Poster Session 1
11:00 AM to 1:00 PM
- Presenter
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- Gabino Abarca, Senior, Public Health-Global Health McNair Scholar
- Mentor
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- June Spector, Environmental & Occupational Health Sciences
- Session
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- MGH 258
- Easel #189
- 11:00 AM to 1:00 PM
Heat exposure is associated with several potential adverse heat health effects, including heat-related illness and kidney injury, for example in outdoor workers who labor in the heat. In order to best study and prevent these heat effects, accurate assessment of personal ambient heat exposure is needed. An iButton® is a small coin-shaped data-logging thermometer that can measure and log ambient temperature and humidity. The iButton® has been adapted for use in environmental human health research as an easy to use and affordable data logger for personal ambient temperature measurements. The degree to which personal iButton® measurements are influenced by heat generated by the human body, for example during physical exertion, or solar radiation (iButtons® are contained in stainless steel cases), has not been systematically described. The goal of this study is to quantify the radiated body heat from subjects exercising in both direct sunlight and shaded settings. We recruited a sample of 15 adults, who participated in sessions that were roughly two hours long, with half of the time in a shaded area followed by the same activities in direct sun. Ambient temperature was recorded using iButtons® attached to participants as well as two, five, and ten feet away. Data collected will be analyzed using R 3.4.2 data analysis software. Preliminary results suggest that monitors attached to the participant capture the release of some body heat but that this dissipates by two feet away from the participant. Preliminary results also suggest that, while monitors positioned facing the sun capture some of the effects of solar radiation, monitors in the shade or facing away from the sun do not. This information is expected to contribute to the interpretation of personal ambient temperature measurements used in future studies that examine the relationship between heat exposure and health effects.
- Presenter
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- Hafsa Abdinasir Abdinur, Sophomore, Pre-Health Sciences
- Mentors
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- John Neumaier, Pharmacology, Psychiatry & Behavioral Sciences
- Atom Lesiak, Psychiatry & Behavioral Sciences
- Session
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- Balcony
- Easel #89
- 11:00 AM to 1:00 PM
DREADD receptors (Designer Receptor Exclusively Activated by Designer Drugs) are engineered G-protein receptors which are exclusively activated by the inert-molecule CNO (clozapine-N-oxide) and to a lesser degree clozapine. DREADD receptors are often used, to identify the circuitry and cellular signals that specify behavior, perceptions, emotions, motivation, and motor functions in species ranging from flies to nonhuman primates. Heterologous overexpression of non-native genes in biological systems, is often confounded by varying degrees of overexpression and result in non-specific effects. Thus, our purpose is to determine effects on cell signaling pathways following varying levels of DREADD receptor expression. Our hypothesis is that, increased levels of DREADD receptor expression increase non-canonical cellular signaling pathway activation. We used human embryonic kidney cells (HEK cells), as our model system, then expressed various levels of DREADD receptors using Lipofectamine transfection and DNA-plasmids expressing Gs- and Gi-coupled DREADD receptors (Canonically, Gs-increases cAMP and Gi-decreases cAMP). After transfection, we treated transfected cells with 1µM of CNO or VEH (a control) for 5-30min and then lysed the cells with RIPA Buffer, and prepared samples for western blotting to detect activation of proteins of interest in the GPCR non-canonical signaling pathways (example: kinases and transcription factors). We used anti-HA antibodies to ensure dosage of receptor expression, and used a panel of antibodies to detect activated proteins in well-established non-canonical GPCR signaling pathways. Western blot results were measured using Odyssey scanner and the Image studio software suite. We expect to see an increase in non-canonical signaling with increased expression of both Gi- and Gs- coupled, specifically in the MEK/ERK and CREB signaling pathways. In summary, our findings will highlight additional considerations regarding the level of receptor expression when using DREADD receptors in vitro and in vivo experiments, and specifically measure the off-target “non-canonical” signaling pathways induced by DREADD receptor overexpression.
- Presenters
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- Rafael Villanueva Achacoso, Senior, Nursing UW Honors Program
- Amanda Mai Vo, Fifth Year, Nursing UW Honors Program
- Sandra Jean Berry, Fifth Year, Nursing UW Honors Program
- Mentor
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- Amy Walker, Family and Child Nursing
- Session
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- Commons West
- Easel #6
- 11:00 AM to 1:00 PM
Every year, approximately 18,000 children and adolescents are diagnosed with cancer in the United States, and many of these diagnosed children will have siblings. Some studies indicate that siblings suffer from high rates of post-traumatic stress reactions, school absenteeism, behavioral problems, and declines in academic performance. Preliminary results from “Parenting in the Face of Cancer: Non-ill Child and Parent Relationships" indicate that children have misconceptions about the cause of cancer and contagion. They are also reluctant to share their feelings and concerns with their parents, and wonder what their role is in helping their sibling with cancer. The aim of this study is to develop a children’s book to facilitate communication between parents and their non-ill children. We reviewed the published literature about the effects of cancer on school-age non-ill siblings, and conducted interviews with child life specialists who work in cancer care. We also analyzed interviews of school age (7-12 years) non-ill siblings of children with cancer. Analysis focused on sibling’s perspectives of what caused the cancer, contagion, worries and concerns, and the perceived availability of their parents. The siblings’ perspectives and misconceptions were used to develop a story that provides a simple description of cancer, addresses the siblings’ misconceptions and concerns, encourages them to share their feelings and concerns with their parents, and suggests ways they can play an active role in their sibling’s treatment. A future study will be designed to evaluate whether this interactive children’s book alone, or the book with a short nurse coaching session, will improve emotional and behavior outcomes in non-ill siblings of children with cancer.
- Presenter
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- Jedidiah Acott, Senior, Biology, Psychology, Portland State University McNair Scholar
- Mentor
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- Justin Courcelle, Biology, Portland State University
- Session
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- MGH 241
- Easel #144
- 11:00 AM to 1:00 PM
8-methoxypsoralen is a photoactivated DNA-intercalating agent which, after receiving two high energy UVA photons, covalently binds pyrimidine bases on both strands of DNA, forming an Interstrand Crosslink (ICL). These lesions represent a complete block to replication and transcription, and ICL-inducing agents have been used widely in chemotherapies, yet the mechanism by which these lesions are processed in the cell remains poorly understood. In 1985, Ahmed and Holland reported an Escherichia coli mutant that was hyper-resistant to ICL agents. The mutation was mapped to 57.2 minutes on the chromosome and potentially encoded a 55-kDa protein that was induced during stress as part of the SOS response. Although these genes were never identified, hscA and hscB genes map to this location, have a similar size, and are SOS-inducible. To determine if these genes are responsible for ICL resistance, two strains of E. coli were constructed. In the first strain, the genes of interest were deleted and replaced by genetic recombination with chloramphenicol resistance. In the second construct, a wild-type strain was stably transformed with an arabinose-inducible plasmid containing hscA and hscB, which allows them to be overexpressed when the sugar arabinose is added to media. Here I report the resistance of both of these constructs and discuss the likelihood that these are involved in the cellular response to ICLs. In a second approach to identify ICL-resistance genes, a screen was established in which wild type cultures were grown and exposed to UVA light and 8-methoxypsoralen. Surviving colonies were then recovered and subsequently re-exposed to the ICL-inducing agents over several iterations. The accumulated resistance of this strain will be documented, with genome sequencing of any hyper-resistant mutants being performed to identify alterations contributing to ICL-resistance.
- Presenter
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- Sabrina Aeluro, Senior, Biology (Ecology, Evolution & Conservation)
- Mentor
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- John Klicka, Biological Sciences
- Session
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- MGH 241
- Easel #139
- 11:00 AM to 1:00 PM
One of the most inflammatory topics in animal welfare and wildlife conservation is the issue of feral domestic cats. Wild bird advocates favor lethal eradication programs to protect wildlife from cats, and feral cat advocates support reducing their populations non-lethally through trap-neuter-return programs. Little research has been done regarding the motivations and beliefs of the humans behind this conflict, a gap that this study has sought to remedy. Feral cat and wild bird advocates are as worthy of investigation for potential commonalities as they are for their history of strife. Both groups express a connection to animals which they cannot share much, if any, contact. Most human-animal bond research focuses on traditional pets, and questionnaires routinely use physical closeness as a metric of one's bond to an animal. An online survey was conducted of 3859 adult Americans who identify as advocates for either feral cats or wild birds. Questions included demographics, motivations, political engagement, how the animals make them feel, and what they enjoy or admire about feral cats or wild birds. The groups had statistically significant differences in more areas than they had commonalities. Areas of difference include number of pets, level of emotional attachment, and why they like their focal species. The groups did not have significant differences in subjects such as household size, enjoying feral cat/wild bird activities because they are challenging, and reporting that being a "feral cat person" or "wild bird person" is an important part of their identity. This is the largest study that has been conducted on a human-animal bond topic, as well as the most comprehensive study examining the people behind an important area of policy debate. These results could be useful in deescalating future policy battles and trying to pave a path forward to compromises that both stakeholder groups could accept.
- Presenter
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- Mahad Ali Ahmed, Senior, Biochemistry
- Mentor
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- Tanvi Deora, Biology
- Session
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- MGH 241
- Easel #143
- 11:00 AM to 1:00 PM
Flowering plants have coevolved with insect pollinators in a mutualistic relationship; plants provide nectar to insects and insects in turn cross pollinate flowers. Plants have employed a range of colors, scents and shapes to attract their insect pollinators. Vision, olfaction, and mechanosensation all have roles in the identification and interactions with flowers. While the roles of vision and odor sensing have dominated the literature, recent work has shown that mechanosensation plays as much a role as vision in ensuring that moths stay engaged with a moving flower. Moths use their straw-like proboscis to probe a flower, using the overall shape of the flower as well as tiny grooves in the petals to guide the insect’s mouthparts toward the nectary. Using the feeding behavior of the nocturnal hawkmoth, Manduca sexta, we ask how moths use mechanosensory information to find the nectary opening in flowers. We combine 3D printing technology--to generate different 3D flower curvatures, with micro-sensing technology--that allows us to detect the proboscis tip inside nectary, and computer vision techniques--to detect the motion of the hovering moth, to test the relationship between flower shape and efficiency in locating the nectary. We find that flower exploration depends on its 3D curvature. Moreover, over repeated trials, moths take less time to find the nectary across all curvatures suggesting that moths use tactile exploration to learn flower shape. Mechanosensation is one of many inputs used by moths in the wild to interact with their environment. In future studies we wish to explore the integration of mechanosensation with other sensory information, and the salience of each modality.
- Presenter
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- Shyam Dhiren Ajudia, Senior, Biology (Molecular, Cellular & Developmental)
- Mentors
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- Jay Parrish, Biology
- Claire Williams, Biology, Molecular & Cellular Biology
- Session
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- MGH 241
- Easel #137
- 11:00 AM to 1:00 PM
Synaptogenesis is the developmental process in which neurons form connections with their appropriate partners. However, the mechanistic bases for synaptic partner matching are largely unknown. To help address this gap in our knowledge about neural circuit formation, we are attempting to identify factors that drive specificity in synapse formation between nociceptive sensory neurons, known as Class IV dendritic arborization neurons (C4da), and their synaptic partners, A08n interneurons in Drosophila melanogaster. We hypothesize that C4da neurons express cell adhesion molecules that serve as specificity factors. Expressing such specificity factors in sensory neurons that do not normally synapse with A08n, for example C3da neurons, should drive spurious synapse formation with A08n. To test this, I used the split Gal4 system to develop transgenic tools for targeting gene expression specifically in C3da neurons. In this system the Gal4 transcription factor is split into its DNA binding domain (DBD) and activation domain (AD) which are independently expressed in overlapping cell populations and assemble to yield functional Gal4 only in cells that co-express both pieces. The complete Gal4 protein can then interact with UAS (upstream activating sequences) elements to drive gene expression. To develop a C3da-specific Gal4 driver I first engineered transgenes containing the Gal4-DBD fused to promoters predicted to be expressed in C3da neurons and other non-da neurons. I generated transgenic fly lines harboring these transgenes via direct injection of DNA into the fly germline. I then crossed these transgenic lines to a fly line that expresses the Gal4-AD element in C1-C4da sensory neurons. I expect to see functional Gal4 only in C3da neurons, which I can test by monitoring Gal4-dependent Green Fluorescent Protein expression. The resulting C3da neuron-specific driver will allow us to test whether ectopic expression of candidate specificity factors in C3da neurons is sufficient to drive synapse formation with A08n interneurons.
- Presenter
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- Aleezah Ali, Junior, Physics: Comprehensive Physics, Astronomy
- Mentors
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- Diana Windemuth, Astronomy
- Meredith Rawls, Astronomy
- Eric Agol, Astronomy
- Session
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- Commons East
- Easel #79
- 11:00 AM to 1:00 PM
Eclipsing binaries (EBs) are systems in which two stars orbit and pass in front of each other as observed from Earth. They are important astrophysical tools utilized in this project to directly measure the fundamental properties of stars, such as their masses and radii. We create a sample of 35 bright, detached EB targets from the Villanova Catalogue, based on high-quality photometry from the Kepler Satellite and spectroscopy from the Apache Point Observatory Galactic Evolution Experiment (APOGEE). Here, we present mass, radius, and orbital solutions for a subset of these EBs. For each system, we extract radial velocities (RVs), the speed at which each star in the system is moving away from the observer, from the APOGEE spectra. Then, we combine the RV with Kepler light curve (LC) information to simultaneously model the system light and line-of-sight speed as a function of time. Because our model has high dimensions with 18 free parameters, we first solve for the LC and RV solutions separately, and then simultaneously solve them. We use a nonlinear least-squares optimization method to determine the best fit solution and quantify the uncertainties in model parameters running Monte Carlo Markov Chain (MCMC) simulations. The model parameters that we find will further our understanding of fundamental stellar properties and binary star orbital parameters.
- Presenter
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- Jenan Alsarraf, Senior, Biochemistry
- Mentors
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- David Kimelman, Biochemistry
- Natalie Smith, Biochemistry
- Session
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- MGH 241
- Easel #159
- 11:00 AM to 1:00 PM
During the formation of the early embryonic zebrafish body, bipotential neuromesodermal progenitor cells (NMPs) that are located at the posterior end begin to differentiate via regulation of the Wnt pathway. Relatively higher Wnt-signaling activates the expression of the tbx16 gene, which in turn inhibits the neural fate and commits cells to a mesodermal (muscle) fate. The aim of this study is to understand the downstream effects of tbx16 on the rate and mechanism of anterior migratory transitions of mesodermal cells as they leave the progenitor region and travel to the somite-forming mesoderm region. We have previously shown that successful anterior migration and differentiation of mesodermal cells is dependent upon tbx16 downregulating the expression level of two Arhgaps, a Rho GTPase-activating protein. Hence, we heat shock hsp70: Arhgap29 and hsp70: Arhgap35 zebrafish transgenic lines at early somite stages in order to compare and contrast the effects of sustained Arhgap activation during the critical period of mesodermal cell anterior migration. At 24 hours post-heat shock, embryos are sorted by wild-type and transgenic, with transgenics having severe defects in their posterior somite formation. Followed by immunocytochemistry for a muscle antibody, confocal imaging on whole-mount embryos captures the shape and number of somites from each transgenic line. My results show that while Arhgap29 affects both the number and morphology of somites, Arhgap35 only affects their morphology. This suggests that these two Arhgaps do not have overlapping roles in the control of mesodermal cell migration. I am currently performing a separate in-situ hybridization experiment to help me understand the role of these Arhgaps on the essential genes involved in muscle cell differentiation. This study contributes to understanding early vertebrate development as a model for human embryogenesis.
- Presenter
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- Kimberly Claire Anderson, Senior, Chemistry (ACS Certified)
- Mentors
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- Robert Synovec, Chemistry
- Kelsey Berrier, Chemistry
- Session
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- MGH 241
- Easel #127
- 11:00 AM to 1:00 PM
This project seeks to relate chemical composition of hop oil extracts to their measured sensory qualities. Sensory properties of beer are the result of their unique chemical makeup fingerprint. Feature selection implemented in this analysis allows subtle differences in composition to be related to sensory profiles. Separation and content identification of the extracts was achieved with gas chromatography – mass spectrometry (GC-MS) instrumentation. Data pre-processing and analysis were completed using MATLAB software and peak finding algorithms developed exclusively by in-lab personnel. Feature selection strategies facilitated the comparison of individual analyte peak heights to sensory data. Several selection methodologies were tested to compare their utility in finding correlations. These approaches included data tiling and peak table-based strategies. The mathematical nature of data correlation, linear or otherwise, was then investigated. Preliminary results suggest that there may be a complex relationship between the sensory profiles and chemical composition. Exploration in this research path will enable the use of data analysis methods developed herein to better determine which compounds present in food and drink contribute to unique sensory attributes.
- Presenter
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- Mackenzie M. Andrews, Senior, Bioengineering, Neuroscience Levinson Emerging Scholar, UW Honors Program
- Mentors
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- Charles Chavkin, Pharmacology
- Antony Abraham, Pharmacology
- Session
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- MGH 241
- Easel #160
- 11:00 AM to 1:00 PM
Drug addiction is a highly prevalent disease with common potentiating risk factors including stress-exposure, anxiety, and depression. A number of brain regions have been linked to behaviors that drive drug seeking and abuse, however little is known about how these regions communicate to regulate those behaviors. Currently, instruments can be used to record neuronal activity in vivo, however these devices are typically only able to record from one brain region at a time and don’t allow for specificity of neuronal stimulation. In order to improve the understanding of how brain regions communicate to drive behavior, there is a need to develop a multiple-site in vivo recording device that can record broad excitation signals while allowing optical stimulation of specific subtypes of neurons. In order to fill this need, I designed a dual-site optic delivering electrode or optrode. This device is small enough to mount on a mouse’s skull to promote naturalistic behavior with the ability to record non-specific electrical signals from the brain regions of interest, as well as optically stimulate specific subtypes of neurons. I also designed a program to process and analyze the data recorded by the device. If this device is successful, it will improve our understanding of how brain regions communicate to drive addiction-associated behaviors which could lead to therapeutic solutions for the treatment of addiction.
- Presenter
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- Omar Apolinar, Junior, Biochemistry, Calif St University San Marcos McNair Scholar
- Mentor
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- Robert Iafe, Chemistry, California State University San Marcos
- Session
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- MGH 241
- Easel #145
- 11:00 AM to 1:00 PM
With a society that consumes pharmaceuticals daily, the need to develop more efficient syntheses of bioactive molecules is vital. Organocatalysis is a field in chemistry that has been looked upon to have immense potential to succeed in this area. A type of organocatalyst that has been gaining notoriety is the bisphosphorylimide, which is a stronger acid and more sterically hindered than chiral BINOL-derived phosphoric acids. This upsurge can be attributed to the simple preparation and functionalization of bisphosphorylimides. In this investigation, several bisphosphorylimide organocatalysts are prepared and their performance in a Friedel-Crafts reaction between sesamol and benzylidenecarbamates will be presented. Ultimately, the enantioselective products synthesized from this research may serve as bioactive components in the preparation of pharmaceuticals such as trabectedin, an anti-tumor drug.
- Presenters
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- Ashlan Mecall Applegate, Senior, Biology (Ecology, Evolution & Conservation)
- Philip Sina (Phil) Fallah, Senior, Biology (Molecular, Cellular & Developmental)
- Daniel Carey, Senior, Biology (Molecular, Cellular & Developmental)
- Muruudul (Muuduu) Otgonbold, Recent Graduate, Biology (General)
- Elisa Aiko Cano, Recent Graduate, Biology (General)
- Chris Nadala, Senior, Biology (Molecular, Cellular & Developmental)
- Jon Woods, Senior, Biology (Molecular, Cellular & Developmental)
- Mentor
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- Justine Liepkalns, Biology
- Session
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- Commons West
- Easel #24
- 11:00 AM to 1:00 PM
Reports have shown the importance of student engagement and student-centered pedagogies in biology classes. A sense of community in a classroom can help students be less isolated from their peers and increase their willingness to answer questions, as well as their willingness to ask for help. This classroom sense of community can enhance students’ perception of learning and can be achieved online. Furthermore, a sense of community among underrepresented groups (URG), which have the highest attrition rates in STEM, can be a powerful tool for increasing student retention. We hypothesize that blogging enhances a sense of community and connectivity among students. Our study analyzed 82 students’ interactions during a semester-long writing assignment in a biology class for non-biology majors at Emory University. Half of the students submitted their assignments as blog posts, the other half through a traditional educational content management system. Both groups had equivalent distributions of diverse ethnicities. Student connectivity was incentivized and monitored by having students turn in editor-sheets, reporting whose assignment they edited, and how. This student connectivity was subsequently analyzed via a Network Analysis. Student surveys showed trends of higher perceived sense of community among bloggers relative to traditional writers. The network analysis revealed double the average connectivity among bloggers, with 2-folds higher average connections per student in the blogging group. Students also showed more evenly distributed connections among bloggers relative to traditional writers. We conclude that the use of blogging among non-biology majors can facilitate student-student interactions and has the potential to create a sense of community, which has positive implications in the retention of under-represented groups in STEM fields.
- Presenters
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- Rebekah Ray (Bekah) Ashpole, Senior, Neuroscience
- Brady Levi Hearn, Sophomore, Pre-Sciences
- Mentor
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- Alan Herr, Pathology
- Session
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- MGH 241
- Easel #154
- 11:00 AM to 1:00 PM
Mutator phenotypes due to mutations in genes encoding DNA polymerases or mismatch repair proteins lead to increased error rates during DNA replication that accelerate the evolution of cancer cells. Work in the yeast Saccharomyces cerevisae indicates that excessive DNA replication errors lead to error-induced extinction (EEX), where every cell within the population dies due to the random loss of essential functions. One escape route from this lethality is the acquisition of antimutator alleles that lower the overall mutation rate. A possible direction for cancer therapy, then, may be to exploit these antimutators in order to modulate the mutation rate of mutator cells with drugs – either to increase mutation rates to a lethal level or suppress mutation rates to the baseline level of non-cancerous cells, thus slowing the rate of tumor evolution. Our lab has identified several different antimutator mutations in genes that regulate the production of dNTPs, the building blocks of DNA. Examination of cancer genomes from mutator tumors reveal numerous candidate antimutator mutations in the corresponding human genes. We reverse-engineered these candidates into mutator yeast strains to test whether they indeed confer an antimutator phenotype. Evidence that mutations exist in mutator driven tumors that confer an antimutator phenotype would suggest that the unrestrained mutator phenotypes may be lethal to cancer cells. These findings raise the possibility of new methods of human cancer therapy by which specific genes can be targeted to manipulate mutation rates.
- Presenter
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- Jeremy Joseph Aspee, Senior, Environmental Science & Resource Management (Wildlife Conservation)
- Mentors
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- Raymond Buckley, College of the Environment
- Marta Gómez-Buckley,
- Session
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- Balcony
- Easel #110
- 11:00 AM to 1:00 PM
The Vava'u Archipelago, Kingdom of Tonga, is an island group located in the central south Pacific Ocean. The waters within the archipelago have abundant and diverse marine zooplankton that are a critical part of the local, and likely regional, food-webs. Invertebrate zooplankton and ichthyoplankton form the biological foundation of the reef ecosystem. They are prey for each other and larger organisms. As such, they are key components of energy transfer throughout the food web, and their dispersal can determine the settlement of many species. Any changes to the plankton assemblage has the potential to damage the higher levels of the ecosystem. Assessing the condition and composition of these groups provides key insights into the health of the community. However, the composition and seasonal cycles of Vava’u’s zooplankton communities have never been studied. This information is needed to establish baseline data for detecting impacts to the zooplankton and surrounding marine ecosystem caused by the current progression of environmental stressors in the region, such as global warming, ocean acidification, and local development-related water pollution. Through assemblage and genetic analyses of samples made in April 2017, I estimated the general zooplankton composition of the area.
- Presenter
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- Casiano S. Atienza, Senior, Civil Engineering
- Mentor
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- Amy Kim, Civil and Environmental Engineering
- Session
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- Commons East
- Easel #61
- 11:00 AM to 1:00 PM
Indoor Environment Quality (IEQ) is a vital topic to address in today’s studies as it presents a significant role to the overall well-being of professionals who work indoors. IEQ adheres to overall human reactions to cleanliness/dirtiness, surrounding temperatures, and other irritants that may exist. While studies of IEQ in office environment have been well documented, less is known about IEQ during construction of an interior renovation. There are numerous possibilities of exposure to contaminants and pollutants both during construction and renovation to workers and building occupants, whom become vulnerable to the dusts and odors from construction. Currently there are no enforceable indoor air quality (IAQ) standards targeted specifically for office environment, so it is vital to address these topics and increase awareness, advocate the practice of applying minimal toxic materials, and prevent health concerns. In order to promote productivity and bridge the gaps in awareness concerning IEQ and health in office buildings, this three-phase project at the University of Washington Tower (UW Tower) aimed to addressed and advocated the importance of providing satisfactory IEQ, sustainable renovated workspaces, and shared IAQ strategies that could be implemented during indoor construction and renovation projects. Overall, three phases were implemented in this project. Phase-One took place four weeks before retrofitting. Phase-Two occurred during the construction. Phase-Three occurred after moving to the retrofitted workspace. This project involved collecting and analyzing IEQ data as well as surveying employees at the UW Tower to assess their psychological state, regarding each individuals enjoyment, well-being, at their workspace before and after construction. Future investigations should be directed at understanding what types of construction practices should be used to reduce pollutants, airborne toxins to maintain satisfactory IEQ.
