS platform.
- Presenter
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- Natalie Paige Hoffman, Senior, Neuroscience UW Honors Program
- Mentors
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- Mitra Heshmati, Anesthesiology & Pain Medicine, Laboratory Medicine
- Sam Golden, Biological Structure
- Session
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Poster Session 4
- Commons West
- Easel #15
- 4:00 PM to 5:30 PM
Neuroligins (NLGNs) are a family of postsynaptic cell adhesion proteins that are essential to the formation and proper functioning of synapses and play a critical role in maintaining neural excitation/ inhibition balance. Neuroligin mutations are linked to several neuropsychiatric disorders like autism, although their role in maladaptive social behavior remains unclear. Inappropriate aggression and agitation are often comorbid with neuropsychiatric disease and understanding the neural pathways underlying aggressive behavior may help to identify potential therapeutic targets. Neuroligin-2 (NLGN-2) specifically supports inhibitory synapse function and plays a key role in regulating social stress behaviors. Here, we examine the role of NLGN-2 in mediating adaptive and maladaptive aggressive behavior in adult male outbred CD-1 mice. In Experiment 1, we use immunohistochemistry to localize and quantify NLGN-2 in Fos-positive cells in nucleus accumbens of mice following resident-intruder reactive aggression. In Experiment 2, we train mice in an operant aggression self-administration procedure and examine changes in NLGN-2 in nucleus accumbens Fos-positive neurons following appetitive, or rewarding, aggression. In Experiment 3, we selectively knockdown NLGN-2 in nucleus accumbens in a neural circuit-specific manner to determine the functional effects of NLGN-2 manipulation on adaptive and maladaptive aggressive behavior. Together, these data demonstrate an important role for nucleus accumbens NLGN-2 in mediating the spectrum of aggressive behavior.
- Presenter
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- Anika Ghelani, Junior, Bioengineering
- Mentors
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- Nathan Sniadecki, Mechanical Engineering
- Ruby Padgett, Laboratory Medicine and Pathology, Mechanical Engineering, Institute for Stem Cell and Regenerative Medicine
- Session
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Poster Session 4
- Commons East
- Easel #28
- 4:00 PM to 5:30 PM
Melusin, a chaperone protein expressed in cardiac tissue, is known to induce a protective hypertrophic response in response to chronic mechanical stress. This protective hypertrophic response prevents the progression of cardiomyopathy into heart failure. In previous work done in wild-type (WT) and melusin knockout (melKO) mice, the absence of melusin was correlated with a hypertrophic response indicative of heart failure. I plan to further investigate the biomechanical role of melusin in humans using human engineered heart tissues (EHTs) created from human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) that lack melusin and their isogenic controls. EHTs are more representative of the human heart, making them an ideal model for studying the role of melusin in humans. I hypothesize that WT EHTs subjected to different mechanical stress conditions, i.e., high afterload, will outperform the melKO EHTs. In order to measure this, I increased the stiffness of the EHT posts and measured contractile force. I have been successful in differentiating high purity WT cardiomyocytes from iPSCs, essential for creating healthy EHTs. I also differentiated the melKO iPSCs and cast both WT and melKO tissues. The EHTs were planted on a bed of silicone EHT posts that can then be stiffened to induce mechanical stress on the cells. I compared the contractile force between the WT and melKO tissues. Improving our understanding of the role of melusin in humans can lead to further research into therapies and treatments for heart failure.
- Presenter
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- William Diercks, Junior, Psychology
- Mentor
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- Brittney Hultgren, Psychiatry & Behavioral Sciences
- Session
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Poster Session 4
- MGH 241
- Easel #68
- 4:00 PM to 5:30 PM
Research in recent decades has highlighted the influence of descriptive and injunctive norms on young adult behavior in relation to alcohol and cannabis use. Simultaneous alcohol and cannabis use is when these two substances are used a way that their effects overlap. Rates of simultaneous alcohol and cannabis use are higher among young adults and use is associated with more negative outcomes compared to alcohol or cannabis alone. The relationship between norms and simultaneous use has been less examined, especially among higher-risk young adults (e.g., driving under the influence). Additionally, it is not fully understood why norms influence substance use behaviors for some individuals and not others. Past research has linked factors of impulsivity with higher rates of substance use, but how impulsivity may impact the relationship between norms and simultaneous use is not known. For this research I used data from a larger parent study that sampled high-risk young adults who reported both simultaneous alcohol and cannabis use and riding or driving under the influence in the past (6) months. I used moderated regression analyses to assess impulsivity as a moderator of descriptive and injunctive norms on substance use. I hypothesized that for young adults high in impulsivity the association between norms and substance use would be dampened. These findings may suggest interventions that utilize norms (e.g., normative feedback interventions) may be less effective for individuals who are higher on impulsivity factors and that other intervention approaches should be applied for these young adults.