- Presenters
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- Ashley Auerbach, Senior, Biology (Molecular, Cellular & Developmental)
- Tianrui Wang, Senior, Biochemistry
- Mentor
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- Brian Wasko, Pathology
- Session
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- MGH 241
- Easel #157
- 11:00 AM to 1:00 PM
The incidence of many human diseases, such as cancer, Alzheimer's and heart disease, increases with age. Studying the aging process could provide insight into new treatments and therapies for these aging-related diseases. Our research uses the yeast species, Saccharomyces cerevisiae, as a model organism to explore the effects of specific genetic and environmental factors on aging. Aging in yeast can be measured in terms of replicative lifespan, which is the number of progeny (daughter) cells produced by a parental (mother) cell. In order to measure the replicative lifespan, we utilize a microdissection microscope outfitted with a fiber optic needle that is used to separate individual mother cells from their daughter cells in order to quantify the number of daughter cells produced. The total number of daughters produced by a mother cell is the replicative lifespan of that cell. To determine which genes play an instrumental role in yeast replicative lifespan, our lab has studied the lifespan of 4,698 yeast mutants containing single gene deletions. Many mutants were identified that increase the lifespan of S. cerevisiae. In this study, we have re-evaluated our data to identify potential false-negative results from our initial work, in order to identify additional genes that may influence lifespan. Identifying the false-negative results will be beneficial in finding genes that may play a role in the aging process and had been previously overlooked. This will allow future research to continue in developing treatments that target the prevention of age-associated disease in humans, potentially allowing people to live healthier lives and decreasing the prevalence of cardiovascular disease and cancers.
- Presenter
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- Leana Lynn Axtell, Junior, Environmental Science & Resource Management
- Mentors
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- Serita Frey, Biological & Environmental Sciences
- Jessica Moore, Biological & Environmental Sciences, University of New Hampshire
- Kevin Geyer, Biological & Environmental Sciences, University of New Hampshire
- Session
-
- Balcony
- Easel #111
- 11:00 AM to 1:00 PM
Anthropogenic nitrogen (N) emissions have caused an increase in global N deposition, and the northeastern United States is a N deposition hotspot. Nitrogen deposition could impact soil microbial abundance because most soil biota evolved under low N conditions. Soil microbes are key to many ecosystem processes such as organic matter decomposition, which makes nutrients available for plant growth. Therefore, understanding the factors controlling microbial abundance is critical for being able to predict ecosystem processes. We hypothesized that fungal and bacterial abundance and the fungi:bacteria ratio in soil would decrease along a natural N deposition gradient in the northeastern US, and be further reduced by fertilizer application. To address our hypothesis, we collected soil from eight different sites, six of which had experimental plots where N fertilizer had been added. At each site, we collected soil from four ambient or control plots and, if available, four fertilized plots (48 total plots). We measured microbial abundance using phospholipid fatty acid analysis (PLFA). We compared microbial abundance in fertilized to control plots using t-tests, and we analyzed changes in microbial abundance along the natural N gradient using regression analysis. We found that ambient N reduced bacterial abundance (p = 0.03, R2 = 0.08), but it did not affect fungal abundance (p = 0.17, R2 = 0.02). Fertilizer had no overall effect on fungal (p = 0.72, t = 0.36) or bacterial abundance (p = 0.91, t = -0.12). However, fertilizer did reduce bacterial (p = 0.02, F = 5.6) and fungal (p = 0.02, F = 5.8) abundance at high levels of ambient N deposition. In conclusion, our study showed that soil microbial responses to fertilizer in the northeastern US depend on the background levels of atmospheric N deposition.
- Presenter
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- Holly Krulish Bates, Junior, Health Studies (Bothell)
- Mentor
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- holly Bates, Nursing (Bothell Campus)
- Session
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- Commons West
- Easel #29
- 11:00 AM to 1:00 PM
The proposed project digs deeper into understanding why parents are delaying or refusing to immunize their children and how this directly relates to social media. Despite the evidence and benefits of vaccines, more parents are delaying or even refusing to get themselves and their children vaccinated. To keep vaccine-preventable diseases from arising in our community, at least 95% of the population must be vaccinated. King County has a vaccination rate of 77% percent, compared with the national average of 81%. This project focuses on children in King County, ages 1-3 years old who are behind on the combo 10 immunization. This project followed for six months 100 patients at a King County clinic who are behind on 1 or more vaccines. During these 6 months, patient’s legal guardians/parents received reminder calls that their child was past due for an immunization. They were prompted to make an appointment. If the patients’ legal guardians/parents made an appointment, the research assistant followed up to ensure the appointment was completed and they are up to date. Multiple choice questions were asked of parents regarding why they decided to immunize or why they delayed or refused to immunize their child’s immunizations. Questions about social media were also asked to reveal whether social media use is a determining factor influencing their decision regarding immunization. This helped determine the reason contributing to our low herd immunity number in King County and help public health officials better advise parents and the public of the importance of herd immunity and staying immunized. The project is important because our aim is to educate and further understand how we can encourage and involve parents to immunize their children in a timely manner.
- Presenter
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- Signe Marie Bergman, Senior, Oceanography NASA Space Grant Scholar
- Mentors
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- Alexander Gagnon, Oceanography
- Nick Roden, Oceanography
- Session
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- Commons East
- Easel #47
- 11:00 AM to 1:00 PM
Ocean acidification is projected to put coral reefs in a state of net dissolution by the end of the century. Coral reef ecosystems are important habitats, supporting 25% of marine biodiversity in less than 0.1% of its surface area. As humans continue to burn fossil fuels, adding CO2 to the atmosphere and oceans, local mitigation approaches become increasingly important to consider for preserving these vital ecosystems. Bubble stripping is a geoengineering approach to ocean acidification that has been modeled and tested in the laboratory as an effective means of enhancing air-sea gas exchange in coastal ecosystems. Bubbling of CO2-deplete air through the water column allows dissolved CO2 to diffuse into the bubbles and, ultimately, the atmosphere. Bubbling is strategically timed to occur at night, when organisms are respiring and CO2 is not removed by photosynthesis. By increasing the rate of air-sea gas exchange, the ocean and atmosphere equilibrate such that concentrations of CO2 do not reach the extremes that would otherwise occur in the water column. In this study, we used airstones (bubble diffusers) and a test tank to confirm the results of an earlier bubble stripping experiment. Bubbling increased pH and decreased dissolved inorganic carbon (DIC). Its effectiveness could be optimized by testing parameters like bubble size, air flow rate, and water column height. However, obtaining and expelling compressed air is an energetically expensive process, so bubble stripping would likely be useful only for stabilizing seawater chemistry in specific, small sections of reef.
- Presenter
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- Brandon Berk, Junior, Mathematics, Heritage College McNair Scholar
- Mentor
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- Feng Fu, Mathematics, Dartmouth College
- Session
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- Commons East
- Easel #55
- 11:00 AM to 1:00 PM
"The Prisoner's Dilemma" (PD) is a Game Theory activity in which a group of individuals simultaneously decide between two choices without knowledge of each other's selection and where individual profit depends on the responses of all participants. PD, when graphed, is often used to mathematically model human cooperation and social interaction. This research delves into the game played repetitively while looking to determine interactions between cooperation and defection in terms of maximal profit. The game was coded using C++ to visually and analytically depict cooperation and defection. A simple lattice structure graph with periodic boundary conditions was used, thus each node had four connections. When running the model, it became evident that defection dominated the game. For cooperation to remain in the game, very strict conditions must be met. As PD in game theory is very basic but structured, it has been used to model a wide range of phenomena in a multitude of disciplines such as stock market changes, bacteria growth, and the decision making of world leaders. The model created in this research is very simple, but with more parameters and variations to the model, we hope to create a more complex system that is capable of modeling such things as social networks as well as take into account socioeconomic factors to model true human cooperation statistics.
- Presenter
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- Rehaan M. Bhimani, Sophomore, Pre Engineering 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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- MGH 206
- Easel #178
- 11:00 AM to 1:00 PM
More than 40 million people in the United States have or are at risk for osteoporosis, a condition characterized by traits including low bone mineral density (BMD) and high fracture risk. Though genome-wide association studies have identified many candidate genes associated with genetic risk factors, genetic variations that are associated with osteoporosis-related traits, the causal genes underlying these risk factors remain undiscovered. My research centers around developing tools to assess bone morphology in a zebrafish model to identify specific genes that cause osteoporosis or other skeletal abnormalities. Because a trademark characteristic of osteoporosis is expanded bone diameter due to accelerated bone remodeling and increased resorption in the endosteum, I have developed tools to assess bone expansion in zebrafish vertebral structures. By using integral calculus and basic machine learning with the R programming language, I developed a predictive model for calculating approximate diameters for the centrum foramen, the hole in the zebrafish vertebral body. As a more direct alternative, I have also developed a program using image analysis tools in MATLAB that identifies the foramina of the centra, neural (superior) arches, and haemal (inferior) arches in binarized microCT stacks of zebrafish skeletons and calculates the cross-sectional area of each foramen. I am using these tools to retroactively analyze previously scanned mutant zebrafish to identify genes that have phenotypes consistent with abnormal foramina of the vertebral body and arches. I have determined that mutants with the bmp1a and plod2 genes knocked out separately have expanded centrum foramina. After compiling and analyzing a zebrafish data archive with data from other previously imaged mutant samples, my results will indicate previously undetected phenotypes. This data will aid in my lab’s efforts to determine the causal genes underlying osteoporosis genetic risk factors. This research may lead to discoveries that are used in future osteoporosis gene therapies.
- Presenter
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- Camille Isabella Birch, Senior, Bioengineering, Computer Science Levinson Emerging Scholar, Mary Gates Scholar, UW Honors Program
- Mentors
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- Eberhard Fetz, Physiology & Biophysics
- Irene Rembado, Physiology & Biophysics
- Session
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- MGH 241
- Easel #132
- 11:00 AM to 1:00 PM
Vagus nerve stimulation (VNS) involves the delivery of electrical stimuli to the vagus nerve, which is associated with several brain regions and functions. VNS is currently used as auxiliary treatment for some types of epilepsy and there is significant interest regarding its potential in the treatment of other illness as well as for cognitive augmentation and promoting plasticity. The goal of this project is to investigate the differences in ipsilateral and contralateral cortical responses to different vagus nerve stimulation protocols, as well as to compare the responses to invasive versus noninvasive VNS delivery methods. Data was collected from a non-human primate using dual electrodes (with epicortical and intracortical contacts) placed in the prefrontal, premotor, supplementary and primary motor and parietal cortical areas, as well as a nerve cuff placed on the left trunk of the vagus nerve. Data analysis focused on the cortical evoked potentials elicited by VNS and recorded at cortical sites both ipsilateral and contralateral to the VNS. VNS was delivered to both the auricular branch of the vagus nerve in the noninvasive protocol and through a nerve cuff on the left vagus nerve trunk for the invasive protocol. This work is related to a larger project focused on establishing protocols for noninvasive VNS to augment targeted neuroplasticity and enhance cognitive performance in normal nonhuman primates. This nonhuman primate study will be directly applicable to the development of noninvasive VNS technology that can be used to enhance neuroplasticity and cognitive performance in healthy adult humans.
- Presenters
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- Azariea Bonner-Harris, Senior, Physiology, Seattle Pacific University
- Emily Stohler, Junior, Cellular and Molecular Biology, Seattle Pacific University
- Nicholas Lee, Junior, Cellular and Molecular Biology, Seattle Pacific University
- Tristen Wilson, Junior, Biology, Seattle Pacific University
- Mentor
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- Cara Wall-Scheffler, Anthropology
- Session
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- Commons West
- Easel #1
- 11:00 AM to 1:00 PM
Few studies have attempted to figure out how humans may alter their behaviors when faced with trade-off decisions surrounding convenience and risk. Walking is still a primary mode of transportation for many humans, and in this study, we aimed to try to understand how pedestrians behave while engaging in risky behavior, specifically jaywalking (here defined as crossing at a crosswalk but against the green light). Subjects were observed at different intersections in Seattle as they crossed the streets while we recorded various characteristics, including speed, group composition, and gender. The video footage was collected using an iPhone; distance was measured using a Kestrel wheel; and the video footage was analyzed using Kinovea software. Statistics were done in SPSS 25. People (N= 652) were more likely to walk faster when they were jaywalking (p=0.006), and were more likely to check the surrounding environment (p<0.001) when crossing against the light. People walking in groups were less likely to walk quickly (p=0.001) (than people walking independently), and less likely to check the surrounding areas when crossing the street (p=0.034); however, groups were also less likely to jaywalk than individuals (p=0.013). Jaywalking and walking-safety data are regularly used by city planning and development committees to determine how to allocate city resources to pedestrian safety measures. Additionally, this study can be used as a foundation for better understanding humans’ walking and movement decisions surrounding risky behaviors, and how walking in groups might increase walking safety and change people’s risk assessment.
- Presenter
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- Natasha Bourgeois, Recent Graduate, Biological Sciences, University of Washington Amgen Scholar, Howard Hughes Scholar, UW Post-Baccalaureate Research Education Program
- Mentor
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- Thomas Hawn, Medicine
- Session
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- MGH 258
- Easel #187
- 11:00 AM to 1:00 PM
Antibiotic resistance, drug cytotoxicity, and lengthy treatment regimens are major barriers to ending the tuberculosis epidemic. Host-directed therapies (HDTs) that avoid direct targeting of Mycobacterium tuberculosis (Mtb) while enhancing macrophage clearance of the bacteria may overcome such challenges. Because host protein kinases (PKs) regulate multiple innate immune signaling pathways involved with Mtb clearance, we hypothesized that host PKs are HDT candidates. We investigated a group of ATP analogues with specific activity against parasite serine/threonine protein kinases called bumped kinase inhibitors (BKIs). BKIs inhibit few mammalian PKs, so they offer HDT potential while avoiding broad activity that could result in toxicity. To assess the effect of BKIs on Mtb growth within monocyte-derived macrophages (MDMs), MDMs from healthy donors were infected with a luminescent Mtb reporter strain (Mtb-lux) in the presence or absence of BKIs and daily luminescence readings were recorded. We found three BKIs that limit Mtb intracellular replication in MDMs at a final reaction concentration of 10-20 µM. Interestingly, none of these compounds inhibited Mtb-lux growth in 7H9 broth culture. To examine possible mechanisms, we measured the effect of the BKIs on pro-inflammatory cytokine release in MDMs in response to various stimuli including Toll-like receptor agonists, virulent Mtb, and the attenuated vaccine strain Mycobacterium bovis BCG. In response to all of these stimuli, the BKIs potently inhibited TNF secretion and moderately inhibited IL6 secretion by ELISA. In contrast, the mRNA expression level of antimicrobial peptide cathelicidin was maintained in the presence of the BKI tested. Since pro-inflammatory cytokine induction and cathelicidin expression are generally host-protective in early Mtb infection, it is unlikely that the effect of the BKIs on these pathways are responsible for inhibiting intracellular Mtb growth. We are currently evaluating the effect of BKI treatment on other antimicrobial pathways that restrict Mtb infection, including phagosomal uptake and autophagy.
- Presenter
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- Hayley Michelle Boyd, Junior, Bioengineering Mary Gates Scholar
- Mentors
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- Eberhard Fetz, Physiology & Biophysics
- Irene Rembado, Physiology & Biophysics
- Session
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- MGH 241
- Easel #131
- 11:00 AM to 1:00 PM
Cortical plasticity is the substrate for learning and memory. It is the basis of an organism’s ability to adapt in response to a changing environment and is central to functional recovery after an injury involving the nervous system. Vagus nerve stimulation (VNS) has already been shown to be effective in altering neuroplasticity. Most VNS research has been conducted on epileptic animals and thus offers little information on how VNS may affect a healthy human brain. The final goal of this project is to establish a minimally invasive VNS protocol aiming to augment neuroplasticity and enhance behavioral performance in a cognitive task. Non-human primates are implanted with cortical electrodes and also receive a stimulating cuff electrode around the vagus nerve in the neck. By delivering current through the cuff, vagal evoked potentials (VEPs) are elicited on the cortex. In order to measure how VNS affects cortical excitability, we pair the stimulation of the vagus nerve with stimulation of a somatosensory nerve (i.e. median nerve) and we quantify the effects on the cortical activity by measuring the magnitude of the evoked responses generated on the cortex. Preliminary results from one animal showed a suppression of cortical activity in the primary motor area (M1) when the delay between the vagus stimulation and the median nerve stimulation ranges between 100 and 150 msec. Four additional animals have received vagus nerve cuffs and neural implants targeting multiple cortical areas. These neural implants give us access to recording not only from M1, but also from prefrontal, premotor, supplementary, and parietal cortical areas. In this way we will be able to characterize the physiological effects of VNS on the cortical excitability of different brain areas, generating data and insights never before obtained and directly applicable to the development of neuromodulation technology in humans.
- Presenter
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- Justin Johnathan Burau, Senior, Physics: Comprehensive Physics, Astronomy
- Mentor
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- Boris Blinov, Physics
- Session
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- Commons East
- Easel #76
- 11:00 AM to 1:00 PM
Barium and Ytterbium ions are the forerunner ion species for quantum computation and quantum information in trapped ion systems. Ion chains of ytterbium and barium have been proposed for a scalable quantum computer with computation done on ytterbium ions and photonic coupling between different ion traps with barium ions. Ytterbium 171+ has a nuclear spin of ½ meaning it has a splitting of the 6S ½ ground state into 2 hyperfine manifolds separated by around 12 GHz. This allows for an easily addressable 2 level quantum system with a long coherence time. Barium 138+ does not have any nuclear spin, but an applied magnetic field causes Zeeman splitting of the 6S ½ state due to the interaction of the magnetic field and the atom's magnetic dipole moment, of which can be used as a qubit. In this poster I will discuss sympathetic cooling of ytterbium ions by barium ions which is caused by mechanical coupling of the ions from a harmonic electric field from the ion trap and the coulomb repulsion between the ion species, and the results of a recent experiment involving sympathetic cooling of the mixed ion chains of ytterbium and barium. The experiment itself consists of a linear chain of ions consisting of two barium and two ytterbium ions trapped in a four-rod linear Paul trap. Temperature of the ions is determined by performing Rabi flops between the ground state of barium 138+ to a higher energy state. Using the results from the Rabi flops you can determine the average thermal occupation numbers of the ions. I will discuss my role in the optical setup on a narrow line-width laser at 1762nm that it used to perform the Rabi oscillations, and collecting data during the experiment.
- Presenters
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- Vienna Canright, Sophomore, Ecology, Wildlife Biology, Animal Behavior, Everett Community College
- Holden Fox, Sophomore, Ecology, Organismal Biology, Everett Community College
- Zoe Denckla, Sophomore, Marine Biology, Everett Community College
- Mentors
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- Ardi Kveven, , Everett Community College
- Robin Araniva, Ocean Research College Academy, Everett Community College
- Josh Searle, English, Ocean Research College Academy, Everett Community College
- Session
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- Balcony
- Easel #108
- 11:00 AM to 1:00 PM
The Possession Sound’s Snohomish River Estuary (PSSRE) provides a prime habitat for a large nesting population of North American osprey (Pandion haliaetus) in the Puget Sound region. The ospreys that nest in the Possession Sound are migratory, arriving between mid-March and mid-April to nest and leaving between late-August and late-September to winter in Southeastern Texas, Mexico, and Central America. Male and female ospreys migrate separately, with males returning first to prepare the nest and females leaving first to travel farther south. Juvenile ospreys do not make the return migration from their southern winter location until their second spring. As of 2016, osprey attendance reached 24 nesting pairs in the PSSRE. As apex predators whose diets are comprised primarily of fish, ospreys are considered sentinel species for studying contaminant levels in marine environments. Therefore, monitoring behavior, breeding success, and contaminant levels of ospreys can provide a census for the health of the local marine ecosystem. This study will take place on the return of the ospreys to the PSSRE in 2018 and will entail visually surveying the estuary to determine the nesting locations, return rates for both males and females, and dietary habits of ospreys. Past nest locations and populations will be compared to 2018 data. Additional research will utilize a remote camera with pan/tilt/zoom capabilities to observe and record three nest sites near the Port of Everett for nesting behaviors, fecundity, and identification of prey targets for potential heavy metal analysis.
- Presenter
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- Sanne Marie Casello, Sophomore, Pre-Sciences
- Mentors
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- Charles Chavkin, Pharmacology
- Benjamin Land, Pharmacology
- Allisa Song, Pharmacology
- Session
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- MGH 241
- Easel #161
- 11:00 AM to 1:00 PM
Chronic stress induces the release of hormones and neuropeptides including dynorphin, which activates Kappa Opioid Receptors (KOR) to encode the anxiogenic components of the stress response. Previous studies have identified the specific dynorphin-KOR neurochemical signaling responses in the regions of the brain known for regulation of reward systems, and thus may be potential therapeutic targets for stress-related conditions such as depression, anxiety, and substance use disorders. Formally, cells containing dynorphin-KOR have been difficult to study due to technical limitations of the available reagents. However, the generation of new tools including mice expressing promotor-driven cre-recombinase (e.g. KOR-Cre and prodynorphin-Cre) have allowed cell-specific gene expression using Cre-dependent viral expression of fluorophores combined with in-situ staining. In this study, the reliability of a phospho-KOR antibody was tested. The specificity of the immunostaining was verified by administering a KOR agonist, U50,488, in wild-type animals or transgenic animals lacking the G protein-coupled receptor kinase 3 (GRK3), which phosphorylates the KOR. Additionally, wild-type mice with a pre-treatment of norBNI, a KOR antagonist, followed by U50 were also tested. Immunohistochemistry of animal brain tissue showed that the norBNI pre-treated, wild-type animals and GRK3 knock-out animals had lower KORp-IR fluorescence compared to their wild-type counterparts treated with U50,488, verifying that the KORp antibody was reliable. After verification, this KORp antibody was utilized to characterize the dynorphin-KOR circuitry in the mouse brain. To do so, an excitatory opsin was injected into the DR of pDyn-Cre mice with an optic fiber implant. The DR region was then optically stimulated with blue light and dynorphin-releasing projections into the ventral tegmental area were verified by measuring KORp fluorescence. This experiment details one specific dynorphin-KOR pathway in the mouse brain that was not previously studied, and future experiments will utilize this approach to map the extent of dynorphin/KOR localization within the reward circuitry.
- Presenters
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- Zola Veronica Cass, Junior, Anthropology
- Natalie Reese (Kamaka'ike) Bruecher, Junior, Public Health-Global Health, Anthropology: Medical Anth & Global Hlth
- Jason Huynh Nguyen, Sophomore, Anthropology: Medical Anth & Global Hlth
- Laura May Riley, Senior, Anthropology: Medical Anth & Global Hlth
- Lisa Phan, Senior, Anthropology
- Mentor
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- Holly Barker, Anthropology
- Session
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- Commons West
- Easel #4
- 11:00 AM to 1:00 PM
Among the many cultural treasures within the Burke Museum collections is a full-size sailing outrigger canoe from the island of Chuuk in Micronesia. This canoe is not currently on display but will be part of the Ethnology exhibit of the new Burke opening 2019. The basis of our research was to understand and analyze how Chuukese knowledge about canoes was reflected in cultural aspects such as canoe design, songs, myths, and language. To deepen our understanding of the Chuukese canoe we researched cultural aspects through methods such as literature review, community interviews, and collections analysis. Our aim for our research was to give a greater understanding and contextualization in order to unlock the knowledge of the outrigger canoe from Chuuk within the Burke collection. Our hopes were that this research would give visibility to the Chuukese community as well as educate all Burke visitors and staff members.
- Presenter
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- Noah Arthur James Cassidy, Senior, Microbiology Mary Gates Scholar
- Mentors
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- Julie Overbaugh, Microbiology
- Jeremy Roop, Fred Hutchinson Cancer Research Center
- Session
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- MGH 241
- Easel #130
- 11:00 AM to 1:00 PM
One of the major challenges in designing a human immunodeficiency virus (HIV) vaccine is that it is very difficult to provide immunity against the diversity of HIV strains circulating around the world. Interestingly, recent studies have indicated that HIV infected infants develop sera capable of neutralizing a large variety of HIV strains. An understanding of the developmental processes that produce this serum may aid vaccine design efforts. Before that can be done, it is necessary that we determine what individual antibodies are present in the infant serum and what viral epitopes they target. My project seeks to develop a method that will allow high-throughput assessment of the neutralization activity of patient serum samples against a pool of genetically distinct viruses. Application of this method to longitudinal infant serum samples will determine the neutralization breadth, potency and viral epitopes targeted by this broadly neutralizing serum. This method involved uniquely barcoding a set of distinct viral plasmids, followed by transfection of 293T cells to produce viruses bearing unique barcode sequences in their genomes. Supernatants from these transfections were collected, pooled, and later incubated with monoclonal antibodies in a pilot experiment to validate the accuracy to which our assay could assess viral neutralization. With the success of our pilot neutralization trial, we will proceed with incubating our viral pool with and without infant sera, after which, they will be used to infect human CD4+ T cells. DNA will be isolated from infected cells, and we will count the relative frequencies of each barcode in serum-neutralized, and non-neutralized pools. Comparison of these barcode counts will indicate the extent of neutralization of each virus. This information will describe basic characteristics of the unique infant serum and inform future research that will define the immunological processes that underlie the unique development of infantile broadly neutralizing sera.
- Presenter
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- Yana Chakalo, Senior, Sociology UW Honors Program
- Mentor
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- Sarah Quinn, Sociology
- Session
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- Commons East
- Easel #84
- 11:00 AM to 1:00 PM
In this study, I investigate how students with different racial identities -- white students and students of color -- think and interpret their own value of their debt as they near graduation and thus, begin their journey of repayment. Knowing that students of color take on a higher debt burden than white students, I want to look at these two groups of students and see if there is a difference in how students perceive their debt in accordance with their life, racial identity, and social experiences. I will investigate this using in depth interviews of students with $20,000 or more of student debt. This research will provide insight about the intersection of socioeconomic status, race, and student debt within American colleges. This will expand our understanding of how different people place a value on and expand on their student debt. As the student debt burden increases in the U.S., it is crucial that we understand how people make sense of that debt within their lives.
- Presenter
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- Derek Chen, Senior, Biology (Molecular, Cellular & Developmental) Mary Gates Scholar, UW Honors Program
- Mentors
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- David Flum, Surgery
- Jeanette Yang, Surgery, Surgical Outcomes Research Center
- Session
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- MGH 206
- Easel #171
- 11:00 AM to 1:00 PM
Diverticulitis is a common gastrointestinal condition in both the United States and Europe. Approximately 200,000 people are hospitalized for cases of diverticulitis in the United States alone on a yearly basis. When small pouches called diverticula develop along the sigmoid colon, the lower part of the colon, this initial condition is known as diverticulosis. Diverticulosis turns into diverticulitis when these diverticula, located in the left lower quadrant (LLQ) of the abdomen, become inflamed usually due to a bacterial infection. A common symptom of diverticulitis is when patients generally have LLQ pain sustained over a period of time. We, the Surgical Outcomes Research Center (SORCE), are conducting the Diverticulitis Evaluation of Patient Burden, Utilization, and Trajectory (DEBUT) study to investigate the impact of diverticulitis treatment options on patients and to improve the understanding about how physicians and patients decide to have elective surgery for diverticulitis. Currently, the optimal timing for elective (non-emergency) colectomy surgery to treat diverticulitis is unclear, and diverticulitis affects individuals in many different ways. Through our patient-centered research approach in DEBUT, we hope to determine the impact of treatment decisions on a patient's quality of life, work, and clinical symptoms. These patient-reported outcomes are measured over time among patients who do and do not undergo elective colectomy surgery to treat diverticulitis. Our goals are to better understand how physicians and patients decide to undergo elective colectomy surgery to treat diverticulitis as well as provide higher quality evidence that can help patients and their physicians to make better-informed decisions about the timing of surgery for diverticulitis. Results gained from this study may eventually help inform current medical recommendations for diverticulitis treatment and give current healthcare professionals the tools necessary to develop more effective guidelines for treating patients with diverticulitis.
- Presenter
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- Olga Sarby Cherepakhin, Senior, Biology (Molecular, Cellular & Developmental), Anthropology: Medical Anth & Global Hlth Mary Gates Scholar
- Mentor
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- Dong-Hui Chen, Neurology
- Session
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- MGH 206
- Easel #166
- 11:00 AM to 1:00 PM
Spinocerebellar Ataxia (SCA) is a group of inherited autosomal dominant disorders characterized by the loss of coordination in the limbs and atrophy of the cerebellum. SCA progresses gradually and has a diverse presentation of symptoms from debilitating to mild amongst its different forms. There are many genetic causes for SCA, however, they remain unknown in many cases. Although there is no treatment, recent scientific advances have illuminated mechanisms of pathogenesis and potential gene therapies to help patients with SCA. My project in the Raskind Lab contributes to this research by attempting to identify the causal gene for a family with a novel form of autosomal dominant SCA. Whole exome sequencing is currently being conducted on the DNA of three affected members of the family. From the exome sequencing, we will receive all the genetic differences in the protein-coding region from a reference sequence in any of these three subjects; we will first search for variants with genes known for SCA. I will then begin the process of choosing candidate variants for further analysis. I am choosing them by first filtering for variants that are heterozygous in all three exomes and have a prevalence of less than 0.01% in genetic databases and then prioritizing the remaining variants based on the type of mutation, model-predicted effect of the variant, and relevance of the gene function to SCA. For each chosen candidate variant, I will amplify and sequence the DNA from each family member to determine whether it co-segregates by being present in all those who are affected and absent from those who are not. Once a co-segregating variant is identified, other studies will be conducted to support its causality. My research will contribute to our understanding of SCA and neurodegenerative disorders.
- Presenter
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- Jongsuk (Andrew) Choi, Sophomore, Chemical Engineering , Bioengineering , Edmonds Community College
- Mentor
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- Billy D. Jones, Physics, Edmonds Community College
- Session
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- Commons East
- Easel #75
- 11:00 AM to 1:00 PM
Chaos refers to dynamical systems that are exponentially sensitive to their initial conditions. While the sensitivity of the initial conditions of a chaotic system results in unpredictable long-term behavior, the global nature of a chaotic system often plays an important role for predicting its subsequent behavior. Using the logistic map (one of the simplest chaotic systems) and its Lyapunov exponents (a measure of the degree of chaos), I explore the pattern and stability of the high-order periods—one of the distinct global characteristic features of the logistic map—using Matlab. In this study, the simulations show a new pattern of repeating odd-cycle periods stemming from the 3-period cycle: a symmetric doubling cascade of odd-number periods in the chaotic phase of the map which are independent of their initial conditions. From further exploration of the even-cycle periods, a more complex ordered pattern of the whole number period cycles was found and it was found that the stability of higher periods in the chaotic region is highly dependent on their initial conditions. The closer the initial condition is to 0.5, which is the superstable fixed point of the logistic map, the more the stable high-periods are formed within the limited set of iterations. The discovery of the new ordered pattern and the stability of the whole-number periods in the chaotic phase of the logistic map can be used to predict the stable states of growth of a population model in its chaotic phase, and can be used for population studies in which the initial conditions are known only approximately. This has ramifications for mathematics, population biology, chemistry, physics, and the social sciences.
- Presenters
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- Kevin K. Chu, Senior, Anthropology: Medical Anth & Global Hlth
- Summer A. Godfrey, Junior, Anthropology: Medical Anth & Global Hlth
- Celeste C. Le, Junior, Anthropology
- Zachary Taylor Dietz, Junior, Anthropology
- Mentors
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- Holly Barker, Anthropology
- Randizia Crisostomo, Interdisciplinary Arts & Sciences (Bothell Campus)
- Session
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- Commons West
- Easel #43
- 11:00 AM to 1:00 PM
How is the representation of Yapese knowledge brought to the forefront of musuem spaces? How is Oceanic knowledge recognized as a way of life, through what Epeli Hau'Ofa draws from interconnectedness between community, family, and beyond the Western concept of Yapese outriggers being represented as: Just a boat? Our reserach dives into the history of the Yapese canoe, the spirituality behind its meaning, how it is constructed, and how the outrigger connects to resources and sustainability. Through interviews done with Yapaese youth and elder within the community, analyzing material culture, and participartory knolwedge through the emerison of Yapese dance, we were able to bring Yapese voice into the display that will be at the Burke Museum. We aimed to connect the modern knowledge we have today with the cultural context surrounding daily Yapese society. The importance behind bridging these two forms of knowledge is to expose and provide a deeper understanding to those who only have access to non-indigenous studies of the Yapese culture.
- Presenter
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- Morgan Marianna Kathleen Clauson, Fifth Year, Nursing UW Honors Program
- Mentor
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- Hilaire Thompson, Biobehavioral Nursing & Health Systems
- Session
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- Commons West
- Easel #28
- 11:00 AM to 1:00 PM
Traumatic brain injury (TBI) afflicts people of all ages, with older adults having the highest rates of TBI-related hospitalizations and deaths among all age groups. Many of the issues and complications that TBI patients face are mediated by the immune response. Aging is a complex process which results in a decline of the immune system due to the altering of cellular production, proliferation and function resulting in an overall decline of immunocompetence. Injury sets off a chain reaction of immune cellular responses, the cell of interest in this project is TH2 cells, which have been shown to play a role in chronic inflammation. The purpose of this study was to explore if the age of an individual influences the TH2 cellular response in relation to traumatic brain injury. The TH2 cells used in the study were collected from younger (aged 21-64) and older (aged 65+) adult participants at < 24hours following mild/moderate TBI and at 3 months post injury. TH2 cells were stimulated with phytohaemagglutinin (PHA) and anti-CD3 and then incubated overnight. They were then analyzed for IL-5 production using the ELISpot assay. The number of cells producing IL-5 were counted, in triplicate, and the mean was taken to determine cellular response when stressed. The results were compared to determine if there is a difference between cytokine release amongst younger and older adults who experience TBI. By having a better understanding of how TH2 cell function is affected by age, we are exploring if overall outcomes following traumatic brain injuries are related to differential immune responses. This knowledge can potentially assist in identifying strategies to improve clinical outcomes.
- Presenters
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- Nina Martha Cole, Fifth Year, Nursing UW Honors Program
- Ann Phuong Thi Nguyen, Senior, Nursing, Public Health-Global Health UW Honors Program
- Mentor
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- Josephine Ensign, Psychosocial & Community Health
- Session
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- Commons West
- Easel #34
- 11:00 AM to 1:00 PM
According to a January 2017 Point-in-Time count, there were over 11,000 individuals experiencing homelessness in the Seattle/King County region, with approximately 30% of those individuals under the age of 25. The University District of Seattle has been designated as an area needing special attention and increased funding to support homeless youth and young adults. Our proposal is to create an urban community café (The Doorway Café) to bridge the strengths of the University District with the social, legal, and health care needs of local homeless and food insecure youth in one centralized location. We predict that the creation of a navigation center/café will allow for an improved system of integrated services, ultimately leading to housing security and improved health outcomes. We conducted a qualitative study consisting of twenty in-depth, semi-structured interviews with homeless youth in the University District. Interviews were recorded, transcribed, and thematically analyzed to highlight data pertaining to personal lived experiences of homelessness, basic needs, and services to integrate into The Doorway Café. Preliminary thematic analysis suggests that having stable housing is a necessary prerequisite for youth and young adults to care for their other basic needs, such as health care. Interviewees expressed that the most successful café would feel safe and the resources offered would be low-barrier. The results of our research inform the services The Doorway Café should offer based on the responses of local homeless youth. Future research should explore the role that The Doorway Café has in continuity of services and in increasing housing stability among youth in the University District.
- Presenter
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- Ella Conway, Senior, Ocean Research College Academy , Everett Community College
- Mentors
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- Ardi Kveven, , Everett Community College
- Josh Searle, , Everett Community College
- Robin Araniva, Ocean Research College Academy, Everett Community College
- Session
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- Balcony
- Easel #106
- 11:00 AM to 1:00 PM
Eelgrass, Zostera marina, is a critical nursery for numerous marine organisms in Puget Sound. A variety of fish species benefit from eelgrass ecosystems, using the blades of sea grass as anchor points to ensure the safety for eggs through larval fish stages. This study compared larval fish densities in eelgrass beds versus offshore from the eelgrass sites. Higher numbers of larval fish are expected to be found in samples collected within eelgrass beds rather than those collected further offshore. A variety of local fish species are expected to be found both within and outside of the eelgrass beds, including forage fish and rockfish. Samples were at three sites of eelgrass beds located in the Possession Sound in Puget Sounds’ Whidbey Basin. The samples were collected once a month from December to March with a 500-micron net deployed for three minutes at speed of 1 knot at a depth of 2 to 3 meters below the surface directly over the eelgrass bed and repeated offshore from the site. After collection, the larval fish were extracted and sent to the Shoreline Community College Laboratory for DNA barcoding to allow for species identification. Preliminary data indicates that higher numbers of larval fish were present within eelgrass beds as opposed to the offshore areas. A greater understanding of the important role that these eelgrass ecosystems play as nurseries for larval fish is necessary to provide context and further reason for conservation efforts and general awareness of human impact on these lively nearshore environments. Identification of the larval fish species that inhabit eelgrass beds provides a greater understanding of these species’ preferred laying conditions.
- Presenter
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- Irene Cruz Talavera, Senior, Anthropology: Medical Anth & Global Hlth, Microbiology Mary Gates Scholar
- Mentor
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- Daniel Promislow, Biology, Pathology, University of Washington School of Medicine
- Session
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- MGH 241
- Easel #163
- 11:00 AM to 1:00 PM
Alzheimer’s Disease (AD) is a progressive brain disorder that results in middle to late life dementia. AD, the most common form of dementia, is the sixth leading cause of death in the United States, and the third leading cause of death for older people over 65 years of age. AD is pathologically characterized by the accumulation and aggregation of an alternatively spliced amyloid-beta (Aβ) and hyperphosphorylated tau, which lead to the formation of neuritic plaques and neurofibrillary tangles (NFT’s) in the brain and ultimately to decreased neural function and cell death. Previous studies indicate that the extent to which an individual is affected by the interaction of these proteins and the severity of AD is largely influenced by genetic variation. However, the specific genes involved, their regulation and expression remain largely unknown. Our ongoing project explores the genetic variation underlying Drosophila susceptibility to severe eye cell degeneration caused by human Aβ and tau. We express Aβ and tau in the fly eye through the UAS-GAL4 system to create our AD model Drosophila, and cross them with a panel of flies (the Drosophila Genome Reference Panel, DGRP) that allows us to map natural genetic variation for resistance to Aβ and tau. Our preliminary results show significant variation in neuronal eye cell degeneration among DGRP lines, implying that neurodegeneration would also differ between DGRP lines if Aβ and tau were expressed in the nervous system. Based on current progress, this new project will continue exploring variation in DGRP lines, but this time we will express them in the fly brain. I will measure how different genotypes shape the effect of brain-specific Aβ and tau on lifespan and protein aggregation, and will use Genome Wide Association Studies to identify single nucleotide polymorphisms associated with variation in expression of Aβ and tau.
- Presenters
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- Aleina Catherine Cudnofskey, Senior, Biology (Physiology)
- Dustin Kramer, Senior, Biology (Physiology)
- Mentor
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- Sharlene Santana, Biological Sciences, Burke Museum
- Session
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- MGH 241
- Easel #141
- 11:00 AM to 1:00 PM
Functional morphologists examine the anatomy of organisms to elucidate how they are adapted to various habitats and behaviors. These type of studies have also led to intense research and speculation about the specific behaviors associated with the morphologies of now extinct species. Can we predict the hunting behavior of a predator from its skeletal morphology? In this study, we examined both femur morphology and the calcaneus to femur length ratios in extant members of Carnivora, with the goal of finding a link between these traits and a species’ hunting strategy. We categorized hunting strategies from videos and previous accounts by taking note of the presence and timing of each species’ attacks of live prey. To quantify hind limb bone morphology across species with different hunting strategies, we measured the length of the calcaneus and femur, and the minimum bone diameter of the femur. Our sample included 12 extant species from several hunting strategies. We expect to find femurs with a greater minimum diameter in species that have strategies that require greater muscle force during the prey capture period. This type of anatomy would provide the support necessary for attachments of larger running muscles. For femur to calcaneus ratio, we expect to find a lower value in species with longer chase periods in their hunting strategy. This would be due to a greater need for longer strides and contact time to reach the speeds necessary to catch their prey. This study will allow scientists to more accurately predict the hunting behaviors of extinct animals based on measurements that can be easily obtained from an intact fossil.
- Presenter
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- Tevan Curtis, Sophomore, Mechanical Engineering, Pierce College
- Mentor
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- Elysia Mbuja, Biology, Pierce College
- Session
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- MGH 241
- Easel #134
- 11:00 AM to 1:00 PM
Wheat Take-All Disease (TAD) is caused by the effect of the soil-based fungus Gaeumannomyces graminis var. tritici on wheat crops. We as Pierce College Biology students in conjunction with other local institutions sequenced part of a strain of Pseudomonas fluorescens, L5.1-96 (P.f. L5.1-96), because of its known trait to supercolonize soil. Sequencing was initially achieved at Pierce College by linear sequencing reaction before being completed by Sanger Sequencing at Washington State University. Resulting data was then interpreted using FinchTV, and the NIH BLAST and tBLAST programs. P.f. L5.1-96 produces 2,4-diacetylphloroglucinol (DAPG) which is a key component in Take-All Decline, the natural suppression of the fungus after several generations, in soils. Using Escherichia coli bacteria to clone 1.7kb long plasmids of the P.f. L5.1-96 strain, the plasmids were amplified and purified in order to discover genes relevant to the empirical objective to better understand this bacteria. Our DNA insert, the portion of data analyzed from FinchTV by cross reference with BLAST, aligned with several important enzymes related to antibiotic resistance and toxin metabolism, both of which could be key to supercolonization of soil. In addition, a phylogenetic relationship has been established using BLAST between P. brassicacearum, P. chlororaphis, and our strain of Pseudomonas fluorescens L5.1-96. The findings of the research could provide greater insight into what constitutes an effective biological control agent against TAD in Washington, and possibly other affected areas of the world.
- Presenter
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- Rebecca Dorothy (Becky) Darrow, Junior, Bioengineering Mary Gates Scholar
- Mentors
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- Buddy Ratner, Bioengineering
- Le Zhen, Bioengineering, Chemical Engineering, Neurological Surgery
- Session
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- MGH 241
- Easel #129
- 11:00 AM to 1:00 PM
Spinal cord injury (SCI) currently affects approximately 285,000 people in the U.S. with more than half experiencing incomplete tetraplegia. Currently, there are no effective treatments, leaving patients with devastating lifelong ailments. This project investigates a new implant to aid treatment and recovery after SCI by mimicking the mechanical properties of the native spinal cord tissues and improving neuro-regeneration through modulation of macrophage phenotypes. Results previously produced in the Ratner Lab for engineered biomaterials research show that scaffolds with a specific porous structure create pro-healing and anti-scarring effects. Based on these results, we hypothesize that when the porous structure is paired with suitable mechanical properties, the macrophage response will be strongly indicative of a pro-healing environment. Proper mechanical properties have been achieved through variation in the chemical composition, water content, and methods of synthesizing the scaffold to preserve the microstructure. Now, the stiffness is tunable over several orders of magnitude and has been matched to the softness of spinal tissue. The scaffold also demonstrates very good biocompatibility, verified through cytotoxicity and endotoxin tests, as well as in literature. To test how cells interact with the implant, I seeded macrophages into the 3D structure and observed the response. If the cells integrate healthily into the softer 3D scaffold, this implies that the material may be a useful tool in treating SCI. To further test this, our collaborators in the Hofstetter Lab will implant the material in rats to investigate the influence on SCI recovery.
- Presenter
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- Maria (Rosario) del Rosario Ramirez Mata, Junior, Medical Laboratory Sciences, Heritage College McNair Scholar
- Mentor
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- Robert Kao, Biology, Heritage University
- Session
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- MGH 241
- Easel #146
- 11:00 AM to 1:00 PM
In educational and research settings, Tetrahymena thermophila is a fresh water protozoan that serve as an excellent model organism for elucidating phagocytosis and ciliary motion. As a step towards determining how Tetrahymena thermophila adapt to environmental changes, we developed new, practical, inexpensive approaches that label organelle changes in fixed and living cells. To address our research objective, we pursued the following experimental approaches: One, a novel heat fixation method was used to fix Tetrahymena thermophila prior to doing a Wright stain and different conditions of Wright stain were performed and observed with a light compound microscope; two, to observe cells that have loss of plasma membrane integrity, we pre-incubated 20µM of Sytox green dye for three hours and observed for green fluorescence in the macronucleus (MAC) and micronucleus (MIC). We used a new portable battery-operated inverted fluorescence microscope designed by Dr. Rebecca Richards-Kortum’s research group and Cellcams for acquiring images and time-lapse movies. We found that heat fixed Tetrahymena thermophila followed by a Wright stain labeled organelles at different stages of their life cycle. We conclude that using Wright stain and Sytox green fluorescence dye in combination with heat fixation are novel low-cost applications that allow phenotypic analysis in Tetrahymena thermophila. In the future, these useful approaches can be applied broadly into many lab inquiry settings, such as toxicology and molecular genetics.
- Presenters
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- Naomi Amish (Naomi) Desai, Junior, Pre-Sciences
- Pegah Hamedi, Senior, Psychology Undergraduate Research Conference Travel Awardee
- Paniz Sisan Barzegari, Senior, Biochemistry
- Mentor
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- Brian Wasko, Pathology
- Session
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- MGH 241
- Easel #158
- 11:00 AM to 1:00 PM
The Kaeberlein laboratory utilizes the budding yeast Saccharomyces cerevisiae to study aging, a progression characterized by the gradual deterioration of cellular components and bodily functions. Aging is a progression every organism eventually undergoes, and by better understanding the molecular mechanisms behind it, we can determine how to delay its progression and increase our healthspan, the portion of our lifespan in which we are healthy and free from serious disease. S. cerevisiae functions as an effective model organism because it contains many conserved biological processes, making lifespan simple and fast to measure. The replicative lifespan assay (RLS) is used to quantify the lifespan of the yeast. Individual yeast cells undergo asymmetric mitotic division producing a daughter cell that is distinctively smaller than the original mother cell. Yeast are incubated on growth promoting plates, and the yeast produce daughter cells that are microdissected, counted, and moved away. The cycle repeats until the original mother cell can no longer produce a daughter. The total number of daughter cells produced by individual mother cells is then used to understand the effect of the gene on the lifespan of the yeast. This technique aids in developing models that can be used to understand the conserved biological pathways that influence longevity. Aging is an underlying risk factor for many non-communicable diseases such as Alzheimer’s Disease, Cancer, and heart disease. Our laboratory has performed thousands of gene knockouts on S. cerevisiae and has identified several genes that modulate replicative lifespan. This research is focused on identifying the genes that play a role in reducing the rate of aging to delay the onset of age associated diseases. By understanding how specific genes play a role in aging, we can apply this research to other organisms, with the ultimate intent of increasing the length of a healthier human life.
- Presenters
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- Hieu Ngoc Do, Senior, Biology (Molecular, Cellular & Developmental) NASA Space Grant Scholar
- Frederick J. (Frederick) Huyan, Sophomore, Pre Engineering
- Gloria Kim, Freshman, Pre-Sciences
- Hunter James Robinson, Sophomore, Chemical Engineering
- Alexander James Nicolas (Alex) de Wolff, Junior, Biology (General)
- Connor T Weiss, Sophomore, Pre Engineering
- Mentor
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- Alberto Carignano, Electrical Engineering
- Session
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- Commons East
- Easel #58
- 11:00 AM to 1:00 PM
Water pollution is a serious problem that not only threatens wildlife, but also the health and safety of human populations around the world. While the commonly held perception is that water pollution only affects vulnerable groups in developing countries, the 2014 water crisis in Flint, Michigan is a stark reminder that even developed nations are not impervious. Given the scope and weight of this problem, there has yet to be an accurate and affordable way to reliably test for heavy metals and other water-soluble contaminants. Current solutions such as handheld digital instruments can be expensive and require calibration and electricity, making them less practical in low-resource settings. Test strips, while deployable, are often inaccurate. Hence, our aim is to create an inexpensive, deployable yeast-based diagnostic tool that can detect various water pollutants with high sensitivity and report results with a fluorescent or color output. At the beginning stages of our project, we are using Next-Generation RNA Sequencing and experimenting with various analysis techniques to screen for genes in Saccharomyces cerevisiae that exhibit a unique and differential expression profile after exposure to a particular contaminant. For now, we are limiting the scope of our research to zinc, copper sulfate and caffeine because there are existing gene sets in literature for us to reference, but as more data are acquired, we hope to apply this pipeline to a wider range of chemical pollutants, including pesticides, toxins and hormones.
- Presenter
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- Danilo Dubocanin, Junior, Microbiology, Biochemistry UW Honors Program
- Mentor
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- Parthiv Haldipur, Pediatrics, Seattle Children's Research Institute, Seattle Children's Research Institute
- Session
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- MGH 206
- Easel #169
- 11:00 AM to 1:00 PM
Heterotopia are organized structures consisting of mixed elements of neurons, glia and neuronal progenitors arranged in an architectural pattern inappropriate to the considered tissue. Heterotopia are observed in pathological preparations of the cerebral cortex and the cerebellum as a feature of many neurological disorders yet the mechanisms driving their development remain unclear. We have analyzed 28 Dandy Walker Malformation (DWM) human fetal cerebella and found that more than 40% of cases contain heterotopia. DWM is the most common structural birth defect of the human cerebellum and is characterized by hypoplasia and foliation defects. A subset of cases are caused by loss of FOXC1, a transcription factor expressed in the mesenchyme adjacent to the developing cerebellum. We previously reported that in mice, loss of FOXC1 causes loss of the mesenchyme-secreted factor SDF1-alpha. Further, loss of SDF1-alpha is sufficient to cause cerebellar heterotopia, highlighting the importance of mesenchymal signaling in the maintenance of the highly stereotypical laminar architecture of the mature cerebellum. We hypothesized that granule neuronal progenitors (GCPs) adjacent to the mesenchyme are the primary cellular target of SDF1-alpha mesenchymal signaling and thus, the primary cell type driving heterotopia formation. To test our hypothesis, we specifically deleted the SDF1-alpha receptor from just GCPs using a Cre-loxP genetic scheme in mice. We determined that loss of SDF1-alpha in just this one cell type caused their premature migration into the developing cerebellar anlage and secondarily caused other cerebellar cell types to form structured heterotopia. We also observed defects in cerebellar foliation in the treatment group. Our data further highlights the importance of SDF1-alpha dependent mesenchymal signaling in cerebellar development and identifies heterotopia as a new phenotype in DWM.