- Presenter
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- Ria Kaeberlein, Senior, Computer Science (Data Science) Mary Gates Scholar
- Mentors
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- Alexander Mendenhall, Laboratory Medicine and Pathology
- Benjamin Blue, Laboratory Medicine and Pathology
- Session
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Poster Session 4
- Commons East
- Easel #24
- 4:00 PM to 5:30 PM
Biological aging is the greatest risk factor for most major causes of mortality. Our lab operates under the hypothesis that slowing the rate of aging will also lower the risk of associated diseases. Unfortunately, biological aging research is often limited by the need for labor-intensive manual scoring of lifespan experiments. To solve this problem, we have created a pipeline using machine learning and robotics for the automated processing of lifespan experiments in Caenorhabditis elegans, a type of roundworm often used in biomedical research. Plates of C. elegans are first placed into a “WormBot” image capture robot, which takes images of the plates throughout the day. These photos are processed using YOLO, an object detection system that creates bounding boxes used to track general worm motion. I have implemented a semantic segmentation network that uses these bounding boxes to determine the general shape of the worm. This lets us gather morphological and behavioral data such as length, width, and position. This information is used to infer when the worm stops moving and can be called dead. The time of death this provides shows whether a treatment was successful in extending life. The morphological data can also be used to estimate whether or not the worm was healthier as it aged. This analysis lets us understand how effective various drugs, such as metformin, are at modulating the biological aging process and lessens the time required to run large numbers of trials. Our framework increases the rate at which experiments can be performed and also creates predictive models that provide suggestive data on the effectiveness of an intervention before the end of life. . By automating lifespan scoring, we accelerate the discovery rate of potential interventions that may eventually work in humans.
- Presenter
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- Zipei Wang, Senior, Education, Communities and Organizations, Community, Environment, & Planning Mary Gates Scholar
- Mentor
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- José Antonio Lucero, Comparative History of Ideas, Jackson School of International Studies
- Session
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Poster Session 4
- Commons West
- Easel #2
- 4:00 PM to 5:30 PM
China’s rapid economic growth and urbanization in the recent two decades marked one of the most incredible speeds since human civilization, but the deeper social and environmental issues keep being exposed as relentless urban sprawl sweeps across the country. In 2012, under the nationwide “land-creation” movement, Yan’an, a major city in central China with a population of 2 million situated on the Loess Plateau, started implementing its 10-year plan to bulldoze mountains and build a “New District” on the hilltops to accommodate the exploding population. Despite mainstream narratives that feature it as a pioneer work of urbanization, I argue that the scarred land and the exploitative system in the “New District” cannot support the Plateau residents culturally and psychologically. This research draws on various theories and studies on anthropology, sociology, and urban planning to analyze the social, cultural, symbolic, and psychological impacts of the Yan’an “New District” project. The novel perspective proposed by this paper reconsiders urbanization as an exploitive and deceptive process and reexamines the future of rural-to-urban migration and urban growth.
- Presenter
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- Anushka Manish Ladha, Senior, Biology (Molecular, Cellular & Developmental), Microbiology Mary Gates Scholar
- Mentor
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- Michael Lagunoff, Microbiology
- Session
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Poster Session 4
- Commons East
- Easel #32
- 4:00 PM to 5:30 PM
Kaposi’s sarcoma-associated herpesvirus (KSHV) is a γ-herpesvirus that is the etiological agent of Kaposi’s sarcoma (KS), a cancer of endothelial cell origin. Like other herpesviruses, KSHV has distinct latent and lytic replication cycles – during latency there is limited viral gene expression and no KSHV virions are produced, while in the lytic life cycle all viral genes are expressed and new virions are assembled. Both lytic and latent genes are implicated in KSHV’s oncogenic properties. During infection, endothelial cells from both blood and lymphatic vessels undergo changes in signaling pathways and morphology. However, differences in the expression of lytic and latent genes have been described for the different sources of endothelium. We have previously observed that blood endothelial cells (BECs) grown in culture are less susceptible to infection as compared to lymphatic endothelial cells (LECs). Other labs have reported higher levels of lytic gene expression in LECs. I aim to determine if there are differential levels of KSHV lytic gene expression in the BEC and LEC lines in our lab. To determine the levels of lytic replication in BECs and LECs, I isolated RNA at different time points post infection and use RT-qPCR to determine the relative levels of viral lytic genes. I tested different infection rates to determine the role of infection rates on levels of lytic replication. I am also testing different cellular growth conditions, including cell medias to determine if the levels of lytic replication depend on cell proliferation levels. The goal is to determine differences seen in the level of lytic replication in different endothelial cell types in different labs. Understanding the conditions for higher lytic replication of KSHV in endothelial cells could help understand KSHV tumorigenesis as lytic replication is a key factor in the way KSHV causes cancer.