- Presenter
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- Madison Claire Dunmore, Senior, Nursing Mary Gates Scholar, UW Honors Program
- Mentor
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- Hilaire Thompson, Biobehavioral Nursing & Health Systems
- Session
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- Commons West
- Easel #16
- 11:00 AM to 1:00 PM
The recent launch of bike-share programs in Seattle has brought to light a pertinent issue in public health that will continue to grow as their distribution increases across the city. While bike-shares promote physical activity and provide an alternative commute option, they also seem to be associated with decreased helmet use, which is associated with an increased risk of head injuries. The purpose of this study is to explore the issue of helmet use among bike-share riders on the University of Washington campus. By implementing a campus-wide cross-sectional survey, I gained important information about how Seattle's unique bike-share and helmet issue can be addressed on UW campus in the future. Participants in this study included UW students, faculty, and staff who were recruited by convenience sampling through email distribution. The survey was written with Catalyst WebQ online and had 21 questions evaluating participants general bike and helmet utilization habits on campus, barriers to helmet use with bike-shares, and awareness of Seattle's mandatory helmet law. I anticipate results to confirm a decrease in helmet use among bike-share users and reveal several barriers to wearing a helmet with bike-share bicycles. I will utilize the information from this research study to create a targeted helmet promotion campaign on UW campus in the Spring. In addition, this valuable information will be shared with local public health officials to inform health promotion endeavors over the coming years as bike-share programs continue to expand in the Seattle area.
- Presenter
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- Myiesha Earl, Junior, Mechanical Engineering, Portland State University McNair Scholar
- Mentor
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- Elliott Gall, Mechanical and Materials Engineering, Portland State University
- Session
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- Commons East
- Easel #72
- 11:00 AM to 1:00 PM
One potential benefit of vegetated building rooftops, called ecoroofs or green roofs, is reductions in outdoor air pollution levels. However, there is little empirical data on real roofs that would enable evaluation of air quality impacts of ecoroofs. We developed and tested a low-cost dynamic flux chamber for characterizing ozone (O3) deposition on the vegetation and substrate typically used for ecoroofs. Ozone flux measurements were determined in the lab using ecoroof substrate; the next phase of testing uses ecoroof vegetation called sedums. To measure flux, a 6.59 L acrylic chamber is injected with ozone to elevate chamber O3 levels. Ambient air is drawn through the chamber by a vacuum pump. The decay of O3 levels are measured by an ozone monitor. Separate tests are conducted using an inert tracer gas, CO2, to measure the chamber air exchange rate. Preliminary results show the chamber had an air exchange rate of 0.17 ± 0.023 min-1. Minimization of errors between O3 measurements and mass balance models yielded deposition velocities (vd) for both the acrylic chamber and substrate, which were 0.16 m/hour and 5.66 m/hour respectively. Future experiments will characterize substrate and vegetation across a range of temperature, moisture content, and lighting conditions. These results will constrain models of rooftop pollutant dynamics, enabling estimates of impacts of rooftop vegetation on both urban and indoor air quality.
- Presenter
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- Nolan Michael Eldridge, Senior, Psychology
- Mentors
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- Anne Fairlie, Psychiatry & Behavioral Sciences
- Tracey Garcia, Psychiatry & Behavioral Sciences
- Jason Ramirez, Psychiatry & Behavioral Sciences
- Session
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- Balcony
- Easel #87
- 11:00 AM to 1:00 PM
Research has shown that drinking motives (or reasons for consuming alcohol) are strong predictors of alcohol use; moreover, enhancement and social motives are among the strongest predictors of alcohol use. Given limited research to date, the purpose of the current study is to examine how drinking motives relate to drinking alone and also to drinking with friends. College student drinkers ages 18-24 were recruited for an ongoing study. To be eligible, participants had to report alcohol use two or more days a week and one or more occasions of heavy episodic drinking in the last two weeks. Baseline data on alcohol use, drinking motives, and drinking context were used for the current analyses (N = 292 to date; 52% female, 71% Caucasian, mean age = 20.17 years). Participants were asked to report how often they drank alone and with friends on a scale from “never” to “daily or almost daily.” In addition, they were asked to report motives for drinking on each of five subscales using response options from “almost never/never” to “almost always/always." The current study will use regression analyses to test associations with four of the subscales: coping-anxiety, coping-depression, enhancement, and social motives. We hypothesize that higher coping motives will be associated with being more likely to report drinking alone and with friends. Additionally, we hypothesize that higher social and enhancement motives will be associated with being less likely to report drinking alone and more likely to report drinking with friends. Results from this study will provide a better understanding of why people decide to drink and in which different social contexts, thus providing valuable information to guide interventions on how to better incorporate drinking motives and social context.
- Presenters
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- Maria Engel, Senior, Nursing UW Honors Program
- Kevin Donghyuk Lee, Fifth Year, Nursing UW Honors Program
- Mentors
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- JoAnne Whitney, Biobehavioral Nursing & Health Systems
- Dawn Corl, Nursing, Harborview Medical Center
- Session
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- Commons West
- Easel #32
- 11:00 AM to 1:00 PM
Inpatient hypoglycemic events less than 50 mg/dL are prevalent among hospitalized patients and can lead to poor health outcomes, including increased mortality. Some studies indicate that among hospitalized patients, older individuals, patients with co-morbidities, and those who are admitted to intensive care units are the most common inpatient populations to suffer from hypoglycemic events. Studies also suggest that inpatient hypoglycemic events are more often medication attributable in contrast to physiologic causes. The aims of this quantitative study are to: 1) determine the root causes that lead to hypoglycemic events in the hospital setting, 2) describe patterns in chart documentation related to hypoglycemic events, and 3) identify measures to attain effective prevention of hypoglycemia. Specifically, this study examines the time range between the hypoglycemic event measurement and the blood glucose measurement prior to the event to determine if tighter glycemic control results in improved patient outcomes, the use and documentation of rescue medications after a hypoglycemic event, and the presence of dietary intake charting in the medical record prior to the hypoglycemic event. We collaborated with the glycemic team at a local medical center to collect data drawn from patient medical records. Patient medical records were selected if they had experienced a hypoglycemic event less than 50 mg/dL between March 2017 and June 2017. Analysis used descriptive measures to identify patterns and inconsistencies in the data derived from the medical charts related to potential root causes of hypoglycemia. Using a systematic approach to identify the root cause of inpatient hypoglycemia informs future development of tools and policies to reduce the incidence of inpatient hypoglycemia in the future and improve patient outcomes. The expected results of this study attributes the hypoglyemic events to infrequent and inaccurate diet intake documentation, and longer time intervals between blood glucose monitoring.
- Presenter
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- Natalia Esquivel Silva, Senior, Education, Communities and Organizations McNair Scholar
- Mentor
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- Cassady Glass Hastings, Education
- Session
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- Commons West
- Easel #22
- 11:00 AM to 1:00 PM
The student population in higher education settings continues to become more diverse by increasing the number of Hispanic, Asian/Pacific Islander, Black, and American Indian/Alaska Native students, but the college graduation rate continues to be lower compared to their white counterparts, except for Asian students (National Center For Education Statistics, 2015-2017). The purpose of this research is to understand if student's academic self confidence correlates with various student identities. The principal research questions for this study are: 1) Is there a correlation between student academic self confidence and their racial/ethnic identity? 2) Is there a correlation between student academic self confidence and whether they are disabled or not? 3) Is there a correlation between student academic self confidence and their socioeconomic status? 4) Is there a correlation between student academic self confidence and whether they’re first generation or not? 5) Is there a correlation between student academic self confidence and their gender? A secondary data analysis will be conducted. This analysis will test the correlation between student's academic self confidence and their various identities. I hypothesize that there is a positive correlation between students having academic self confidence and identifying with the dominant student population. Furthermore, I predict a positive correlation between students not having academic self confidence and identifying with the minoritized student population. Results from this study can be used by higher education professionals to build identity-conscious leadership development programming in order to promote student self confidence and have a positive impact on graduation rates of students of color.
- Presenter
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- Camisha Fagan, Senior, English, Sociology, University of Nevada Las Vegas McNair Scholar
- Mentor
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- Anna Smedley-Lopez, Sociology, University of Nevada, Las Vegas
- Session
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- Commons East
- Easel #83
- 11:00 AM to 1:00 PM
Microaggressions are reoccurring derogatory messages that degrade one’s identity. While invisible and unknown to many, they remain visible and apparent to those impacted by them. The research questions for this project are: (1) What microaggressions do Queer Black men experience within larger society? (2) To contrast with larger society, what microaggressions do Queer Black men experience within Black communities? Using in-depth interviews, I will examine the intersectional microaggressions that Queer Black males experience in their own community and in larger society. After conducting my interviews, I will adopt Derald Wing Sue’s taxonomy of microaggression themes to translate the underlying messages behind delivered microaggressions. The results in this study will aid in addressing a gap within intersectional microaggression literature by documenting how Queer Black males experience these muted, normalized insults and invalidations in society.
- Presenter
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- Colette Anne Felton, Senior, Biochemistry Mary Gates Scholar, UW Honors Program
- Mentors
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- Dana Miller, Biochemistry
- Frazer Heinis, Biochemistry
- Session
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- MGH 241
- Easel #162
- 11:00 AM to 1:00 PM
Hydrogen Sulfide (H2S) has potent physiological effects. In large doses, it is a deadly toxin, but in small doses, it acts as a signalling molecule with a wide range of physiological effects. The worm C. elegans is a good model organism for the study of H2S because of its short lifespan, ease of genetic manipulation, and ease of maintenance. In C. elegans, H2S induces a stress response pathway, coordinated by the HIF-1 and SKN-1 transcription factors, that plays a role in extending lifespan and improves resistance to various stresses. A previous screen in our lab identified several mutations that suppress the requirement of hif-1 for survival in H2S by increasing SKN-1 activity. One SKN-1-upregulated transcript, rhy-1, was sufficient to rescue hif-1 lethality in H2S. RHY-1 is an integral membrane protein that is localized in the hypodermis, intestine, and some head neurons of C. elegans. It has predicted acyl transferase activity, but its specific molecular function is unknown. The role of RHY-1 as a hif-1 lethality suppressor indicates that it acts in a hif-1 independent H2S response pathway. The goal of this study is to better understand the role of RHY-1 in this hif-1 independent response pathway. In order to identify its binding partners and elucidate its role in cellular signalling, we performed immunoprecipitation of RHY-1 for use in tandem mass spectrometry. This approach allows for the identification of its binding partners under baseline and H2S stress conditions, which may further define the role of RHY-1 in the stress response to H2S. Defining the role of RHY-1 will enhance our understanding of how the H2S stress response leads to increased lifespan in C. elegans. Since several members of this pathway are well conserved in humans, this work may provide a mechanism for the therapeutic use of H2S in human medicine.
- Presenter
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- Chey (Cheyenne) Flinkman, Junior, Pre-Major, UW Bothell
- Mentor
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- Seungkeun Choi, Electrical Engineering (Bothell Campus), Science, Technology, Engineering & Mathematics (Bothell Campus)
- Session
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- Commons East
- Easel #66
- 11:00 AM to 1:00 PM
PEDOT:PSS is a conducting polymer that is very promising as the next-generation materials for the transparent electrode. An organic electrochemical transistor (OECT) can control the amount of current flow in a conductive channel through an electrochemical reaction in the PEDOT:PSS channel assisted by an applied electric potential at a gate electrode. PEDOT:PSS-based OECT devices are widely used for biological and chemical sensing applications due to their high sensitivity, low cost, flexibility and lower operating voltage, typically less than 1 V. In addition, OECT has shown improved sensing performance when the gate electrode is modified with biocompatible polymers, such as Nafion. Nafion can lead to a more highly selective OECT-based sensor. A key feature of OECT is that both ions and electrons are used as charge carriers. This is of particular interest and importance for chemical sensors. For example, by combining a proton-conducting electrolyte, a simple Nafion-based OECT humidity sensor can be implemented as Nafion changes its conductivity upon exposure to humidity. In previous work we examined the impact of a double-in-plane gate electrode on OECT performance and found it to have a much higher transconductance. Branching off from that, we now investigate the impact of Nafion on OECT performance. Particularly, we want to investigate whether OECT sensitivity depends on the presence of Nafion film. In order to determine that, we fabricate several devices in which all transistor electrodes are in the same plane. High conductivity PEDOT:PSS is combined with Nafion in order to create a channel between source and drain. Once fabrication is complete, we plan to test and characterize the OECT’s to determine whether OECT performance is optimized with Nafion film. This work is important as it will allow the development of highly sensitive portable OECT arrays for various chemical/biological sensing applications.
- Presenter
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- Mason Aaron Friedman, Senior, Atmospheric Sciences: Meteorology
- Mentors
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- Dargan Frierson, Atmospheric Sciences
- Rachel White, Atmospheric Sciences
- Session
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- Commons East
- Easel #77
- 11:00 AM to 1:00 PM
Using a climate model, we changed the Earth’s rotation direction from counter-clockwise to clockwise, keeping the period of 24 hours the same. The purpose of this experiment was to better understand how various climate variables are affected by Earth’s rotation. The results give insight into patterns of today’s climate, and help to frame discussion of future climate changes. The model used was GFDL CM2c, a course climate model that utilizes coupled ocean-atmosphere physics. The model was run for a 100-year control simulation, followed by a 700-year reverse rotation simulation. Model output revealed drastic changes in many of Earth’s climate variables. The main effect was that atmospheric flow pattern switched directions, with westerlies becoming easterlies, and vice versa. Because of this, ocean currents switched to opposite sides of ocean basins and there was a new distribution of sea surface temperature. As a result of these changes, global precipitation and temperature patterns were greatly affected. Some dry areas, such as the Sahara Desert, were now wetter, and some wet areas, such as the southeastern U.S., were now deserts. Albedo and ice coverage increased in the Northern hemisphere, possibly due to the ocean circulation changes. Unexpectedly, the thermohaline circulation weakened significantly in the Atlantic Ocean while a similar circulation developed and strengthened in the Pacific Ocean. These results are fascinating and important for testing current knowledge of the climate system.
- Presenter
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- Esmeralda Garcia, Junior, Biomedical Sciences, Heritage College McNair Scholar
- Mentors
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- Melvin Simoyi, Biology, Heritage University
- Pedro Chavarria, Environmental Science, Heritage University
- Session
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- MGH 241
- Easel #151
- 11:00 AM to 1:00 PM
Fetal alcohol spectrum disorder (FASD) is considered one of the most prevalent forms of preventable mental retardation resulting in life-long behavioral and intellectual impairments. Many of the neurobehavioral deficits may not be apparent until the educational years and are typically not recognized as a result of fetal alcohol exposure (FAE). The hippocampus has been shown to be particularly susceptible to the adverse consequences of FAE in both rodent and non-human primate models. In our model of naturalistic and moderate FAE in vervet monkeys (Chlorocebus sabeus) we have previously shown diminished stem cell proliferation in the dentate gyrus in neonatal subjects. Here we expand on previous studies to test the hypothesis that FAE diminishes the number of immature neurons in the early differentiation period. Pregnant vervets were allowed to drink the equivalent of 3-5 standard drinks four times a week during the third trimester and subsequently sacrificed at 3 months of age which corresponds to the end of the rapid post-natal neurogenesis period. Serial sections were immunostained with nestin, a putative marker for early neuronal differentiation. Preliminary analysis suggests a decrease in nestin-positive neurons in the dentate gyrus of FAE subjects. Although the immature neuronal population is susceptible to FAE, it may also be the key to therapeutic intervention aimed at reducing the impact of FAE-induced neurological impairment.
- Presenters
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- Elizabeth George, Senior, Industrial Engineering
- Thanika Painruttanasukho, Junior, Industrial Engineering
- Mentor
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- Zelda Zabinsky, Industrial Engineering
- Session
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- Commons East
- Easel #71
- 11:00 AM to 1:00 PM
Immunization for children is a global health priority as 19.5 million children are not vaccinated every year. According to the World Health Organization (WHO), the coverage of global immunization of diphtheria–tetanus–pertussis-3 (DTP-3) has increased to 78%, but the African region has been constantly falling behind. Owing to the high cost of maintaining immunization supply chains (iSC), optimizing the distribution of vaccines is a high priority. The subsequent goal of this research is to optimize the healthcare of children in Africa through the distribution of time-sensitive vaccines whilst utilizing limited resources (e.g., vaccines, vehicles, refrigerators). This research will focus on the transportation of vaccines to rural villages, sometimes referred to as last mile logistics. The optimization model will consider two objectives. The first objective is to maximize the number of children who receive vaccines. The second objective is to minimize the overall effort of achieving scheduling and routing for last mile distribution of vaccines. A linear program will be presented and solved using the CPLEX optimizer. Specific case studies in the literature will be used as inputs to the linear program. Anticipated results are alternative transportation routes and modes (e.g. car, bicycle, walk, boat) to local health facilities and improvement of their associated performance in terms of number of children receiving vaccines in a timely manner. This work is important because it can improve vaccine distribution, and manage available resources efficiently. This work also has applications to other last mile logistics to deliver time sensitive goods, such as perishable food, to further optimize goods received by those in need amidst numerous constraints.
- Presenter
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- Kirsten Puanani Gilchrist, Senior, Neuroscience Mary Gates Scholar, UW Honors Program
- Mentor
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- Steve Perlmutter, Physiology & Biophysics
- Session
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- MGH 241
- Easel #142
- 11:00 AM to 1:00 PM
Spinal cord injuries cause damage to the corticospinal tract which can lead to deficits in coordination and movement. This greatly alters and may decrease an individual’s quality of life. This project utilizes optogenetics to trigger action potentials in neurons, and tests the hypothesis that activity can promote regeneration of corticospinal connections. Co-cultured mouse spinal and cortical neurons serve as an in vitro model system. The spinal and cortical neurons are in separate chambers that are connected by a canal. Cortical cells are transfected with light- activated channels and stimulated with LED lights to trigger action potential firing. The canal connecting the chambers allows for the cortical neurons to form new synapses with the spinal neurons. In order to quantify the results, synapsin, a protein found in presynaptic vesicles, is labelled using immunocytochemistry, allowing us to quantify the number and size of synapses by measuring synapsin-positive puncta. It is expected that cells stimulated with light will show a greater number of synapses compared to those that were not. Different patterns of neuronal stimulation are tested to determine the best parameters for promoting synapse regeneration and strengthening. Once these have been determined, they will be validated in an in vivo rodent model, prior to testing in primates.
- Presenter
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- Daniel Steven (Dan) Godfrey, Senior, Anthropology: Medical Anth & Global Hlth Innovations in Pain Research Scholar, UW Honors Program
- Mentors
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- Dale Langford, Biobehavioral Nursing & Health Systems
- Ardith Doorenbos, Nursing
- Session
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- Commons West
- Easel #14
- 11:00 AM to 1:00 PM
Managing chronic pain is difficult, as pain mechanisms and relief strategies are poorly understood. Chronic pain afflicts many adults nationwide, diminishing functional activity, and quality of life. Recently, opioid therapy has become a treatment option for chronic pain, increasing prescription opioid use and related public health issues. Additionally, pain education among providers, prescribers, and clinicians is generally insufficient. Providers require education in alternate pharmacological strategies, and effective non-pharmacological strategies. Telehealth technologies developed recently can span geographic distance to improve quality of pain care for patients by improving provider knowledge of pain-management. The question remains: is telehealth-based pain education effective in improving provider’s knowledge and management of pain? We hypothesized that clinicians who attend weekly Telepain sessions will demonstrate improvement on their quarterly evaluation of pain-medicine knowledge and confidence, and the KnowPain-12 questionnaire. Providers (N=128) participated in or observed a weekly video-conference, orchestrated by pain specialists representing internal medicine, rehabilitation medicine, addiction medicine, psychiatry, social work, nursing, and anesthesiology. Telepain sessions are divided into two segments: a didactic lecture on a pertinent, evidence-based topic related to pain, and case presentations and discussion by clinicians. Participating providers completed a quarterly questionnaire critiquing the conference, as well as self-report questionnaires related to pain management knowledge (KnowPain-12; mean score of 1-5) and perceived competence (mean score of 1-7). To determine if Telepain attendance led to improvements in pain knowledge and perceived competence, a generalized linear model (GLM) was fit, where KnowPain-12 mean total scores were the outcome variable and Telepain attendance time was the predictor variable. A generalized estimating equation was used. Results of the GLM indicated improved pain knowledge with increased Telepain participation time (coefficient = 0.002, 95% confidence interval = -0.0002, 0.0044, p = 0.08), suggesting that telehealth interventions such as Telepain may be an effective option for delivering advanced provider pain education remotely.
- Presenters
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- Lauren Nicole Goetsch, Senior, Biology (Molecular, Cellular & Developmental)
- Alice Anna Burchett, Sophomore, Pre Engineering
- Chelsea Wan, Sophomore, Pre-Sciences
- Michaela C. Franzi, Freshman, Pre-Sciences
- Katriel Looney, Senior, Bioengineering
- Mentors
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- Alberto Carignano, Electrical Engineering
- Eric Klavins, Electrical Engineering
- Session
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- Commons East
- Easel #60
- 11:00 AM to 1:00 PM
Our current project is one stage in a larger research goal: to build multiple yeast strains capable of detecting toxic water contaminants. We searched for the optimal contamination concentrations for yeast response to obtain robust, accurate RNA sequencing analysis results. This data will then be used to determine which contaminants elicit a strong enough genetic response for promoter attachment. The fluorescent yeast will emit a recognizable signal in this manner, and allow for reliable water assessment without the use of expensive equipment or testing services. Thus, we investigated the optimal times for RNA extraction, when the cells are expressing the most contaminant-induced genes but are still sustaining metabolic processes. To this end, we must consider factors such as contaminant concentration and time after exposure. At this stage, data collection involves the use of a plate reader, which periodically measures absorbance of the yeast solution. Absorbance, which is proportional to population density, is limited by the solution’s carrying capacity. We then generate population trend graphs and identify the greatest instantaneous growth time in each sample. Through repeated experimentation, we compile a spectrum of contaminant types, concentrations, and yeast carrying capacities. Analysis of these growth curves indicate the time of incubation at which RNA expression is ideal for sequencing. Future work will involve identifying additional contaminants of interest and additional modification of our algorithms to obtain more precise, accurate, and meaningful data.
- Presenters
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- Eli Gonzalez-Perez, Sophomore, Biology, Pierce College
- Vince Le Bleu, Sophomore, Chemistry, Biology, Pierce College
- Mentor
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- Elysia Mbuja, Biology, Pierce College
- Session
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- MGH 241
- Easel #133
- 11:00 AM to 1:00 PM
Pseudomonas fluorescens strain L5.1-96 has been known to help combat the wheat take-all fungal pathogen, Gaeumannomyces graminis var. tritici (Ggt). Strain L5.1-96 is maintained in the soil longer than others, so it is known as a supercolonizer, which contributes to the phenomenon referred to as Take-All Decline (TAD). The strain L5.1-96 is a non-pathogenic bacterium which grows in the rhizosphere of plants and produces an antifungal agent known as 2.4-diacetylphloroglucinol (DAPG) causing TAD. The DNA fragment we amplified, sequenced, and analyzed was a perfect match to P. brassicacearum strain BS3663. Through bioinformatics, we also found our fragment matched the genetic code for pyridoxal 5'-phosphate (PLP)-dependent aminotransferase, a co-enzyme which catalyzes the transamination of amino acids to alpha-keto acids. We did not identify new proteins that are responsible for the advantages that this bacterium holds against wheat take-all; although, we did find the best phylogenetic fit for this strain. These findings contribute information to the broader study at Washington State University to investigate whether strain L5.1-96 can be used as a biocontrol agent against wheat take-all.​
- Presenter
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- Jacob Alexander Gross, Senior, Astronomy, Physics: Comprehensive Physics Mary Gates Scholar, UW Honors Program
- Mentor
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- Benjamin Williams, Astronomy
- Session
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- Commons East
- Easel #74
- 11:00 AM to 1:00 PM
High Mass X-ray Binaries (HMXBs) are some of the most physically extreme sources in the universe. They comprise of a compact object such as a black hole or a neutron star, and a high mass companion star. The compact object accretes matter from the companion star and forms an accretion disk of material that has temperatures in excess of ten million degrees Kelvin. This accretion disk then radiates out in the X-ray energy band and allows us to ascertain physical properties for the source. However, the very nature of an HMXB constrains the age of the source to a very high degree--this is because the source needs to be old enough for the compact object to form yet it needs to be young enough for the high mass companion star to still have fusion fuel in its core. In this project, we have created star formation histories at the locations of unknown X-ray emitting objects using optical observations from Hubble Space Telescope. These star formation histories determine if there are stars that have an age consistent with HMXBs present. The age of these unknown sources may be associated with these stars, which means they could be HMXBs. We then looked for star formation histories that have constrained ages consistent with an HMXB to try and give more evidence for an unknown object being an HMXB.
- Presenters
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- Jessica Gudiel-Vielmas, Senior, Nursing UW Honors Program
- Kayla Alyssa Lock, Senior, Nursing UW Honors Program
- Mentor
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- Kerryn Reding, Biobehavioral Nursing & Health Systems
- Session
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- Commons West
- Easel #35
- 11:00 AM to 1:00 PM
The research question for our study is, “Is a component of a multilevel intervention effective in promoting awareness of cardiovascular health and decreasing weight?” Within King County, an almost 10-year-difference in life expectancy exists between low- and high-income areas. While many factors may contribute to this disparity, cancer and cardiovascular disease (CVD) are the leading causes of mortality. Obesity and metabolic syndrome are major risk factors for both cancer and CVD, and disproportionally affects lower income populations. The Women Take Heart (WTH) study is part of a multilevel intervention that spans school, family, and individual levels, aimed at promoting awareness of positive health behaviors. The WTH intervention focuses on teaching women in the Renton community physical and nutritional health information. We hypothesize that targeted, weekly teachings by experts on complex health behaviors will increase health knowledge and decrease participant weight. We will assess the efficacy of WTH through quantitative methods. These include examining pre- and post-intervention values of physical and metabolic measurements, as well as pre- and post-questionnaire responses. We anticipate the results of our study will show increased health empowerment, increased knowledge of positive health behaviors, and decreased biologic markers of metabolic syndrome. If this intervention is effective, it could be implemented to address the high rates of obesity in low-income communities, which in turn could lower rates of cancer and CVD.
- Presenter
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- Leigh Haldeman, Fifth Year, Nursing Mary Gates Scholar, UW Honors Program
- Mentor
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- Marla Salmon, Nursing
- Session
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- Commons West
- Easel #36
- 11:00 AM to 1:00 PM
The population of refugee and immigrant families in Seattle's Lake City neighborhood has grown significantly in the last decade. Despite the health challenges these families often face, no one has performed a systematic assessment of the health needs specific to this population. Our project aims to provide preliminary data about the health needs of refugee and immigrant children and families in the Lake City neighborhood, as well as resources available to assist them. This analysis is timely and relevant for community stakeholders, such as the non-profit Refugee Women's Alliance (ReWA), who are currently expanding services for refugee and immigrant children in Lake City. We used mixed methods to assess the health and health-related resources relevant to preschool age children of refugee and immigrant groups in the Lake City neighborhood. These methods included key informant interviews with individuals knowledgeable about the health of refugee and immigrant families in Lake City, as well as analysis of publicly available secondary data. Interpreting the interviews using relevant secondary data provides a holistic initial picture of the physical, socio-economic, educational, cultural, and community factors contributing to the health and wellbeing of refugee and immigrant children and their families in Lake City. We anticipate our research findings will reveal a culturally diverse community with distinct needs, as well as many existing community resources—assertions confirmed by preliminary results. The results of this study will both inform ReWA's early childhood education programming, and give healthcare providers and community organizations in the area a more comprehensive understanding of refugee and immigrant needs. Because this project has stimulated community interest in further research relating to these populations, this study can also serve as a platform for future work in the area.
- Presenter
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- Ervin Ham, Senior, Bioengineering Mary Gates Scholar
- Mentor
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- Lawrence Sherman, Bioengineering, Medicine
- Session
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- MGH 258
- Easel #184
- 11:00 AM to 1:00 PM
QRS-like artifacts are present in ECG recordings during CPR but have not been described previously. We coin these artifacts compression induced complexes (CICs). They prevent accurate real-time cardiac rhythm characterization during CPR compressions. Additionally, we hypothesize that CICs may be an early prognostic tool for return of rhythm (ROR), return of spontaneous circulation (ROSC) and an indicator of cardiac health. The objective is to characterize and describe these QRS-like complexes quantitatively and create an algorithm that distinguishes CICs from native cardiac activity. CIC characteristics that are being measured are a) amplitude, b) sharpness, and c) temporal relationship with CPR compressions. Custom software was used to analyze the ECG data from King County Emergency Services with CICs annotated by expert review. 50 cases were used to determine the range of features specific to CICs, to include: a) amplitude as measured at CIC peaks, b) sharpness as quantified by measuring the peak of the second derivate at CIC locations and wavelet transform analysis to measure the range of frequencies present in CICs, c) the temporal relationship between CICs and CPR compressions as measured using peak finding algorithms and comparing the delay between the impedance peaks from CPR compressions and CIC peaks. Ten CICs from each case for each feature were analyzed using standard deviations to define quantitative parameters for a CIC detection algorithm. After development, this algorithm was tested to determine the percent of CIC complexes that are detected in a test set. It was also used to examine the association of CICs with ROR and ROSC. This algorithm can potentially aid in advising pre-hospital care tailored to the patient’s cardiac condition.
- Presenter
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- Ameera Haq, Senior, Biology (General), Comparative History of Ideas Mary Gates Scholar, UW Honors Program
- Mentor
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- Sareeta Amrute, Anthropology
- Session
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- Commons West
- Easel #41
- 11:00 AM to 1:00 PM
The aim of this project is to investigate the effectiveness of medical translation for individuals who face language barriers in the doctor’s office. Translation services have made strides in bridging communication barriers yet some populations continue to suffer. This happens when medical terminology is difficult to translate to a language or if the Interpreter/Translator does not have knowledge of medical terms in the language to which they are translating. The research questions explored through this project are: Does the work of translation contribute to the marginalization of immigrant non-English speaking populations? How does poor translation contribute to the “letting die” of immigrant populations? How must we reconsider the role of language as it intersects the biopolitical field? This project focuses on the Urdu speaking population- most of whom have immigrated from South Asia and are at risk for heart disease. In Urdu, the word “disease” translates to “sickness” which could refer to something as minor as a cold or severe as heart disease. In this way, the severity of an illness is lost in communication and the patient is left filling in the blanks of how severe their sickness might be. This research aims to find gaps in understanding by asking native Urdu speaker to decipher the meaning of various medical phrases translated to Urdu from English. This provides insight into what medical phrases cause the most confusion when translated to Urdu so that it can be addressed in further research. Ultimately, the goal is that this knowledge can help improve translation techniques by creating a tool for patients to convey what was communicated to them during a visit to the doctor.
- Presenter
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- Jordan Daniel Hardman, Fifth Year, Nursing Howard Hughes Scholar, Mary Gates Scholar, UW Honors Program
- Mentor
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- Barbara Cochrane, Family and Child Nursing
- Session
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- Commons West
- Easel #12
- 11:00 AM to 1:00 PM
Under Washington State law, nurse delegation is a process in which a registered nurse, known as a nurse delegator, provides training and management for delegated care tasks to be performed by long-term care workers (LTCWs) within in-home or community-based care settings. State law requires that clients who receive care through nurse delegation must be in a stable and predictable condition (SPC). In our previous study, we determined that nurse delegators need more specific criteria than the definition in Washington State law to assess SPC. The purpose of this project is to provide additional clarification to the determination of SPC by developing an instrument for nurse delegators to use for comprehensive assessment of SPC and describing the instrument’s utility and applicability. Methods to reach those goals included: 1) reviewing published literature and policy reviews of federal and state-by-state laws on potential alternative definitions for SPC; 2) consultation with nurse delegation content experts (two Washington State Nurse Delegation Program Managers and a nurse researcher, whose work helped establish state regulations for nurse delegation in Washington State) regarding the clinical applicability of a SPC assessment instrument; 3) development of the instrument based on relevant clinical evaluation guidelines and instruments content expert feedback; and 4) collection and analysis (via phone interviews and qualitative content analysis, respectively) of feedback from nurse delegators on the utility and applicability of the developed instrument. We hypothesize that nurse delegators will view the instrument as a useful clinical resource for determining SPC within the nurse delegation process. The results of this study can be used to implement the instrument independently or in conjunction with other evaluation methods, as standardized practice to assess SPC and effectively meet this state requirement for clients to receive care under nurse delegation.
- Presenter
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- Marcus Harland-Dunaway, Senior, Biology (Molecular, Cellular & Developmental)
- Mentor
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- Andrea Wills, Biochemistry
- Session
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- MGH 241
- Easel #156
- 11:00 AM to 1:00 PM
Humans have limited ability to regenerate many tissues. In instances such as limb loss or spinal cord injuries there is a dramatic decrease in quality of life and there are few therapeutic options to help recover from these serious injuries. My research characterizes how epigenetic changes affect tail regeneration in the frog, Xenopus tropicalis. Xenopus tadpoles have significant regenerative abilities when they are developing but that ability is lost as they age and undergo metamorphosis. This transition in regenerative ability makes them a great model for understanding the molecular differences between tissue that can regenerate and tissue that can not. Other advantages of Xenopus for epigenetic studies of regeneration include a well-characterized diploid genome and many well-established molecular tools. Previous work by our group has shown that the accessibility of chromatin undergoes drastic remodeling in which many of the genes are made inaccessible shortly after injury in the Xenopus tail. These genes are then reopened during regeneration. These changes are likely due in large part to histone deacetylases (HDACs) and histone acetyltransferases (HATs). We hypothesize that HDACs are necessary for causing the initial inaccessibility of the chromatin and that HATs are necessary for the reopening of chromatin for regeneration. We used an Assay for Transposase-Accessible Chromatin and sequencing (ATAC-Seq) to show that the chromatin does not undergo its normal shift toward inaccessibility over the course of regeneration when tadpoles are treated with HDAC inhibitors, coupled with a reduction in regenerative ability. This study will help us identify how histone acetylation directs changes in chromatin accessibility. Additionally, with immunohistochemistry we can study specific sites of histone acetylation and validate these antibodies for future epigenetic research. Our study of large-scale epigenetic changes during regeneration will help characterize how epigenetic gene regulation enables regeneration.
- Presenter
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- Marah N. Hay, Fifth Year, Nursing UW Honors Program
- Mentor
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- Andrea Landis, Nursing
- Session
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- Commons West
- Easel #8
- 11:00 AM to 1:00 PM
Sleep is crucial for producing higher levels of concentration, performance, and overall health and safety. Yet, teens, a vulnerable population, get far less sleep than the recommended 8-10 hours and continuously incur a sleep debt that negatively impacts their health. This troubling issue led to a national public health initiative to delay high school start times to benefit teens’ health. Though the Seattle school district recently accepted and implemented this initiative, it remains to be seen if the time change had the expected impact on the teens’ sleep quantity and therefore overall performance and health. The purpose of our research was to explore any correlation between the later school start time and positive outcomes of improved sleep, health and performance. In order to address this question, we created a 22-item survey which asks questions regarding quantity of sleep, self-reported measurements of mood and mental health, academic and extracurricular activity performance. We used convenience sampling and recruited from the community, specifically high schoolers within the Seattle school district who experienced the time change, to complete this survey. We expect to find that the later school start time increased the quantity of sleep high schoolers obtained, contributing to improved overall health and performance. If we obtain our expected results, we hope the data can be used to encourage other school districts to also adopt the time change and promote the health of the teen population.
- Presenter
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- Liesl Henthorn, Senior, Nursing UW Honors Program
- Mentor
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- Anita Souza, Nursing
- Session
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- Commons West
- Easel #10
- 11:00 AM to 1:00 PM
Nationwide older adults experiencing homelessness is on the rise. In Seattle, over 11,000 individuals are homeless and over 20% are over the age of 50. People experiencing homelessness face a variety of barriers in attaining and maintaining physical and mental health. These barriers are often insurmountable for older adults. The purpose of this investigation was to explore the facilitators and barriers to wellbeing in a sample of male adults over age 50 who are homeless and utilizing a night shelter in Seattle. We used an interpretive phenomenological approach with a photovoice methodology. Participants were asked to take photos that captured their response to the questions, "What supports your wellbeing and what are barriers to your wellbeing?" Additionally, we collected demographic variables such as age, gender, duration of homelessness, and age first homeless. Following the collection of photographs, we held two semi-structured focus groups approximately three weeks apart. At the first meeting, we discussed the meanings captured by their photos. The meeting was audio recorded, transcribed verbatim, and themes were extracted utilizing Dedoose software. We anticipate that older adults have unique unmet needs. A lack of established services tailored to this population, coupled with recent cuts to services has impacted access to programs that foster good mental and physical health. These findings have important implications for nursing practice, gerontology, and public health. Information gained from this project can serve as a tool to inform policy change towards efficacious person-centered solutions for older adults experiencing homelessness.
- Presenter
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- Stephanie Hernandez, Senior, Psychology, University of Nevada Las Vegas McNair Scholar
- Mentor
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- James Hyman, Psychology, University of Nevada, Las Vegas
- Session
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- Balcony
- Easel #100
- 11:00 AM to 1:00 PM
Patients with Type 2 diabetes have insulin resistance, which continues to manifest as hyperglycemia and results in the cells failure to absorb insulin. Insulin resistance in the brain affects cognitive abilities such as learning, memory and also alters synaptic plasticity. The purpose of this study is to investigate cognitive impairments in rodent models of T2 diabetes. Minimal doses of streptozotocin (STZ), which is toxic to insulin producing beta cells, were given for 9-10 weeks. Once glucose levels reached above 250mg/dl which is considered indicative of a hyperglycemic state similar to Type 2 diabetes injections would stop. Weights were takes consistently for appropriate injection volume. We utilized a spatial working memory task known as delayed alternation to test cognitive impairments. We found a significance between control and experimental rats in working memory accuracy using a one-way ANOVA p=.05. Similar to diabetic patients, we saw weight fluctuations in experimental rats, but weights were stable for the control group. This type of task requires strong working memory demands on subjects, which may be compromised by a hyperglycemic state. Additionally, previous research shows that elevated glucose levels and chronic neuroinflammation are also found in Alzheimer's disease (AD) patients. Neuroinflammation might be a pathological similarity in the progressions of Type 2 diabetes and AD.
- Presenter
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- Alair Holden, Senior, Public Health-Global Health, Anthropology: Medical Anth & Global Hlth
- Mentor
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- Pratik Parikh, Pediatrics
- Session
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- MGH 206
- Easel #175
- 11:00 AM to 1:00 PM
Infants born prematurely often suffer from hypoxia-ischemia and inflammatory responses that can lead to cognitive delay and behavioral problems. A novel rodent preterm brain injury model is being developed to simulate histological and behavioral changes seen in preterm brain injury. It was hypothesized that injured pups {in-utero hypoxia-ischemia followed by post-natal lipopolysaccharide (LPS)} will have a significant early behavioral deficit compared to controls. The rodent model of preterm brain injury includes: intrauterine hypoxia at embryological day 18, with postnatal LPS administration from Postnatal (P) day 2 to P4. In order to assess behavioral changes I conducted early reflex and motor skill tests on rat pups from ages P8 to P13. Early reflex testing included: righting reflex, negative geotaxis, and cliff aversion. Early motor testing included: ambulation, front limb suspension, hindlimb suspension, and grip strength. There was no significant difference seen in early reflex testing between control vs injured. Significant difference (P<0.05) was observed between control (n=19) vs injured (n = 11) in early motor testing: grip strength impulse, ambulation, hindlimb suspension and front limb suspension. Based on these findings, the novel preterm brain injury model is producing a motor deficit in the injured groups compared with the control group. Going forward, we will continue to repeat this experiment to verify the results and further elucidate what aspects of behavioral development are impacted most by this injury model.
- Presenter
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- Melissa L (Melissa) Howerton, Junior, Extended Pre-Major, UW Bothell
- Mentor
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- Bryan White, Division of Biological Sciences (Bothell Campus)
- Session
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- MGH 206
- Easel #165
- 11:00 AM to 1:00 PM
Autistic Spectrum Disorder (ASD) is a heterogeneous disease characterized by varying degrees of social dysfunction. Several studies by the CDC show that 1 in 68 children in the United States are affected by ASD, this number could be 1 in 45 according to the newest studies by various government resources. So far pharmacological treatments are not effective in most cases, only treating a few symptoms at best rather than the whole. Several theories exist for the pathogenesis of ASD; however, much is still unknown despite multiple studies. Investigators often tend to research the pathology of ASD based primarily within their scientific discipline, and we feel this narrow view limits a deep understanding of the disorder. This literature review explores neurostructural, neurochemical, and genetic disciplines, synthesizing an overall hypothesis of the pathogenesis of the disease. Specifically, we explore specific groups of genes known to have a causal effect in ASD and focus on how they might interact to produce the disorder. We analyze these genes to see how they affect different neurotransmitter systems and impact different structures of the brain. We are restricting our database search using terms such as “genes”, “synaptic transmission”, “brain areas” and “homeostatic/compensatory mechanisms” associated with ASD. The literature suggests that genetic aberrations in ASD are quite numerous and cause cascading effects throughout the brain, affecting synaptic transmission in many regions. Our analysis suggests that ASD is a polygenetic disorder where numerous small changes in protein function occur in multiple brain regions. Homeostatic and compensatory mechanisms cannot correct these cellular and connectivity deficits, and ASD develops. We hope this review helps researchers take a broad view of the various genes, neurotransmitter systems, and anatomical structures implicated in ASD as they embark on future studies.
- Presenter
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- Nona Joyce Lynn Hunter, Senior, Nursing UW Honors Program
- Mentor
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- Barbara Cochrane, Family and Child Nursing
- Session
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- Commons West
- Easel #11
- 11:00 AM to 1:00 PM
Insulin is a medication that requires training, safety, and care in administration due to potential serious outcomes if administered incorrectly. Under Washington State Law, long-term care workers (LTCW) are permitted to administer insulin in community-based and in-home care settings with the oversight of a nurse delegator, a registered nurse who is responsible for the nursing care of a client and supervises an unlicensed person to perform selected tasks for that client. The current model of training for LTCWs lacks a standardized method to assess their competency in administering insulin. The purpose of this research study is to explore methods of assessment to inform the development of a standardized, comprehensive tool for evaluating competency in insulin administration. The aims of this study are to determine the utility and feasibility of this tool. I developed the “Insulin Delegation: Competency Evaluation Tool” by researching methods of training and evaluation and through student-mentor collaboration. The tool incorporates entrustment scores, reflection, and competency-based education. Prior to testing, the tool was reviewed by content experts, including Washington State Nurse Delegation Program Managers and a nurse researcher who helped develop and evaluate nurse delegation regulations in Washington State. The tool was tested in the field by nurse delegators contracted with the Department of Social and Health Services to assess delegated LTCW competency of insulin administration. After that testing period, feedback on the utility and feasibility of the tool was obtained by an online survey with Likert-type scale and free-text items. I expect to find that the tool is effective in assessing competency in insulin administration and applicable to the workflow of nurse delegators. This tool has potential use as a standard resource for nurse delegation training and an ongoing safety and quality measure in community-based and in-home care practice.
- Presenter
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- Kadija S. Hussen, Junior, Pre-Major, UW Bothell
- Mentors
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- Alka Kurian, Interdisciplinary Arts & Sciences (Bothell Campus), UW Bothell
- Camille Walsh, Interdisciplinary Arts & Sciences (Bothell Campus), UWB
- Session
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- Commons East
- Easel #45
- 11:00 AM to 1:00 PM
There are various groups and organizations that affect the prosperity and integrity of women in India. Whether they are affiliated with a political party or village clans, women are typically placed at the bottom of the barrel. My research highlights how groups such as Hindutiva, Love Jehad, Triple Talaq, etc. oppress women or spark activism within their community. Women regardless of class, race, etc. are affected by some sort of familial system; expected to follow and obey traditional gender roles, and abide by their husbands. Women are also used as a unit of analysis in religious ideologies. A generalization is made that all women are either impacted or not impacted by Islam. For example, the more women do something, such as wear a veil, the more generalizations are made about their rights as women. To understand these issues, I interviewed domestic workers, young women who attend schools, and research activists in India. This research also explores how specific organizations made for women have fought for and implemented laws to strengthen the voice of the oppressed. This project will track the evolution of the women’s movement in India, from its origins to the present, providing insight into how women have worked their way up the ladder, the obstacles they faced, and what they hope to achieve in the future. Hence, it provides a different perspective on feminism—building on Third World Women in contrast to Western feminism.
- Presenters
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- Kimia Imani, Senior, Psychology, Biochemistry Mary Gates Scholar, NASA Space Grant Scholar
- Kari Mie Nasu, Senior, Informatics
- Mentors
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- Leslie Herrenkohl, Education
- Jiyoung Lee, Education
- Session
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- Commons West
- Easel #20
- 11:00 AM to 1:00 PM
STUDIO, a near-peer STEM (science, technology, engineering, and mathematics) mentoring program, fosters growth for both the mentors and mentees. In partnership with Neighborhood House, a local multiservice community-based organization, UW mentors support low-income, immigrant and refugee youth to develop motivation, interest, and identification with STEM education and careers. Mentors do this by creating units that provide youth opportunities to learn at the intersection of their stated interests and mentor expertise. This cultivates a community of learners that values youth and mentor agency. STUDIO focuses on both mentees and mentors, but our initial research and evaluation supported by National Science Foundation has focused primarily on mentees. In this study, we investigate mentor learning and growth. We are currently lead undergraduate mentors in STUDIO and are therefore positioned to reflect on our own and other mentors’ learning. Mentors are given the opportunity to advance their leadership and mentoring skills by documenting occurrences in program time, writing weekly reflections, creating and leading curricula, and participating in weekly seminars to share experiences and address issues important to increasing diversity in STEM. In this study, documentations, reflections, and interviews are analyzed to identify shared themes and unique personal stories that illuminate mentor learning, commitment, and collaboration in the STUDIO learning environment. In early thematic analyses, we have identified several emergent themes such as the powerful role of collaborating, relationship building, and mentors’ development through leadership that support their overall academic and personal connection with STEM. As students of color remain underrepresented in the STEM field, mentors empower youth to develop their identification with STEM, despite challenges they face due to persistent stereotypes and limited resources. This research will help us better understand mentor growth and learning so that we can continue to strengthen the STUDIO mentoring team.
- Presenter
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- Hannah H. Jeong, Senior, Nursing UW Honors Program
- Mentor
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- Elaine Walsh, Nursing
- Session
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- Commons West
- Easel #15
- 11:00 AM to 1:00 PM
Forefront Cares is one of services provided by Forefront Suicide Prevention, a center at the University of Washington School of Social Work. Suicide loss survivors receive care packages and have the opportunity to be connected to mentors, who are also suicide loss survivors and are specially trained to provide support to new loss survivors. The goals of Forefront Cares are to offer support to suicide loss survivors and to help them find resources that are appropriate for their individual needs. The purpose of this study was to examine participants’ perceptions of Forefront Cares, including what is helpful and what could be improved, through an online satisfaction survey which I created. I then sent e-mails to individuals who received a Forefront Cares package between January 2013 and December 2017, inviting them to participate in the study. Those who participated completed a brief anonymous online survey, which involved rating experiences with Forefront Cares. Questions addressed how helpful they found the package they received and what they found most or least helpful. Participants who had a Forefront Cares mentor were asked to rate how helpful that experience was. The data collection ended in mid-April, and I analyzed data with assistance from my mentor. Results will help determine what participants found more and less useful, as well as the acceptability of the Forefront Cares package and mentor process. It is expected that findings will indicate the importance of community support in the grief journey of newly bereaved suicide loss survivors. The creation of the satisfaction survey was intended to be a starting point in establishing ongoing analysis of Forefront Cares, as Forefront currently lacks permanent evaluation tool to assess their services. Information obtained will help improve the Forefront Cares process for future participants.
- Presenter
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- Allegra Johnson, Junior, Pre-Sciences UW Honors Program
- Mentors
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- Natalia Kleinhans, Radiology
- Gabriella Greco, Radiology
- Julia Sweigert, Radiology
- Session
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- MGH 206
- Easel #172
- 11:00 AM to 1:00 PM
Autism spectrum disorder (ASD) is a neurodevelopmental disorder that is characterized by difficulties in social communication and having repetitive behaviors or interests. Sensory processing disorder (SPD) is a term used to describe a collection of symptoms stemming from atypical neural integration of sensory information. Evidence from animal models suggests a significant role of GABAergic signaling in the amygdala in regulating behaviors related to anxiety. Previous research suggests that an imbalance in inhibitory and excitatory signaling in neural connections is present in ASD, a neurodevelopmental disorder that is associated with high rates of co-morbid anxiety (up to 40%). This current study investigated the relationship between anxiety and neurochemical profiles in high-functioning children between 8 and 12 years of age with ASD and a clinical comparison group, children with SPD. Our hypothesis is that there are underlying biological differences in amygdalar functioning between children with ASD and those with SPD, despite these two groups sharing similarities in sensory sensitivity and comorbid anxiety. To explore this hypothesis, a composite of anxiety symptoms was created (α = 0.790) using questions from the Child Sensory Profile-2, Vineland Adaptive Behavior Scales, and the DSM-5 Cross-Cutting Symptom Measure. Presence of anxiety was also investigated using the Kiddie Schedule for Affective Disorders and Schizophrenia (KSADS). Using a 3T MR system, brain metabolite concentrations (i.e., γ-Amino Butyric Acid (GABA) levels) in the left amygdala-hippocampal region were measured using single-voxel proton magnetic resonance imaging (1H-MRS). We ran a regression analysis looking at the interaction between anxiety symptoms and amygdalar GABA levels in the ASD and SPD groups while controlling for autism symptoms.
- Presenters
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- Erik Matthew Johnson, Senior, Materials Science & Engineering
- Jack Otto Ryan, Junior, Pre Engineering
- Mentors
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- Siddharth Rath, Materials Science & Engineering, Genetically Engineered Materials Science and Engineering Center
- Mehmet Sarikaya, Materials Science & Engineering
- Session
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- Commons East
- Easel #68
- 11:00 AM to 1:00 PM
Atomic Force Microscopy (AFM) images of peptide self-assembly on two dimensional atomically-thin inorganic solid substrates have features that are difficult to extract because of the diverse conformations these peptides have on the surfaces from nanoislands, no nanowires to confluent films and disorganized nanostructures. Analysis of these images can produce parameters such as thickness, aspect ratio, order/disorder ratio, and orientation distributions quickly and accurately. The first step is to input data in a table and convert it into an array. The images are then converted into a grayscale version, its background noise subtracted and subsequently renormalized. User determined edge detection techniques are then used to delineate the edges in the images. Appropriate segmentation methods are then used to separate different types of nanostructural textures and phases, and coupled with the edge information. Several further parameters such as percent area and volume fraction of each phase (surface coverage), percent-ordering in the long-range ordered phases, their shape and orientation distributions, as well as relative sizes are identified and quantified from the images. The sets of unique parameter are then used as the bases for assigning specific labels for the degree of molecular recognition of the substrate by the peptides and eventual orientation relationships between the peptide nanostructures and the crystalline lattices of the 2D atomically thin solid substrates. These labels are then used to train a machine learning algorithm to cluster these images and relate them to processing parameters associated with them via a relational database. The eventual goal here is to parameterize the images so that we can predict the ordering characteristics of any peptide-substrate pair to accelerate design of future technologies, e.g., bionanosensors, emanating from these hybrid material systems.