- Presenter
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- William Valeriy Dudarov, Senior, Pre-Sciences
- Mentors
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- Ben Brubaker, Mathematics
- Andrew Hardt, Mathematics
- Session
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Poster Session 4
- Balcony
- Easel #50
- 4:00 PM to 5:30 PM
When trying to develop the combinatorics of the p-parts of a multiple Dirichlet series given a group of functional equations isomorphic to the Weyl group of a type A root system, one runs into two natural combinatorial defintions of these p-parts in terms of Gelfand-Tsetlin patterns. The fact that these two natural definitions are equivalent is proved in Brubaker, Bump, and Friedberg's Weyl Group Multiple Dirichlet Series: Type A Combinatorial Theory. Their proof is not bijective. Further developing the combinatorics of these generalizations of the Riemann zeta function and other Dirichlet series, and finding a bijective proof of the result of Brubaker-Bump-Friedberg, remains an active area of research. I worked with a large group of undergraduate mathematicians, mentored by Ben Brubaker himself as part of the online collaborative Polymath Jr. Program, and we introduced new combinatorial objects, namely a new kind of colored lattice model, with which we can explicitly conjecture the existence of such a weight-preserving bijection for result of Brubaker-Bump-Friedberg in the most general setting, with p-parts corresponding to certain metaplectic Whittaker functions.
- Presenter
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- Brandon Lou, Senior, Materials Science & Engineering
- Mentors
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- Eleftheria Roumeli, Materials Science & Engineering
- Meng-Yen Lin, Materials Science & Engineering
- Andrew Jimenez, Materials Science & Engineering
- Paul Grandgeorge, Materials Science & Engineering
- Session
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Poster Session 4
- Commons East
- Easel #41
- 4:00 PM to 5:30 PM
Cement is a large contributor to carbon dioxide (CO2) emissions, and there is ongoing research to reduce this impact. The negative impact of carbon dioxide emissions on our atmosphere is a growing concern, so finding avenues to reduce such pollution is constantly sought after. Namely, studies have been conducted to explore the inclusion of natural fibers into the cement matrix, both cellulose-based and pure cellulose. For this reason, sustainable cement composites with mechanical performance comparable to ordinary cement are of interest. Cellulose has been proven to enhance mechanical compressive properties under certain processing conditions. Additionally, concrete is limited in applications due to its inherently weak tensile/flexural properties; to combat this, fiber reinforcements (often steel) are incorporated. Here, we compare the effects of different types of cellulose fibers as fillers in cement, specifically the effects in density, viscosity, and compressive strength. We used cellulose microfibers as well as nanofibers, with substantially different degrees of crystallinity and aspect ratios. Overall, the mechanical performance of mixtures produced with varying amounts of cellulose micro- and nan-fibers as well as varying water content were studied. We correlated the changes in viscosity, micromorphology, and compressive strength to rationalize the effects. Utilizing readily available natural fibers in the cement matrix will enhance the tensile properties of concrete structures while also reducing the harmful carbon dioxide emissions due to cement production.