- Presenters
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- Dominic James Brinas Jones, Senior, Earth & Space Sciences (Environmental)
- Virginia Heidi Littell, Graduate, Earth & Space Sciences
- Mentor
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- Alexis Licht, Earth & Space Sciences
- Session
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- Commons East
- Easel #51
- 11:00 AM to 1:00 PM
The Eocene-Oligocene Transition (EOT) 34 million years ago was one of Earth’s most dramatic global cooling events from a hothouse with no ice caps to our current icehouse world with intermittent glaciations. It is important to understand the details behind the EOT in order to understand the mechanisms that can drive such significant climate change as well as the magnitude of the effects such a shift could cause to modern ecosystems. Here, we apply geochemical methods to organic-rich rocks from the Yaw Formation in the central Myanmar to reconstruct its paleoenvironments and gain a better understanding of Eocene climate in Southeast Asia. The ratio of the stable Carbon isotopes C12 and C13 (d13C) from plant matter in rocks can be used as a proxy for changes in the amount of woody cover in tropical ecosystems as well as mean annual precipitation (MAP). Using mass spectrometry on coals and sandstones of various ages, we are able to see how the d13C values have evolved over time in order to observe possible trends in Myanmar’s paleoenvironment. Preliminary results show an increase in d13C values over time which could indicate aridification in the environment.
- Presenter
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- Matt Joseph, Senior, English
- Mentor
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- Sharon Doty, Environmental & Forest Sciences
- Session
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- Balcony
- Easel #117
- 11:00 AM to 1:00 PM
One of the most significant problems facing modern agriculture is climate change. Plants thrive best within a fairly narrow range of temperatures. Outside of that range they have significantly reduced crop yield and significantly increased mortality. This imposes limitations on where certain crops may be grown. Due to rapidly growing populations, the industry must be allowed to expand into new regions, but climate change is reducing available regions. One possible solution is amplified heat tolerance due to symbiosis with endophytes. Endophytes are symbiotic microbes which live in the intercellular space within plants, and which may be used to improve plant fitness through stress tolerance, nutrient supply, and many other mechanisms. We chose a poplar tree which likely hosted beneficial microbes to alleviate heat stress due to its harsh environment, and have been working to isolate the relevant endophytes. I am using a plant-based isolation procedure using species such as rice and kale. By exposing the plants to the endophytes and then to heat stress, I assure that the endophytes have a broad host range because they must be able to survive in more than just their host plant, and I allow the plant to choose the most helpful endophytes to alleviate stress. Through multiple repetitions of this isolation procedure, I can increase the presence of heat-tolerance-conferring endophytes within the microbiome. These endophytes may eventually be used to expand growth into regions which are outside of conventional temperature ranges, or to remain in current regions in which temperatures are increasing.
- Presenters
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- Elijah Marsh Jung, Senior, Biology (Molecular, Cellular & Developmental)
- Joan Lee, Junior, Public Health-Global Health
- Youjun (Eugene) Suh, Senior, Biochemistry
- Mentors
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- Sungwoo Hong, Environmental & Occupational Health Sciences
- Elaine Faustman, Environmental & Occupational Health Sciences, Institute for Risk Analysis and Risk Communication
- Session
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- MGH 258
- Easel #183
- 11:00 AM to 1:00 PM
Nanoparticles have begun to see wide adoption in commercial application particularly in fields relating to medicine and electrical engineering. While their small size provides unique properties furthering advancements in these field, their effect on human health are still relatively unknown. As their use increases, their potential to cause health effects will need to be considered. This is especially true for workers who manufacture engineered nanomaterials (ENM) and who use them in commercial products. Quantum dots (QD) are an emerging application of nanoparticles using their semiconductor properties for optical imaging. To determine the effects of QD to human neural development, an in-vitro model was established using an adverse outcome pathway (AOP) framework. This methodology provided observations of QD on their ability to alter cellular morphology and developmental endpoints. H9 human neural progenitor cells were cultured and maintained in vitro for up to 21 days in 96 well plates. Normal morphology and biochemistry was characterized under both proliferating and differentiating conditions. H9 cells were then treated with two different QD, Qtracker non-targeted QD and Qdot ITK carboxyl QD, under the concentrations of 0, 2.5, 5, 10, 20, and 40 nM at culture day in vitro (DIV) 1, 6, 13, and 20. After 24 hours of exposures, cell viability was evaluated for dose-response relationships using LDH and MTT assays. H9 cultures undergoing proliferation saw resistance towards Qtracker non-targeted QDs, however cell viability declines with increasing concentrations of ITK carboxyl QDs. H9 with differentiation media under DIV 1 and 6 saw declining cell viability towards accumulative exposure to Qtracker non-targered QDs. Nonetheless, H9 cells with differentiation media showed resistance towards ITK carboxyl QDs. In the future, we will investigate the resistance of our cells to various Q dots by assessing dosimetry of QD uptake under our test conditions.
- Presenter
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- Mara M. Kage, Senior, Sociology UW Honors Program
- Mentors
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- Alexes Harris, Sociology
- Kyle Crowder, Sociology
- Session
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- Commons East
- Easel #44
- 11:00 AM to 1:00 PM
Identity is constructed by the intersection of many different categories that are supported or marginalized by the society depending on variables such as context, time, place and group values. This study sought to investigate how the categorical intersections of identities as sociological concepts were informed, challenged or supported through the experiences of integration and marginalization of Asian Pacific Islander American artists in the progressive city of Seattle. In the micro level, it is experienced through daily social interactions within the community and on a macro level through educational programs and social policies. These mixed methods studies developed 1- a quantitative statistical descriptive analysis disaggregating 9 APIA subgroups by residential dispersion on tract level and basic socioeconomic parameters in King County and 2- a qualitative research focusing on 12 in-depth interviews with self-identified APIA artists contrasting race and gender identities by heterosexual and LGBT. The APIA racial category unique experience is understudied in the field and I sought to address this gap by contrasting current pervasive narratives and stereotypes. This was addressed via unpacking the reality of personal experiences of artists providing intimate insights on the shifting dynamics negotiationing these identities. The study controlled for similarities of experiences and outcomes framing analysis through the grounded theory methods of ulilizing data and inquiry to derive theory. In order to understand experiences of multiple marginzalizations, it's important to address a multitude of intersecting categories. In short, until we see it, it dones't exist. I expect to find that experiences of marginalizations increase when intersecting race/ethinicity of APIA artists with non-heterrosexual gender and sexual identities.
- Presenter
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- Nevin C. Kalaf, Senior, Biochemistry Mary Gates Scholar
- Mentor
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- Rebecca Hull, Medicine
- Session
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- MGH 206
- Easel #176
- 11:00 AM to 1:00 PM
Cystic fibrosis-related diabetes (CFRD) complicates up to 50% of adult cases with CF. However, its pathogenesis is poorly understood. One thing that has been shown, however, is that amyloid deposition occurs in the islets of 60% of subjects with CFRD, which is known, from data in other forms of diabetes, to be toxic to insulin-producing islet β-cells. Currently existing animal models do not reproduce this feature of human CFRD, since islet amyloid deposition requires the expression of an amyloidogenic form of the islet peptide islet amyloid polypeptide (IAPP). To address this gap in the field, our group is generating a CF mouse model that expresses the human amyloidogenic form of islet amyloid polypeptide (hIAPP). To do this, we have generated a double transgenic mouse from a male homozygous for the CF mutation and a female hemizygote for the hIAPP transgene. Mice will be followed for up to 12 months, or until hyperglycemia develops. During this time, body weights and non-fasted blood glucose levels will be measured monthly. When hyperglycemia is identified, animals will be euthanized in order to determine if islet amyloid is present in the pancreas. We are expecting to find that mice bearing the CF mutation and expressing the hIAPP transgene will develop increased and/or accelerated amyloid deposition in their islets as compared to the control mice generated by the cross. In addition to this, we expect that these mice will also show increased glucose levels (hyperglycemia) and decreased β-cell mass. There are currently 16 mice on study, and data collection is ongoing, with additional animals being enrolled approximately every two weeks. The goal of this study is to generate a new model of CFRD, which better reflects the human disease state, and can be used to develop and test improved therapies for human CFRD.
- Presenter
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- Eric Christopher (Eric) Katzung, Junior, Bioengineering
- 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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- MGH 206
- Easel #177
- 11:00 AM to 1:00 PM
Zebrafish have a higher regenerative potential than mammals, but the genetic differences between the groups that lead to their respective responses are not fully understood. Cross species analyses with mammalian models allows comparison of these genes with their mammalian orthologs to determine which genes show similar or different enrichment during bone regeneration processes. Information from microarray datasets for both rats and zebrafish provide information about the genome-wide transcription during regeneration in each model; the regenerative process in rats has a different timeline than zebrafish, so our lab has developed software to relate the two timelines so that gene expression can be directly compared. Using this information, I am performing two sets of analyses. In the first analysis, I am determining which genes show conserved expression in both models to identify deeply conserved genes essential for regeneration in both systems. In the second analysis, I am finding genes that are differentially expressed between rats and zebrafish during regeneration; pathway analyses of these genes can provide a better understanding of the differences in regenerative response, and potential ways to manipulate this response in both models. Determining the processes that involve these genes can help identify genetic targets associated with important regenerative functions, which can be applied to a mammalian model to potentially improve its regenerative response. Preliminary results for the similarly expressed genes’ ontology of shows involvement in skeletal development, phosphate transport, and organogenesis; the differentially expressed genes’ ontology shows involvement in morphogenesis, peptide linking, and organogenesis. The genes with similar expression affect ECM-receptor interactions and focal adhesion pathways, while the differentially expressed genes are affect nicotinate and nicotinamide metabolism and carbon fixation. Manipulating these pathways in zebrafish can show their distinctive roles in the regenerative process and provide a better understanding of the differences between the zebrafish and mammalian regenerative processes.
- Presenter
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- Alex Kaufman, Senior, Physics, Mathematics, University of Puget Sound
- Mentor
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- David Latimer, Physics, University of Puget Sound
- Session
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- Commons East
- Easel #78
- 11:00 AM to 1:00 PM
In classical electrodynamics, accelerated charges emit electromagnetic radiation. The associated energy loss of the particle can be modeled as a radiation reaction force, proportional to the change in acceleration. Including this force in the usual dynamical equation for a charged particle yields the Abraham-Lorentz-Dirac (ALD) equation. For point particles, solutions to the ALD equation are problematic. First, they require additional initial conditions beyond those needed in regular Newtonian dynamics, but more concerning are the presence of unphysical run-away solutions and acausal trajectories. These problems arise in the point-like limit of the theory, so it is possible that quantum mechanics is the more appropriate framework with which to address the problem. In order to explore the similarities and differences of the classical and quantum frameworks, we compute classical trajectories of charged particles in the presence of a Coulomb field, including radiation reaction. We compare the associated classical cross-section with the quantum field-theoretic cross-section for Coulombic scattering, including radiative corrections. With these calculations, we will be able to assess when the field theoretic formulation of single-photon emission can approximate the classical radiation reaction.
- Presenters
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- Marlowe Lee Keller, Junior, Pre-Sciences Howard Hughes Scholar
- Dianne Laboy, Senior, Biology (Molecular, Cellular & Developmental) Mary Gates Scholar, Howard Hughes Scholar, Levinson Emerging Scholar
- Vera Onyekachi Okolo, Junior, Anthropology: Medical Anth & Global Hlth, Biology (Molecular, Cellular & Developmental) Undergraduate Research Conference Travel Awardee
- Kailin Nicole Patterson, Senior, Biology (Physiology)
- Mentors
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- Scott Freeman, Biology
- Michael Pelch, Biology
- Session
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- Commons West
- Easel #19
- 11:00 AM to 1:00 PM
The President’s Council of Advisors on Science and Technology estimates that the United States will need to increase its number of science, technology, engineering, and mathematics (STEM) professionals by 34% over the next decade. This guidance seems contrary to the rising trend of STEM majors becoming increasingly selective of the students they admit. Competitive degrees with additional requirements for entry (ARE) are a universally accepted phenomenon here at UW. However, there are no studies characterizing their prevalence in higher education or investigating their impact on students. We are conducting an exploratory study to characterize the number of STEM degrees across the U.S. with ARE and the factors departments use to admit students. First, we compiled institutional data for the research universities (R1) and Master’s-granting institutions with the highest number of undergraduates in each state. Next, we determined whether or not they offered STEM degrees with ARE. Programs were identified through a combination of data-mining institutional websites and contacting individuals at each institution. Finally, we administered an online survey to each department to gain deeper insight into the factors used in their admission decisions. We hypothesized that variables such as high school GPA, university GPA, and SAT score will commonly be used in the decisions to admit students. SAT scores and GPA often have significant socioeconomic and demographic biases. Consequently, if we confirm our hypothesis, this could raise questions about the equity of the admission processes for selective degrees. Preliminary results revealed over 250 degrees with ARE. Most of those degrees are offered in biology, health science, or engineering departments at R1 institutions. Ultimately, our results will inform a future study that will take a closer look at the impacts of degrees with ARE on STEM retention and diversity from a representative sample of institutions.
- Presenter
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- Tushar Khurana, Sophomore, Civil Engineering
- Mentors
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- Bart Nijssen, Civil and Environmental Engineering
- Andrew Bennett, Civil and Environmental Engineering
- Session
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- Commons East
- Easel #62
- 11:00 AM to 1:00 PM
Hydrological models make predictions by either simulating physical processes or by using statistical techniques. When we evaluate the accuracy of model outputs and predictions, we often observe that statistical models perform better than physically-based process models. Investigating why this happens can give us insight into how to improve the process-based models. This research evaluates how information given to different statistical and process-based land surface models at 20 sites around the world affect their performance. For this project, we use the Structure for Unifying Multiple Modeling Alternatives (SUMMA) framework, a modeling framework that allows users to decide what representations of various hydrologic processes to use during simulations. Using SUMMA and statistical measures, we estimate the effects of decisions made at each modeling step. We can also determine which model processes have the greatest effect on the results. We will compare the results from our SUMMA implementations with results from statistical models that were developed and published as part of a previous experiment. The results of this analysis will provide insight into which model components best represent observed hydrological processes and how model components can be improved and refined. Our goal is that we can produce process-based model simulations that perform better than the statistical models we previously compared them to.
- Presenter
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- Anna Kirchan, Senior, Electrical Engineering (Bothell), Chemistry (Bothell) Mary Gates Scholar
- Mentor
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- Seungkeun Choi, Electrical Engineering (Bothell Campus), Science, Technology, Engineering & Mathematics (Bothell Campus)
- Session
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- Commons East
- Easel #67
- 11:00 AM to 1:00 PM
PEDOT:PSS is a conducting polymer that is very promising as the next generation materials for the transparent electrode. PEDOT:PSS-based organic electrochemical transistor (OECT) has been widely used for various sensing applications such as glucose, antigen, DNA, and pH sensing thanks to the much lower working voltages, typically less than 1 V, and known biocompatibility of a PEDOT:PSS. OECT comprises three electrodes (source, drain, and gate), a PEDOT:PSS channel between source and drain, and electrolyte solution of analytes. Electric current flows through the conductive PEDOT:PSS channel. However, upon the application of a positive gate voltage, cations from the electrolyte are injected into the channel, decreasing a conductivity of the PEDOT:PSS. Hence, electric current decreases as a gate voltage becomes more positive. In our previous work we examined the impact of double-in-plane gate electrode on the OECT performance and found it to have a much higher transconductance of 35 mS as compared to 13 mS of a single gate. Now we investigate if applying heat can further improve the device performances such as sensitivity and response time of the OECTs. To test this, we have integrated a micro heater made of ITO on top of the glass substrate then covered the heater with aninsulative layer on which all transistor electrodes are fabricated in the same plane. High conductivity PEDOT:PSS was used to create a channel between source and drain. Fisher brand pH meter calibration solution was used as the electrolyte with pH values of 4, 7 and, 10. A drop of electrolyte was placed just over the channel and the gate electrodes. Once fabrication has been completed the OECT’s are tested and characterized at various temperatures by resistively heated micro-heaters. This work is important as it will allow the development of highly sensitive portable OECT arrays for various chemical/biological sensing applications.
- Presenter
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- Tessa K. Kolstad, Fifth Year, Nursing UW Honors Program
- Mentor
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- Jennifer Sonney, Family and Child Nursing, University of Washington School of Nursing
- Session
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- Commons West
- Easel #31
- 11:00 AM to 1:00 PM
Childhood asthma accounts for 571,000 ER visits, 136,000 hospitalizations, and $10 billion in healthcare costs annually in the United States. Fewer than 50% of children with asthma are adherent to their treatment regimen, leading to worse health outcomes. The purpose of this study is to develop and test the usability and acceptability of the symptom monitoring and response module of the Child Asthma Management Program (CHAMP), a new web-based, tailored asthma shared management health application for 7 to 11-year-old children with persistent asthma and their parents. A user-friendly and visually engaging module was developed with content focused on asthma symptom identification, monitoring, and response. Using a human-centered design framework, dyads of children and parents were recruited to participate in two rounds of design and usability sessions with prototypes of the module. Additionally, dyads completed the Asthma Responsibility Questionnaire, CHAMP acceptability questionnaire, and a semi-structured interview following the sessions. Thematic analysis using an investigator-developed coding frame was used to code all interview data using ATLAS.ti software and quantitative data from the acceptability survey was transferred to SPSS 24 for analysis. Results from both design and usability sessions will inform final revisions to the module. The final version of this module will guide dyads in improving their asthma shared management. This module meets a considerable need for effective asthma management interventions and represents a step towards better tools for improved chronic disease management for pediatric patients.
- Presenter
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- Melissa Krook, Senior, Psychology Mary Gates Scholar, Innovations in Pain Research Scholar
- Mentor
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- Sean Rundell, Rehabilitation Medicine
- Session
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- MGH 258
- Easel #181
- 11:00 AM to 1:00 PM
Chronic low back pain (CLBP) poses a major public health burden, affecting 31% of the general population and 54% of older adults. Among individuals with CLBP, multisite pain increases the risk for persistent pain and can lead to physical and mental impairments. Despite this, multisite pain research is limited and little is known about its relationship with health-related quality of life (HRQoL). This study describes the effect of multisite pain on HRQoL and the association between multisite pain and falls in older adults with CLBP. We conducted a secondary analysis using the Back Pain Outcomes using Longitudinal Data (BOLD) registry. BOLD consists of 5,239 participants, ≥65 years, from three health systems, with new primary care visits for back pain. We identified 899 participants with CLBP (>2/10 pain intensity, 6 months after new visit) and assessed comorbid pain at 6 pain sites, including widespread pain. Outcomes of HRQoL (EQ-5D, scored 0-1) and falls prevalence in the past 3 weeks were evaluated 6 and 18 months after participants met the chronic pain criteria. We used linear and logistic regression models to test the relationship between number and type of pain sites with outcomes, adjusting for demographics and health characteristics. Widespread pain (b=-0.035; CI: -0.058, -0.012) and pelvic/groin pain (b=-0.027; CI: -0.050, -0.004) sites were associated with lower HRQoL. For each additional pain site, HRQoL scores decreased an average of 0.013 points (95% CI: -0.020, -0.007) and odds of a fall increased 30% (OR, 1.30; CI: 1.12, 1.51) with nearly all falls occurring in those with >1 pain site (>95%). Number of pain sites had stronger associations with decreasing HRQoL than individual pain sites. Multisite pain increased the risk for falls. Clinicians and researchers should assess multisite pain as a potential risk factor for low HRQoL and falls in older adults with CLBP.
- Presenter
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- Quinn Mathew L'heureux, Senior, Physics: Applied Physics
- Mentor
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- Tom Furness, Industrial Engineering
- Session
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- Commons East
- Easel #69
- 11:00 AM to 1:00 PM
The goal of the Pulse Tectonics project is to apply the traditional Chinese practice of pulse diagnosis in the radial artery, to detect heart problems in a non-invasive manner. If we can detect heart disease early, we could potentially save hundreds of thousands of lives (there are 610 thousand deaths per year attributed to heart disease in the US alone), as in many cases it is only diagnosed after the first cardiac event (heart attack). Our research is to achieve diagnosis by capturing a short (5-10 second) video of the forearm. This video is then put through a video magnification algorithm developed by MIT, with different frequency and magnification parameters. By varying these parameters we can ‘tune in’ to the pulse in the radial artery and see it visually in full time. The pulse appears as a pattern of peaks and troughs which seem to change in response to a number of variables, from recent eating, exercise, health, etc. Currently we are working to synchronize these visual pulse readings with readings from an EKG and pulse oximeter to identify the information we can obtain from the videos, and thereby achieve diagnosis via visual pulse waveforms. This involves creating a baseline for a healthy pulse, and then identifying which parameters in the video correspond to different health readings. When successful, this technology would bring early heart disease diagnosis within reach of all people in an effort to mitigate heart disease related deaths.
- Presenter
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- Nathan Legaspi Lai, Senior, Chemical Engineering Mary Gates Scholar, UW Honors Program
- Mentors
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- Brandi Cossairt, Chemistry
- Marja (Beth) Mundy, Chemistry
- Session
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- MGH 241
- Easel #124
- 11:00 AM to 1:00 PM
Current global population growth has led to higher demands for food production, increasing our reliance on synthetic fertilizers. These are formed via the Haber Process, where nitrogen from air and hydrogen (currently obtained from natural gas combustion) is used to produce the needed ammonia. More sustainable ways of generating hydrogen gas that don’t involve burning fossil fuels are necessary. One possible replacement is nanoscale cobalt phosphide, a known, effective electrocatalyst for the hydrogen evolution reaction (HER), defined as transforming two protons and two electrons into hydrogen gas. However, this electrocatalytic system requires energy input to achieve the transformation. This project investigates the design of a synthesis to produce an indium phosphide/cobalt phosphide (InP/CoP) core/shell structure that can generate H2 photocatalytically. The InP quantum dot will be used to generate a photoexcited electron using visible light, and then this photoexcited electron will be transferred to the CoP catalyst to perform the desired proton reduction step. Regeneration of the quantum dot ground state will be mediated through the use of a sacrificial electron donor. Here we present our findings evaluating several approaches to the colloidal synthesis of the desired core-shell heterostructure using an aminophosphine precursor and the corresponding metal halides. Success of the various syntheses was determined by examining data from multiple characterization techniques including UV-Vis spectroscopy, X-ray diffraction, electron microscopy, and elemental analysis. We expect these methods to be generalizable to a suite of electrocatalytically active transition metal phosphide shell materials. This work will ultimately contribute new methods to the sustainable production of hydrogen for industrial scale applications.
- Presenter
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- Bella Lee, Senior, Psychology Mary Gates Scholar, UW Honors Program
- Mentors
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- Kristina Olson, Psychology
- Elizabeth Enright (Ake), Psychology
- Session
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- Balcony
- Easel #93
- 11:00 AM to 1:00 PM
Past work have examined children's understanding of race, including their categorization of others based on race, racial preferences, and racial attitudes. Almost all of these studies have only investigated children's racial understanding based on Black and White individuals. In the current study, we wanted to examine whether 4- and 5-year-old White children categorize and hold preferences on the basis of race comparing Asian, Black, and White individuals. Participants were asked "Who do you like the best?" to determine whether they held preferences for individuals based on race, between paired pictures of different-race children. To assess categorization, participants were asked to match pictures of children to exemplars they thought looked most like the children in the pictures. Results demonstrate that children categorize based on race significantly greater than chance t(47) = 5.569, p < 0.001. In terms of preferences, children significantly preferred White over Black children, t(47)=2.801, p=0.007. However, they did not have a preference for Asian versus White children, t(47)=1.219, p=0.229 or Asian versus Black children, t(47)=1.070, p=0.290. Taken together, these results suggest White children have a fairly sophisticated understanding of race; not only do they differentiate between members of their in-group and out-group (significantly differentiating on race between White/Black and White/Asian comparisons), but they also differentiate between other racial groups (significantly differentiating between Asian and Black individuals). Although children categorize and recognize race, this does not mean they always form preferences based on race.
- Presenter
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- Jared Leslie, Senior, Psychology, University of Nevada Las Vegas McNair Scholar
- Mentors
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- Erin Hannon, Psychology, University of Nevada, Las Vegas
- Jessica Nave-Blodgett, Psychology, University of Nevada, Las Vegas
- Session
-
- Balcony
- Easel #97
- 11:00 AM to 1:00 PM
Listeners perceive foreign speech as faster than native speech, even when both are the same speed. This phenomenon is called the ‘Gabbling Foreigner Illusion.’ This illusion may occur because language-specific experience is necessary to temporally parse speech into intelligible units as it unfolds over time. Similarly, one study reported that people tap faster to music that is culturally unfamiliar than to music that is culturally familiar. Like the gabbling foreigner illusion, lack of cultural expertise with music might interfere with listeners’ capacity to find temporal units (the beat), leading them to perceive the tempo of the music as faster. We directly addressed the question of whether listeners are less accurate at perceiving the beat and tempo of culturally unfamiliar music as compared to culturally familiar music by asking them to rate the tempo of music from various cultures (West African, American, Indian, Turkish, and Latin). Musical excerpts were presented in pairs and listeners chose which of the two was faster. We also asked listeners to tap along to the music and examined if their tapping speed corresponds to their perceptual judgments of tempo. We hypothesize that listeners systematically rate culturally unfamiliar music as faster than familiar music, suggesting that listeners experience a “gabbling foreigner illusion” for music. In summary, this research is a first step towards investigating how our culture-specific experiences influence our temporal perception of music.
- Presenter
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- Zoe K. Lewis, Junior, Extended Pre-Major UW Honors Program
- Mentors
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- John Neumaier, Pharmacology, Psychiatry & Behavioral Sciences
- Marjorie Levinstein, Neuroscience, Psychiatry & Behavioral Sciences
- Session
-
- Balcony
- Easel #91
- 11:00 AM to 1:00 PM
Stress is highly correlated with negative physical health impacts and an estimated 75 to 90% of primary care visits are attributed to stress related conditions. Currently available treatments for anxiety are not always effective and very limited, therefore identifying new targets for the development of medication is important. Recently, neuropeptides have drawn interest as potential targets for drug therapies. Pituitary adenylate cyclase-activating polypeptide, or PACAP, is a neuropeptide that has been linked to stress responses in a variety of brain regions. For example, the amygdala is a crucial brain region for mediating chronic stress, acute stress and fear and contains numerous PACAP-expressing neurons. My research focuses on the amygdala and the expression of PACAP following an acute stress. In my experiment, I quanitfied PACAP levels both with and without acute stress. After stressing rats using a forced swim protocol, I measured PACAP and mRNA expression in the amygdala using RNAscope in situ hybridization. Brain slices were imaged using fluorescence microscopy to quantify the RNA scope signal. To analyze these images quantitatively, I have developed a CellProfiler code to accurately and rapidly analyze the proportion of neurons expressing PACAP mRNA as well as the intensity of expression within the neurons. I hypothesize that PACAP mRNA expression will be increased in the rats subjected to the acute stressor, indicating that PACAP is an important mediator for the neural stress response. By determining this relationship between neuropeptide expression and stress response, PACAP antagonists could be potentially used in drug therapies to help patients experiencing stress related health conditions.
- Presenter
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- Xintong (Erra) Li, Senior, Nursing UW Honors Program
- Mentor
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- Tatiana Sadak, Nursing, UW SON
- Session
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- Commons West
- Easel #38
- 11:00 AM to 1:00 PM
The use of Potentially Inappropriate Medications (PIM) in elderly is common and can lead to increasing risks for adverse drug events, morbidity, and increased utilization of health care resources. Early identification of PIM can improve the quality of care in elders and reduce hospitalizations. This study aims to identify PIM in a sample of N=60 people living with dementia who recently experienced a hospitalization and to evaluate what PIM are most common. We also aim to evaluate correlations between PIM and the number of patient’s chronic conditions and the total number of medications. Our hypothesis is that patients with higher burden of illness (more conditions and medications) can have higher number of PIM. We identified PIMs by evaluating medical records using the STOPP/START criteria. The STOPP/START criteria classify inappropriate medications that should be stopped as well as the appropriate medications that should be started instead.Descriptive statistics was used to describe the sample and the prevalence of PMI, chronic conditions and medications. Correlation analyses was used to explore relationships between the variables. Study findings will inform healthcare providers about the prevalence of PIM and help identify patients who are at higher risk of PIM.
- Presenter
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- Julia Lin, Senior, Sociology/Anthropology, University of Puget Sound
- Mentor
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- Margi Nowak, Anthropology, Sociology, University of Puget Sound
- Session
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- Commons West
- Easel #42
- 11:00 AM to 1:00 PM
This research seeks to assess the feasibility of sustainable community engagement amidst urban planning projects. It seems like every other day there is city construction taking place in hopes of becoming the next major metropolis; a new public park here, a microbrewery opening right down the street -- when do we draw the line between neighborhood revitalization and gentrification? When a city government agrees to sponsor a revitalization project, we must consider the following questions: who will take on the responsibility of which roles? What level of city intervention is actually appropriate and in which spaces? More importantly, we must ask if there are concrete strategies moving forward; what other actions can be done in order to ensure the continued development of this project? I assess these questions more broadly through a case study comparison between two ongoing urban development projects: the Lincoln District Revitalization Project (LDRP) happening in Tacoma, Washington, and the Bayview-Hunter’s Point Redevelopment Project (BHPRP) taking place in San Francisco, California. I explore not only the ways in which city administrators provide accessible opportunities to ensure community involvement, but also the potential resources that can be established to sustain future collaboration amongst city and community. Two types of populations from both cities are assessed: local residents and municipal government actors. I spend my time in various project sites where city members and community members frequent, conducting both unstructured and semi-structured interviews of these two populations over the course of 10 months. My findings show that distinctions upon the relationship between cultural vitality and economic vitality are essential in ensuring effective development that engages all stakeholders.
- Presenters
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- Li (Lily) Ling, Freshman, Biology, Pierce College
- Ran Jin, Freshman, Biology, Pierce College
- Mentor
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- Elysia Mbuja, Biology, Pierce College
- Session
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- MGH 241
- Easel #136
- 11:00 AM to 1:00 PM
In this study, we focused on identifying specific genes that make Pseudomonas fluorescens L5.1-96 a potential biocontrol agent to combat wheat take-all disease. This strain is a supercolonizer meaning it suppresses fungal pathogens in the soil and colonizes the rhizosphere of plants. This strain has not yet been fully sequenced; therefore, analyzing genomic data will contribute to its classification. Our first step was increasing the amount of L5.1-96 DNA through culturing E. coli that contained an insert of L5.1-96 DNA. Next we extracted L5.1-96 DNA using the Qiagen miniprep kit, amplified the DNA insert using linear sequencing, and sent our cleaned DNA samples to Bellevue College for Sanger sequencing. We ran bioinformatics software (NCBI BLAST) to compare our DNA insert with previously sequenced genomic data. We found our DNA sample resulted in a 98% match with genes from Pseudomonas brassicacearum strain BS3663; therefore this indicates a phylogenetic relationship between the two Pseudomonas species. While we did not discover any new genes or novel proteins, our sample coded for tRNA preQ1(34)S-adenosylmethionine ribosyltransferase-isomerase QueA which is a nutrient protein found in both eukaryotes and bacteria. We have contributed to the genomic analysis of strain L5.1-96 and with this information it is possible one day all of the data together will lead researchers to fully evaluate strain L5.1-96 and its ability to suppress wheat take-all disease.
- Presenters
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- Twana Remedios MacHado, Sophomore, American Indian Studies
- Piper Driskell, Senior, Anthropology: Medical Anth & Global Hlth
- Jurni Vaise (Leapagatele) Atanoa, Freshman, Pre-Nursing
- Mentor
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- Holly Barker, Anthropology
- Session
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- Commons West
- Easel #2
- 11:00 AM to 1:00 PM
In Samoan culture the va’a alo, the word for canoe, represents Samoan culture and indigenous science. The relationship between the canoe and the people who continue to use them reflect Samoan mana (cultural spirit). To understand the meaning of the canoe, it is important to understand the complexity and interconnectivity between the va’a alo and the natural world as well as the activities of the people on and off the canoe. Much of the history and resources about the va’a alo that are accessible to students have been tainted by a colonial lens and we strive to counteract these practices and bring forward the beauty and relevance of indigenous knowledge connected to the va’a alo. Our research emphasizes the importance of how Samoan culture connects its people to the canoe. We examine the cultural significance of the canoe design and the role of each person on the canoe. To understand the Samoan canoe, we must also understand its people and cultural values as reflected in canoe practices. Our research methods include lived knowledge of ceremonies and spiritual beliefs as well as interviews with Samoan elders, analysis of mythology, tattoos, proverbs, siva samoa (dance), and published voyages. We are conducting this research to educate the Seattle public through the Burke Museum of the importance of indigenous canoes and their value in Samoan culture throughout history and still today. We hope our results will help current Samoan generations, and even non-Pacific Islanders, to keep in touch with their Samoan traditions and ancestors. Maintaining this indigenous knowledge for the future is also a prominent goal that we hope to pursue. We want to keep this Samoan and the traditions of the canoe alive.
- Presenter
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- Lori MacPherson, Sophomore, Diagnostic Ultrasound Technology, Shoreline Community College
- Mentor
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- Trena Redman, Nursing, Shoreline Community College
- Session
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- Commons West
- Easel #39
- 11:00 AM to 1:00 PM
Fetal ultrasounds are frequently associated with joy and happiness for expecting mothers, however, women seeking termination can be subjected to emotional and financial distress due to mandatory ultrasound screenings. My literature review examined how different ultrasound laws and healthcare coverage impacted women in Washington and Texas. These states have very different regulations and coverage for ultrasounds during pregnancy or termination. To do this, I examined laws in each state regarding fetal ultrasounds to see if there were benefits or disadvantages for women choosing to carry their pregnancies to term versus choosing to terminate. My findings showed women seeking termination in Texas undergo a mandatory viewing of their fetal ultrasound before they can access termination, whereas, women in Washington are not required to do so. Payment coverage for ultrasounds also varied between states. Differences in required payment for private insurance and Medicaid disadvantaged women in Texas, but not Washington. My findings showed Texas Medicaid did not cover the mandatory ultrasound before termination, whereas Washington Medicaid covered all termination services. Texas Medicaid was also shown to offer less coverage for women intending to carry their pregnancies to full term than private insurance. Depending upon geographical residence and health insurance status, the ultrasound experience will vary significantly, especially for women seeking termination. With this research, I hope to increase awareness of the effects of mandatory ultrasound laws and gaps in payment coverage for women covered by Medicaid. Drawing attention to this issue and starting a conversation is the first step in moving towards an equitable health care system.
- Presenter
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- Shannon Joanna Maroney, Senior, Environmental Science & Resource Management
- Mentor
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- Dorothy Paun, College of the Environment
- Session
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- Balcony
- Easel #109
- 11:00 AM to 1:00 PM
This study explores the sustainability performance of international companies in the food and beverage industry. The research goal is to investigate whether sustainability performance is correlated (positively or negatively) or is not correlated with financial performance. The Global Reporting Initiative’s sustainability reporting framework, called GRI, provides principles and metrics for reporting corporate environmental and social responsibility impacts. The Financial Accounting Standards Board financial reporting framework, called generally accepted accounting principles (GAAP), is used to prepare corporate financial reports. Both the GRI and GAAP frameworks provide consistency, so report users can analyze a company’s performance over time as well as in comparison to competitors. The Sustainability Performance Assessment (SPA) System developed by Paun (2015) incorporates GRI and GAAP measures for reporting triple bottom line performance (i.e., financial, environmental, human rights, labor practices, product responsibility, society, economic). Using the SPA System, data was extracted from 2016 sustainability and financial reports and analyzed in terms of the following multi-dimensional performance variables: environmental, human rights, labor practices, product responsibility, society, economic, revenue, leverage, and profit. The sample companies are based in Europe and the U.S. Their 2016 revenues ranged from $8.9 billion to $91.5 billion and employees ranged from 42,000 to 328,000. Data was analyzed using descriptive statistics (e.g., performance mean, degree of transparency, transparency weighted performance mean). Preliminary research findings suggest that correlations exist among the triple bottom line sustainability variables. This research reveals broader trends about the impacts of multi-national companies on the consumers they support and environment they influence.
- Presenter
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- Colleen Claire McCullough, Senior, Nursing UW Honors Program
- Mentor
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- Andrea Landis, Family and Child Nursing
- Session
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- Commons West
- Easel #7
- 11:00 AM to 1:00 PM
There is currently a lack of research in how transgender adolescent populations are affected by sleep and depressive symptoms. Sleep is incredibly important for teens, and there are links between depression and negative sleep outcomes. The purpose of this study is to examine correlations between gender, depression, and sleep in adolescents. I am using all data from a previous study that was comparing sleep and obesity in 100 cis-gendered adolescents aged 12 to 18. I am using this data to determine if a significant correlation exists between gender, objective sleep measures including total sleep time, sleep onset, wake after sleep onset, sleep efficiency (measured via Actigraphy), and depressive symptoms (measured via Center for Epidemiologic Studies Depression Scale, with scores of 16 or higher considered positive for significant depressive symptoms). An ANOVA test is being used to analyze for a significant correlation between gender, mean sleep time in minutes, and the presence or absence of depressive symptoms. The analysis of this data determines whether or not gender has a role in sleep and depressive outcomes, thereby determining the need for a further study of sleep and depressive symptoms in transgender adolescent populations.
- Presenter
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- Jonathan H. (Jon) McLean, Senior, Aquatic & Fishery Sciences
- Mentors
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- Rebecca Neumann, Civil and Environmental Engineering
- Pamela Barrett, Civil and Environmental Engineering
- Session
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- Commons East
- Easel #64
- 11:00 AM to 1:00 PM
The south Puget Sound region has a history of smelting activity, notably the ASARCO smelter that operated in Ruston, WA. Despite the smelter being closed, the consequences of this smelting activity are still felt today. Due to high levels of arsenic contamination in the region’s soils, the area was designated a SuperFund site. Preliminary research conducted in 2014 indicated that several urban lakes in the Tacoma/Federal Way area also have high levels of arsenic in their sediments. If the arsenic is mobilized into the water column, where it can be taken up by lake biota and biomagnify up the food chain, it could potentially affect human health and ecosystem health. We examined two lakes, Angle Lake and Lake Killarney, that have the same amount of arsenic in their sediments, but different physical properties likely impact the release of arsenic into the water column. Angle is seasonally stratified, while Killarney remains well-mixed all year. Consequently, the bottom waters of Angle Lake stay at a relatively stable temperature of 4-10°C and consistently have arsenic concentrations between 30-100 ppb year-round. In contrast, bottom waters in Lake Killarney warm significantly from 4°C in the winter to 21°C in the summer and arsenic concentrations increase from 75 ppb to 700-1000 ppb. We hypothesize that temperature is the primary control on the release of arsenic from the sediments. To test this hypothesis, sediment cores were taken from each lake and placed into plastic tubes. To test this hypothesis, sediment cores were collected from each lake in the winter when all lakes have low bottom water temperatures. The cores were placed into two different temperature treatments, 10°C and 20°C. Samples of the water overlying the cores will be taken every week and measured using ICP-MS to determine the flux of arsenic out of the sediments.
- Presenters
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- Alisha Jenae McNett, Senior, Biology (Ecology, Evolution & Conservation)
- Shourya Jain, Junior, Computer Science
- Mentors
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- Aakash Sur, Medical Education & Biomedical Informatics
- Peter Myler, Medical Education & Biomedical Informatics
- Session
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- MGH 241
- Easel #152
- 11:00 AM to 1:00 PM
As the field of genomics continues to grow, there is an overwhelming need for robust ways to assemble entire genomes, yet there is little guidance on what software best achieves this goal. An assessment of available genome assemblers is needed to improve assembly procedures. Genome assemblers output draft assemblies consisting of DNA scaffolds that are permeated with errors inherent to sequencing data, like wrong number of repeats, misjoins, inversions, missing sequencing, and extraneous sequences. These draft assemblies can then be input into an experimental assay called HiC that attempts to fix and orient the assemblies by taking into account chromatin contact interactions to elucidate genome architecture. The resulting genome is then more accurate and useful for research purposes. However, given the plethora of genome assembly and HiC software available, navigating each available software is time consuming and often requires extensive testing before actual use can begin. To improve this process, we aim to review several HiC scaffolding software tools for performance and quality, and fine tune their parameters for optimized outcome. This will allow us to suggest which software work best for a range of genomic data as well as provide summary statistics and accuracy measurements for each genome assembler tested. We tested several genome assemblers, including GRAAL and SALSA, which utilize HiC libraries to scaffold draft assemblies. After being produced and corrected through assemblers, these assembled genomes can then be used to advance research in functional genomics, genetic epidemiology, and many other fields reliant on genomic data. It is our goal to improve genome assembly procedures so that more researchers can use open source software to build and understand entire genomes and further the field of genomics.
- Presenter
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- Cierra Medalia, Sophomore, Interior Design, Shoreline Community College
- Mentor
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- Claire Fant, Humanities, Shoreline Community College
- Session
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- Commons West
- Easel #26
- 11:00 AM to 1:00 PM
When you first walk into a classroom, do you think about the intent behind the design? This literature review examines the environmental psychology of classroom design through analysis of the connections between students and the physical characteristics of their surrounding learning environments to better understand what sort of structural, technological, and decorative features can be implemented to facilitate engagement and collaboration in modern classrooms. Physical features of educational facilities, such as lighting, acoustics, air quality, heating, the increased use of technology, the transition from lecture to collaborative learning, and the decor that educators choose for their classrooms to inspire their students are all key factors to consider when discussing the types of classrooms that improve and facilitate critical thinking. Accessibility to the resources necessary to provide the most optimal learning environment proved to be a concern, but my findings show that minimum structural quality and simple environmental cues like stimulating visuals that signal to students that they are valued learners can maximize educational outcomes for many students. My analysis of architectural, student, and teacher perspectives as well as evidence from academic journal articles concluded that learning environments encouraging creativity, reflection and the development of individual ideas are accessible simply by humanizing the institutional formality of the room—providing a safe and comfortable learning space while also supporting engagement and discussion facilitation through flexible furniture arrangements, displays of student work, and the effective use of technology. My findings will support further studies regarding the development of methods and implementation educational standards that focus on how to improve classroom designs and student experience. School classroom culture impacts students directly, therefore, the shift from traditional information-delivery lecture hall interior layouts to classroom that inspire critical thinking is essential when building or designing educational spaces for all students.
- Presenter
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- Jolee J. Melink, Senior, Social Welfare, American Ethnic Studies Mary Gates Scholar
- Mentors
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- Kevin Mihata, College of Arts and Sciences
- Beth Van Fossan, Social Work
- Session
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- Commons East
- Easel #85
- 11:00 AM to 1:00 PM
International Transracial Adoption (ITRA) is something that became popular in the 1950’s and adoptions from Asia has accounted for approximately half. International adoption occurs when a child from one country is adopted into another. Transracial adoption is the phenomena of adoption across racial and ethnic identities. While popular, the effects of ITRA on racial and adoptee identity formation are still unknown. The study focuses on the Adoptee Mentorship Program (AMP) and AMP’Lified Program that teach International Transracial Adoptees (ITRAs) from Asia about racial and adoptee identity while building community. This study aims to understand how a mentorship program could affect the adoptee and racial identity formation process for other adoptees ages 5-18. The study used a series of program evaluation surveys to determine the effects of the mentorship program on adoptee and racial identity formation. It is hypothesized that the mentorship program will allow ITRAs to develop a stronger sense of their racial and adoptee identity. This was measured through several short answer and likert scale questions focusing on how the adoptee identifies themself as an Asian and as an adoptee. Questions measured self-esteem, knowledge around race and adoption, and whether or not the ITRAs felt a sense of community from the mentorship program. The pre and mid-way survey were conducted in November and March respectively. It is believed that data from these two surveys will show a positive correlation between the AMP and AMP’Lified Programs and the racial and adoptee identity formation for the youth. The final survey will be conducted at the end of the program in June and researchers hypothesize the program will continue to strengthen the racial and adoptee identity of ITRAs. Understanding the effects of mentorship programs on adoptee and racial identity formation for ITRAs will allow for better post-adoption resources and services for adoptees.
- Presenter
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- Sandra Mena, Junior, Mathematics, Education, Heritage College McNair Scholar
- Mentor
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- Jessica Black, Environmental Science, Heritage University
- Session
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- Balcony
- Easel #120
- 11:00 AM to 1:00 PM
Biochar is used as a soil amendment and is created from plant biomass through pyrolysis. Biochar is thought to help plants grow by increasing the fertility of soil as well as impacting water retention in soils. This led to the question: Does biochar increase the water retention of soils found in the Lower Yakima Valley, allowing for a reduction in the amount of water that is needed to grow bell pepper plants in this water-stressed region? This research delves into the effectiveness of biochar by testing water level usage in real world plants grown in two concentrations of biochar (0.5% and 1%) applied to soils trial plots located in the Heritage University Research Farm. A random generator was used to create a split-plot design with three concentrations of biochar (0% or control, 0.5%, 1%) each with three replicates. The spilt-plot contained two different watering schemes. A total of 576 greenhouse grown Capsicum annum plants were transplanted to 18 plots, each plot containing 32 plants. To test the efficiency of biochar in soil water retention, soil moisture data, plant height, dry weight of the plants, and yield abundance were measured. Results indicate that the presence of biochar in soil can lead to increases in biomass of up to 100% in certain conditions. However, there were irrigation engineering complications that led the inability to reliably control the irrigation rates in the two split plots (originally planned for 100% in section 1, 80% reduced flow in section 2). The soil moisture data were inconsistent and highly variable reflecting potential instrument calibration issues, multiple instances of damage to the drip tape leading to water leaks, and persistent problems with the timing mechanisms for watering lines. This experiment led to significant improvement our methods for the following bell pepper research for the following year.
- Presenter
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- Nadia Miranda, Junior, Biotechnology, Calif St University San Marcos McNair Scholar
- Mentor
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- Julie Jameson, Biology, California State University San Marcos
- Session
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- MGH 206
- Easel #167
- 11:00 AM to 1:00 PM
According to the Center for Disease Control, more than one third of the U.S population is obese. Preliminary data in our laboratory has shown that obesity reduces the number of T cells in the intestines of mice. This reduction of T cells leads to impaired tissue repair in dextran sulfate sodium (DSS)-induced colitis models and compromises the protective barrier against pathogens and exposure from the outside environment. Thus, our goal was to identify how to restore the number of T cells to improve intestinal homeostasis. We investigated whether T cell numbers in the intestine can be fully restored through diet-induced weight loss. Briefly, 6 week old male mice were placed in one out of three cohorts: one cohort was placed on a normal chow diet for 14 weeks, the second cohort was placed on a high fat diet for 14 weeks, and the third cohort was placed a high fat diet for 7 weeks and switched to a normal chow diet for the remaining 7 weeks. While mice placed on a high fat diet exhibited a significant reduction in T cell number, mice that underwent diet-induced weight loss exhibited a full restoration of T cell number in the small intestine. In addition, the dieted mice also showed improved survival when challenged with DSS-induced colitis. These studies are now being followed up with RNA-sequencing experiments to investigate how gene expression is changing within the intestine and better understand the mechanisms of T cell loss in obesity.
- Presenters
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- Faarah Misbah, Senior, Psychology
- Jeong Moon (Vanessa) Lee, Senior, Psychology
- Mentors
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- Jenny Yang, Psychology
- Laura Brady, Psychology
- Session
-
- Balcony
- Easel #88
- 11:00 AM to 1:00 PM
Family size matters. As a family grows, parents dedicate less time as well as financial and emotional support to each child. Siblings often have to compete for parental resources whereas only children receive full support from parents throughout their lives. Previous research has found that competition leads people to adopt performance goals (i.e., motivation to perform better than others). In big families, competitive environments may signal that being more successful than others is important, making performance goals more salient than in a family where one is the only child, where mastery goals (i.e., motivation to master new skills) may be more salient. In an exploratory study, we examined whether family size shapes people’s motivations for learning. We predicted that students with siblings would be more motivated to learn by competing with others (performance orientation) while only children would be more motivated by honing their skills (mastery orientation). To test this hypothesis, we recruited 328 participants (166 only children and 162 with siblings) for an online study in which they completed the Achievement Goal Questionnaire and provided information about their race and number of siblings. As predicted, only children more strongly endorsed mastery orientation (M=3.93, SD=.58) compared to students with siblings (M=3.80, SD=.62, t(326)=1.99, p=0.5). Students with siblings endorsed performance orientation (M=4.05, SD=.78) marginally more than only children (M=3.90, SD=.73, t(326)=1.90, p=.06). While further research is needed to understand why these differences emerge (e.g., due to competition or other differences in family environments), our study lends insight into how people’s family experiences shape their academic motivation. These findings many help educators learn how to best motivate students from different types of families.
- Presenter
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- Michaela Montstream Baker, Senior, Nursing UW Honors Program
- Mentor
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- Oleg Zaslavsky, Biobehavioral Nursing & Health Systems
- Session
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- Commons West
- Easel #37
- 11:00 AM to 1:00 PM
Osteoarthritis and disturbed sleep negatively impact the daily life of many older adults (65+) in the United States. While previous research shows that physical activation can improve osteoarthritis and sleep disturbances, it is often a challenge to motivate older adults to engage in daily physical activity. Walking is the most common and affordable form of physical activity and therefore provides a practical target for health behavioral interventions. The objective of this study is to examine if, in older adults with osteoarthritis and sleep problems, a wearable wrist-worn device (Fitbit) combined with infrequent motivational text messages and phone calls targeting physical activity improve participants step count and sleep. To examine this question, we recruited 20 older adults over the age of 65 who have clinically diagnosed osteoarthritis, have a sleep deficiency (defined by a score greater than or equal to 12 on the Insomnia Severity Index) and were judged to be underactive (doing physical activity less than 30 minutes a day). This data is then analyzed to see if there is a change in participants step count and the effect of this change on their sleep symptoms. Preliminary results show that step count improved over time such that there was almost a 400 step increase per day between baseline and week 14. Ultimately, this work will increase our understanding of mobile interventions and their potential effectiveness in helping patients to engage in more physical activity as a cost-effective way of improving sleep.