- Presenter
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- Sylvia Sun, Senior, Psychology UW Honors Program
- Mentor
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- Corey Fagan, Psychology
- Session
-
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Poster Session 4
- MGH 241
- Easel #73
- 4:00 PM to 5:30 PM
Cultural stigmatization, financial burden, and low mental health literacy are reasons why Chinese people with mental health issues tend not to seek help from psychotherapists or psychological counselors. I hypothesized that Measurement-based Care (MBC) might provide a possible solution to some of the problems mentioned above by introducing a data-driven approach to mental health treatment. By representing mental health suffering in a quantitative and objective way, I thought this might legitimize mental health treatment, especially by showing the effectiveness of psychological counseling on symptoms. Additionally, I hypothesized that the combination of MBC and psychotherapy might impact Chinese people’s attitudes toward psychological counseling services in China. I recruited two hundred participants, ages 18-65, through an online Chinese survey platform called Wenjuanxing (wjx.cn) from all regions in mainland China. I collected survey responses to questions measuring attitude changes toward psychological counseling before and after learning about MBC. After conducting preliminary analyses, the results indicate that participants were significantly more likely to receive help from mental health counselors providing psychosocial interventions after learning about MBC compared to their attitudes before learning about MBC. This result means that MBC has the potential to facilitate positive attitudes toward psychological counseling in China, helping more Chinese people to accept mental health counseling when they need mental health support. This survey study also built a foundation for future researchers to explore this area further.
- Presenters
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- Xiyan (Angel) Li, Senior, Neuroscience, Psychology
- Madison (Madi) Bruner, Senior, Psychology
- Yongyan Yue, Senior, Psychology, Chemistry
- Mentors
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- Rebecca Esquenazi, Psychology
- Kimberly Meier, Psychology
- Session
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Poster Session 4
- MGH 241
- Easel #72
- 4:00 PM to 5:30 PM
Twelve million US citizens are currently suffering from visual impairment, many of them with late-stage blindness, which is accompanied by a drop in visual acuity, and the inability to recognize faces (CDC, 2022). Currently, few electronic sight restoration devices (SRDs) exist as treatment options for late-stage impairment that are precise in targeting retinal cells. Current SRDs cannot selectively stimulate on and off-center retinal cells – instead, all cells are stimulated regardless of their biologically natural firing pattern. Our research aims to examine whether neural plasticity can aid in overcoming this distortion in sighted individuals, using dichoptic presentation of stimuli that roughly mimics this simultaneous stimulation of on- and off- cells. Specifically, we convolved Fourier filters (F, and it’s contrast reverse complement F′) with images that are contrasted reversed complements of one another (I and I′) to induce a similar coding distortion caused by SRDs. We hypothesized that, through perceptual learning, sighted participants who received training with these distorted stimuli would be able to adapt to these distorted on-and-off cell responses. To test our hypotheses, participants were assigned to one of two groups. While both groups performed an object discrimination task with the distorted visual input, the experimental group did 25 hours of video game (VG) training, while the control group (CG) completed 5 hours of the object discrimination task. Participants in the VG group played a game that is an adaptation of Fruit Ninja, and tested in the discrimination task every 5 hours of video game play. Preliminary results indicate that individuals assigned to the VG group displayed superior performance in the object discrimination task, compared to the control group. Our results indicate that individuals with SRDs may have the potential to learn to decode unnatural visual cell population responses, which could improve their visual perceptions and enhance quality of life.
- Presenter
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- Frank Zhou, Senior, Psychology UW Honors Program
- Mentors
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- Frank Zhou, Psychology
- Kara Dastrup, Psychology
- Session
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Poster Session 4
- MGH 241
- Easel #74
- 4:00 PM to 5:30 PM
Measurement based care (MBC) is an evidence-based approach to psychological care that has been gaining momentum in the field. MBC emphasizes the use of frequent, repeated administration of measures and the consequently collected data in order to inform the course of treatment. This contrasts with traditional care, which relies more heavily upon clinical judgment and only sparse use of measurements. MBC has been shown to provide significant improvements for patients, largely due to increased patient feedback which results in quicker responses in changing treatment plans accordingly. Ecological momentary assessment (EMA) is a data collection strategy where researchers repeatedly remotely administer surveys that ask about participants’ current real-time states, and can provide additional clinical utility to MBC treatment through more contemporaneous data which is less subject to the errors of retrospective recall. Despite EMA’s ability to gather more ecologically valid data, there is a lack of research on how to optimize EMA to reduce concerns of response burden and adherence. This research aims to help clarify this knowledge area by examining how timing and frequency of measures affects participants’ adherence to an EMA procedure. We recruited 215 participants from the University of Washington’s Psychology Subject Pool, and randomly assigned each participant to one of two groups—each group was tasked with answering the same short survey, a modified 5-item version of the Subjective Happiness Scale (SHS), either three or seven times a day, both over a period of three weeks. We predicted that there would not be a significant difference in adherence rates between the two different sampling frequencies, and that surveys taken earlier in the day would be completed less frequently than those in the evening. Understanding participants’ responses to EMA is critical not only for optimizing future psychological research, but also for improving the use of measures in clinical care.