- Presenters
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- Brooke Mooney, Senior, Anthropology: Medical Anth & Global Hlth
- Dalena Kim Tran, Junior, Biochemistry
- Mentor
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- Holly Barker, Anthropology
- Session
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- Commons West
- Easel #3
- 11:00 AM to 1:00 PM
The Marshall Islands are often recognized as the victims of US nuclear weapon testing, leaving a lot unsaid about who they are as a people. This dark past often times overshadows the resilience and ingenuity within the Marshallese culture. This research project is aimed to gain a better understanding of Marshallese culture through their canoes and navigation techniques. The way that they navigate and construct their vessels plays a large role in their lives; their voyages, their developed culture, language and livelihood. Our methods include interviewing Marshallese community members within Seattle, analyzing navigation articles, wave charts and using the Burke Museum collection database for information on Marshallese canoes. We anticipate that this project will result in the general public walking away knowing the strengths of the Marshallese and a better grasp of one of the cultures in Oceania that is often underrepresented. It is important to look into other cultures, especially those we do not know a lot about, because you can learn so much from them. We also anticipate making relationships with those we interview and by understanding the views and values of their culture. By the end we hope to have opened the door for future research in this realm to encourage people to explore this on their own and participate in clubs and organizations.
- Presenter
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- Solomon T. Muche, Senior, Bioengineering McNair Scholar
- Mentors
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- Wendy Thomas, Bioengineering
- Olga Yakovenko, Bioengineering
- Session
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- MGH 241
- Easel #150
- 11:00 AM to 1:00 PM
Infective endocarditis (IE) is a life-threatening bacterial infection of heart valves. In comparison to treating other diseases, IE treatment is especially difficult to treat due to an increased resistance to conventional antimicrobial agents as well as a continuously high shear environment of the endocardium wall. Even after receiving prompt therapy, patients with streptococcal endocarditis often develop complications- including heart failure, progressive valve destruction, and stokes. Though the interactions between adhesive bacteria such as streptococci group of viridians (the major cause of IE) and platelets are known to facilitate bacterial vegetation in damaged heart valve, it is not well known how the bacteria bind through hitchhiker binding events (a specific interaction of platelets with streptococcus group viridans). Mainly, it is unclear whether bacteria bind to platelets and then to heart valves, or if the bacteria bind to platelets which are already found on inflamed heart valves. To successfully characterize these spatial and temporal events, we used a parallel microfluidic device to develop a model. Specifically, we used our humanized in vitro model of infective endocarditis to understand the initial stages of the disease. We are demonstrating that the number of adherent bacteria can be measured after bacteria mixed with various blood components is washed through to the device, with sufficient accuracy to test hypotheses regarding the adhesion phase. Finally, we quantified the number of bacteria in vegetation after a growth phase following the adhesion phase. The findings from this design can potentially lead for the development of novel molecular therapeutic mechanisms. These will have implications not only for infective endocarditis, but also all other endovascular infections with a shear environment.
- Presenters
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- Hannah Nguyen, Senior, Biochemistry, English (Creative Writing)
- Gurdeep Gill, Senior, Philosophy UW Honors Program
- Mentor
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- Karin Frey, Education, U of Washington
- Session
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- Commons West
- Easel #21
- 11:00 AM to 1:00 PM
The way adolescents describe their emotions shapes how they view themselves, peers, and the world around them. Observational and experimental studies have shown feelings of gratitude in particular to be linked to an increased sense of well-being, academic performance, and prosocial behavior. Previous studies have defined “gratitude” as an appreciation of what is valuable or a state of appreciation. This study explored 1) how gratitude varies across different peer interaction scenarios and ethnic groups, and 2) how adolescents explain the emotion gratitude. Studies have yet to examine how ethnically diverse students interpret the emotion. Our sample size consisted of 300 students from ages 12-18, evenly divided between African, European, Mexican, and Native Americans across Washington state. Students provided explanations of times where they were an actor and recipient in four different scenarios: calming, amplifying, avenging, and reconciling a peer. In each scenario students rated how grateful they felt and why. Quantitative analyses demonstrated that students’ levels of gratitude varied by role and scenario, but did not vary by ethnic group (all ps < 0.001). This suggested that adolescents’ definitions of gratitude could vary in different roles as well. To understand influences on gratitude in adolescents, we coded students’ explanations for their actions across all four scenarios to see if different definitions of gratitude were being used in each role. We also present results of demographic analyses relating to gratitude levels (gender, ethnicity, grade level). The results of this study contribute to research on adolescent mental health and peer relationships in school contexts, and could also help school practitioners work towards learning environments that promote student well-being and more stable peer interactions.
- Presenter
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- Chase Nielson, Senior, Biochemistry, Everett Community College
- Mentors
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- Ardi Kveven, Ocean Research College Academy, Everett Community College
- Robin Araniva, Ocean Research College Academy, Everett Community College
- Session
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- Balcony
- Easel #107
- 11:00 AM to 1:00 PM
Eelgrass (Zostera marina) is a vitally important organism to the Puget Sound that exists along the shallow, muddy seabed. Many different living creatures of all trophic levels rely on the eelgrass beds to survive and absorbed contaminants could be a real threat. Toxics metals in the eelgrass, sediment and water column could have critical implications to the ecosystem. The heavy metal concentrations in the eelgrass, sediment and the water column of two locations in the Possession Sound (Mukilteo and Buoy) were analyzed in order to determine the specific levels of metals and contaminants that travel up through the trophic pyramid. The study endeavors to determine the metal absorbance ability of eelgrass and check if factors including temperature of the water column, seasonality or time of day influenced heavy metal uptake by eelgrass. A sediment grab was utilized to collect the sediment and eelgrass samples. Sample analyses were conducted at the Everett Environmental Laboratory and in partnership with a University of Washington trace metals laboratory to find the concentration of the metals arsenic, copper, lead, zinc and cadmium in the surrounding water column and the eelgrass. It was predicted that greater concentrations of copper and zinc would be found near Buoy because they are legacy chemicals and due to anthropogenic influences near the Everett Port of Everett. It was also hypothesized that a higher concentration of metals would be found in the eelgrass during the spring and summer as more direct sunlight leads to greater primary productivity and uptake of chemical constituents. Determining these types of correlations and catalysts is significant to the entire Possession Sound ecosystem as it would lead to possible strategies on how to prevent further contamination of eelgrass. Furthering our understanding of the connected network of interactions here can only benefit the future inquiries.
- Presenter
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- Shamus Martin Nolan, Senior, Education, Communities and Organizations
- Mentor
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- Jondou Chen, Education
- Session
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- Commons West
- Easel #25
- 11:00 AM to 1:00 PM
Post 9/11 Veterans are more equipped to be successful than any other veteran generation. After three years of honorable enlistment, service members can use the G.I. bill to receive 36 months of tuition and living expenses for education at state and private institutions. Despite increased access to education, there is a decrease in veteran entrepreneurs compared to post WWII veterans. The present demographics in the military consist of individuals from a wide range of cultures and backgrounds with more female and non-white ethnicities represented. Additionally, the current military service is largely non-combatant and voluntary, which contrasts to the conflicts in the last century such as a draft in the Vietnam Era and WWII. The diversity and skill sets of the current veteran population align more with the growing diverse general population. Yet, Bunker Labs has found primarily a specific demographic of the veteran population, white male officers, pursue entrepreneurship disproportionately. Bunker Labs and other similarly focused organizations look to continue positive leadership experiences that the military establishes, that are hard to find after service. This research looks to compare the barriers and assets veterans specific to Bunker Labs and the local veteran populace face as entrepreneurs, and how the not for profits such as Bunker Labs and institutions such as the University of Washington, business, and local governments can work to create a successful startup ecosystem. This paper reflects the differences between different types of backgrounds, rankings, and specializations that veterans bring into business to understand the kind of needs that our nation's heroes require to make their dreams come true.
- Presenters
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- Mark William (Mark) Odendahl, Senior, Electrical Engineering
- Alyssa Rose Johnsen-Krogh, Junior, Pre Engineering
- Mentor
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- Graham Allan, Electrical Engineering
- Session
-
- Commons East
- Easel #73
- 11:00 AM to 1:00 PM
Past research has discovered a technique for photocatalyst synthesis utilizing never-dried cellulose fiber in order to produce non-agglomerating nanocrystals. This new technique allows the production of semiconductors in a flexible form. This form is useful in many areas, including in spacecraft technology, where solar panels must be kept in a compact form before deployment. One possible catalyst for this is gallium arsenide (GaAs), which holds many traits that are favorable to semiconductor devices in electronics. With a band gap that is receptive to visible light and many industry applications in radio frequency, light sensors and LEDs, gallium arsenide is an attractive candidate for storage in cellulose fiber. In particular, this storage method allows for the synthesis of long strands containing GaAs that are useful in solar cells. In order to form an electrostatic region necessary for electronic applications, a P-N junction must be formed within the compound. This is usually done by heating the compound and injecting ions into the structure so that P-N junctions are naturally formed. However, since the fibers are unable to be heated to the temperatures needed without compromising the storage, we instead propose that a magnetic field can be placed across the semiconductor during formation, with doping ions placed within the fiber so that the junctions naturally form within the GaAs structure. This new method for semiconductor production has the potential to offer a new strategy for electronic production that can exist in a flexible format.
- Presenters
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- Naresh Oli, Senior, Biology (General)
- Dylan Marshall Moorleghen, Junior, Pre-Sciences
- Mentors
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- Alison Crowe, Biological Sciences
- Justine Liepkalns, Biology
- Casey Self, Biology
- Jennifer Doherty, Biology
- Session
-
- Commons West
- Easel #18
- 11:00 AM to 1:00 PM
As more technology that utilizes personal electronic devices (PEDs) are being integrated in classrooms, the possibility of cell phone distraction is a real concern amongst many educators. Because of this, we became interested in cell phone use patterns in highly interactive biology classrooms at UW, and what factors influence their use. To answer this, we investigated the impact of in-class polling using PEDs or using clickers (older, standalone devices). We compared cell phone use in two different quarters (same course, same instructor) that either used PEDs or clickers for in-class polling. We also compared the cell phone use in the beginning of quarter vs. the end. In addition, we looked at whether classroom seat location correlates with cell phone use. To assess cell phone use, we directly observed active learning introductory biology lectures. Three to four researchers observed each seat in a designated section of the lecture hall and noted if a cell phone was visible (used as a proxy for use), three to five times during a class session. We used logistic regression and model selection to find a best fit model to determine if polling technology type, seat location or time of quarter (beg. vs end.) can predict cell phone visibility. To our surprise, the results indicated that neither Poll Everywhere nor time of quarter increased the already low cell phone visibility. However, our results also indicated that students that are sitting away from professor (back of classrooms) are more likely to use their cell phone than their peers regardless of polling technology. Taken together, we suggest instructors with highly interactive classrooms should not worry about integrating newer polling technologies. Further, instructors may look into having more TAs or peer facilitators roam around the classroom, especially in the case of large lecture halls to avoid cell phone misuse.
- Presenter
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- Amanda Jean Opuszynski, Fifth Year, Speech & Hearing Sciences
- Mentors
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- Tanya Eadie, Speech & Hearing Sciences
- Mara Kapsner-Smith, Speech & Hearing Sciences
- Session
-
- Balcony
- Easel #96
- 11:00 AM to 1:00 PM
Speech-language pathologists (SLPs) evaluate voice quality using perceptual judgments, an important method for assessing voice disorders. Ideally, perceptual judgments exhibit both intrarater reliability, in which one listener rates voices consistently, and interrater reliability, in which different listeners rate the same voices similarly. In practice, several sources of perceptual variability confound reliability, including the scaling method itself. SLPs typically use visual analog scales (VAS), in which a response is recorded along a continuous scale between two endpoints (e.g., normal to severely breathy). While other scaling methods may be more reliable than VAS, they present challenges for practical application. Visual sort and rate (VSR) is a promising scaling method, in which a listener rates voice samples using a VAS, and each voice sample serves as a perceptual reference point for other samples in the set. My study will determine 1) whether VSR yields greater intrarater and/or interrater reliability than traditional VAS in ratings of speakers with voice disorders by inexperienced listeners, and 2) whether this effect occurs for both overall severity (OS) and an isolated perceptual dimension (breathiness). I recruited five SLPs (“expert listeners”) and 20 inexperienced listeners. I sorted fifty voice samples into six sets, with a variety of severity levels in each set based on ratings by the expert listeners. To measure intrarater reliability, I repeated 20% of the samples. I instructed the inexperienced listeners to rate the samples for OS and breathiness, using both VAS and VSR. I varied task order (VAS/VSR) and dimension order (OS/breathiness) to control for learning effects. I will analyze the inexperienced listeners’ ratings to determine whether VAS or VSR yields greater intrarater and interrater reliability. I hypothesize that VSR will produce more reliable ratings of OS and breathiness. Results of my study may support clinical application of VSR for voice assessment.
- Presenters
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- Victoria Edlyne Orfaly, Senior, Public Health-Global Health UW Honors Program
- Bow Suprasert, Senior, Psychology
- Mentor
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- Susan E. Collins, Psychiatry & Behavioral Sciences, Harborview Medical Center
- Session
-
- Balcony
- Easel #98
- 11:00 AM to 1:00 PM
The prevalence of alcohol use disorder (AUD) and associated alcohol-related health conditions is disproportionately high among individuals experiencing homelessness. This disparity results in relatively high use of publicly funded services, particularly high-cost healthcare (e.g., emergency department and inpatient hospital services). A recent study of harm-reduction treatment for alcohol (HaRT-A) showed it was efficacious in reducing alcohol-related harm. The objective of this secondary study was to test whether HaRT-A had effects on inpatient and emergency department service utilization as well. Participants (N=167; 24% women) in this secondary study were recruited from community-based clinical and social services settings and were randomized to receive the HaRT-A intervention or services as usual. Outcomes were post-pre differences in number of inpatient and emergency department visits from 6 months prior and subsequent to study participation. There were no significant group effects on changes in emergency department and inpatient visits (ps > .78). HaRT-A did not precipitate significant changes in utilization of emergency and inpatient services by individuals experiencing homelessness and AUD. The study time frame might have been too short to document changes in such statistically rare outcomes. It is also possible that healthcare outcomes are too distal to show the impact of such a brief intervention. Future treatment trials should include longer data collection time frames to test treatment effects on more distal yet important health-related outcomes.
- Presenter
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- Moriah Justine Ortega, Senior, Nursing UW Honors Program
- Mentor
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- Josephine Ensign, Psychosocial & Community Health
- Session
-
- Commons West
- Easel #33
- 11:00 AM to 1:00 PM
Homelessness among youth in Seattle’s University District has become a crisis that has been overlooked and neglected by our community. The lack of accessible resources and poor educational opportunities, have made it difficult for this population to have their basic needs met. A major resource homeless youth lack is a solid support system. This research project is part of a larger community project that is looking at the barriers that are inhibiting homeless youth from meeting their needs and escaping homelessness. The purpose of this study is to describe, from the youth’s perspective, the resources and support that are needed to help them achieve overall health. The larger study will design and implement a sustainable community café for homeless youth and youth at risk for homelessness in the University District that provides services and support. For this study, we applied a digital storytelling methodology, which is used as a community based participatory approach, to gain better understanding of youth homelessness and their needs in their own words. Digital storytelling is typically a short video 3-5 minutes long. The interviews were guided by questions as well as open conversation for the participant’s to share their story of homelessness. We conducted three interviews and created three digital stories. This study did not contain random sampling and was conducted strictly by a volunteer basis. After the interviews were conducted we used digital images with voice-over narrative to create the digital story. The aim was to analyze these videos to shed light on the specific needs the youth have. It also served to give researchers more information on the particular barriers homeless youth are currently facing and guided activities within the community café. These will also help suggest legal and policy reform in the homeless youth community as well as bring greater awareness to the community.
- Presenter
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- Leah Oswinn, Senior, Psychology, University of Nevada Las Vegas McNair Scholar
- Mentors
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- Jennifer Rennels, Psychology, University of Nevada Las Vegas
- Stephanie Verba, Psychology, University of Nevada, Las Vegas
- Session
-
- Balcony
- Easel #101
- 11:00 AM to 1:00 PM
Infants with predominantly female primary caregiver experience show a visual preference for female faces and process female faces with relative ease in comparison to male faces. Yet, little is known about infants with male primary caregivers. The proposed study will examine how predominant male caregiver experience in infancy influences the development of implicit gender associations in early and middle childhood. Additionally, parents will complete a week-long survey of experience and behavior scales examining the caregiver-child relationship. We predict that children with predominantly male primary caregiver experience will show fewer implicit associations towards females and warmth and males and power. The primary caregiver-child relationship might also modulate the development of implicit biases related to biological sex. This study will be the first to investigate the development of implicit association related to biological sex in children with a male primary caregiver.
- Presenter
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- Alexis Oxley, Junior, Environmental Studies, Heritage College McNair Scholar
- Mentor
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- Jessica Black, Environmental Science, Heritage University
- Session
-
- Balcony
- Easel #121
- 11:00 AM to 1:00 PM
Previous research has shown that biochar is a supplement in fertile soil productivity. Biochar functions as a water and nutrient retention tool. Biochar helps prevent and decrease local eutrophication in local streams and water ecosystems by reducing the amount of fertilizers applied. Moreover, it’s essential in reducing the amount of water used, thus critical with projected looming drought conditions. In order to test the validity of the impacts of biochar in crops growth, we compared the diameter measurements of approximately 270 Capsicum annuum bell pepper plants. We selected bell peppers as our experimental crop for their practicality as an economical, simple crop and their pertinence of larger diameters which was correlated to the soil. According to preliminary results, we recommend the use of biochar as an enhancement product in pepper farming. Future research could explore the impacts of biochar on crop size on the different crops in the region. This research will provide beneficial information about enhancements to current agricultural practices regarding water and nutrient efficiency in crop growth.
- Presenter
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- Mack Paller-Moore, Senior, Biology (Molecular, Cellular & Developmental) Mary Gates Scholar
- Mentor
-
- Paul Crane, Medicine
- Session
-
- MGH 206
- Easel #173
- 11:00 AM to 1:00 PM
Alzheimer’s disease (AD) is a debilitating neurodegenerative disease that currently affects >5 million individuals. We have previously demonstrated genetic and neuropathology-based variation across cognitively-defined AD subgroups. Here we sought to determine whether patterns of vascular risk factors differed across cognitively-defined subgroups. We used data from the Adult Changes in Thought (ACT) Study and the Religious Orders Study/Memory and Aging Project (ROS/MAP). These are prospective cohort studies of individuals who are dementia-free at enrollment. We used cognitive data at the time of AD diagnosis to determine scores for memory, visuospatial abilities, language, and executive functioning. We used these scores to determine each individual’s average cognition and then domain-specific deficits below that individual average. We used these data to define six groups: no domain with a substantial relative impairment; isolated substantial relative impairment in memory, in visuospatial functioning, in language, or in executive functioning, and multiple domains with substantial relative impairments. We evaluated risk factors for these six groups from self-report and/or diagnosis data on vascular conditions, including diabetes, stroke, hypertension, atrial fibrillation, cholesterol levels, and coronary artery disease. We used multinomial logistic regression models with the no prominent domain group as the reference. To account for multiple comparisons, we present tests of the null that each risk factor is unrelated to each subgroup, and an omnibus test of the association between each risk factor and any subgroup. The proportion of individuals in each subgroup differ between the two studies. Our results suggest possible differences in risk for specific cognitive domain deficits associated with stroke history, HDL cholesterol, and treated diabetes. Subsequent work will attempt to understand possible mechanisms behind these associations through literature review. These results support additional efforts to further understand cognitively-defined AD subgroups.
- Presenter
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- Noushyar (Noush) Panahpour Eslami, Senior, Chemistry (ACS Certified) Mary Gates Scholar
- Mentors
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- Brandi Cossairt, Chemistry
- David Ung, Chemistry, Solar Energy Technologies Office
- Session
-
- MGH 241
- Easel #123
- 11:00 AM to 1:00 PM
Energy efficiency of important industrial chemical reactions is a motivation behind scientific research across a wide range of disciplines as a response to the growing energy crisis. Electrocatalysts play a crucial role in improving energy efficiency in the interconversion of electrical and chemical energy, and are essential components in any sustainable solar fuels conversion scheme. An issue in the widespread use of renewable energy sources is the fluctuation between energy demand and energy supply. This issue can be solved by using the renewable energy source to generate chemical fuels, storing the energy from the sun or wind in energy-dense chemical bonds to be released on-demand. One such fuel is molecular hydrogen, H2. Molecular [Ni(PNP)2]2+ catalysts are highly active catalysts for the hydrogen evolution reaction (HER) that employ pendant amines—an end group that assists with hydrogen production by allowing for efficient proton transfer. However, as molecular species, these catalysts suffer from low stability and low potential for scalability. The primary focus of this research is to develop an efficient nano-scale Ni2P synthesis based off prior syntheses in the literature, that incorporates cooperative ligands for HER on the surface. Our end goal is to determine the best method to synthesize Ni2P nanoparticles with enhanced activity due to the cooperative effects of pendant amine functionalities to create a nanomaterial catalyst with properties that meet and surpass the molecular [Ni(PNP)2]2+ catalysts for HER.
- Presenter
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- Shruti Sanjay Parikh, Senior, Environmental Studies, Environmental Science & Resource Management CoMotion Mary Gates Innovation Scholar, Mary Gates Scholar, NASA Space Grant Scholar, UW Honors Program
- Mentor
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- Sharon Doty, Environmental & Forest Sciences
- Session
-
- Balcony
- Easel #119
- 11:00 AM to 1:00 PM
Plants are affected by various abiotic and biotic stressors such as pollution, high salinity, drought, and pathogens which can inhibit growth or cause disease. High salinity, a type of abiotic stress that decreases crop productivity and quality, is especially widespread with nearly half of the world’s cropland facing salinity stress in 2010. This is problematic because there are very few plants that can tolerate high levels of salt and the process of remediation is water and energy intensive. However, endophytes, the beneficial bacteria that live within plants, have shown potential in helping plants tolerate these stressors in a more natural way either by directly reducing the stressor or indirectly by modulating the plant’s response to the stress. The main goal of this study was to isolate and test endophytes to determine whether they colonize other plants and help these plants tolerate high salinity conditions. In this study, a total of 15 salt tolerant endophytes were isolated from pickleweed and wild wheat growing in a marine estuary. These strains were then tested on bush beans and poplar to test salt tolerance conference. There were visible signs of higher stress tolerance in bush beans inoculated with endophyte SSP1 and poplar inoculated with SSP8. The results for the remaining endophyte strains are pending. By improving plant growth under abiotic stress, these bacteria will help promote sustainable agriculture practices and bioenergy production.
- Presenter
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- Diana Park, Senior, Oceanography, Earth and Space Sciences: Geology
- Mentor
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- Alexis Licht, Earth & Space Sciences
- Session
-
- Commons East
- Easel #49
- 11:00 AM to 1:00 PM
Myanmar, in Southeast Asia, has recently opened access to foreign geologists; however, most of the Burmese geology still remains to be studied. At the western edge of Myanmar, the Indo-Burman mountain ranges today form a prominent topographic high. One of the big mysteries in geology of Myanmar is the precise timing of the Indo-Burman Ranges uplift, which is currently estimated to be in between the early Cretaceous (~140 million years ago) and the Neogene (~20 million years ago) periods. Here, we present preliminary sedimentary provenance in river and sedimentary basins between the Indo-Burman Ranges and the central Myanmar low plains. We use Uranium-Lead radioactive ages of detrital zircon crystals from dated sedimentary rocks, revealing the source of the sedimentary input which resulted from the uplift of the surrounding mountains. Our results will indicate the timing of sedimentary input to our study basin sites, and when the uplift of the Indo-Burman Ranges occurred. Dating the Indo-Burman Ranges uplift will contribute to understanding tectonic activities in the past, which would have affected the regional climate evolution, such as the Asian monsoons.
- Presenters
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- Savannah Phipps, Sophomore, Biology, Pierce College
- Damien Puentes, Sophomore, Associates of Science, Pierce College
- Mentor
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- Elysia Mbuja, Biology, Pierce College
- Session
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- MGH 241
- Easel #135
- 11:00 AM to 1:00 PM
Pseudomonas fluorescens is a bacterium recognized for producing an antifungal against the debilitating wheat take-all disease. In this study I am investigating the Pseudomonas fluorescens L5.1-96 strain to identify the genes making it a supercolonizer of take-all disease resistant soil and how it fits phylogenetically with other bacteria. This project will contribute to the understanding of how biological agents may be used to combat wheat take-all disease. To investigate this, a plasmid of DNA from strain L5.1-96 was inserted into Escherichia coli to make a bacterial library. I separated the plasmid from the E. coli and amplified it by linear sequencing then sent the DNA to Bellevue College for Sanger sequencing. I used bioinformatics to analyze my unique insert which I found did not match unknown genes, rather it coded for proteins regarding nitrogen fixation. The sequences matched those of Pseudomonas brassicacearum. This provides evidence to renaming the bacterial strain. A match to an anaerobic enzyme in nitrogen fixation might provide insight to its supercolonizer abilities. As we are sequencing a minor portion of the strain L5.1-96 genome, there is need for further gene sequencing in order to complete its genome.
- Presenters
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- Sara Yinling Post, Fifth Year, Nursing
- Samrawit Admasu (Sam) Sima, Senior, Nursing
- Mentor
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- Butch de Castro, Nursing, Psychosocial & Community Health
- Session
-
- Commons West
- Easel #13
- 11:00 AM to 1:00 PM
Increased specialization within the forestry industry has led to the rise of a distinct industry known as forestry services. Whereas logging historically encompassed this work, a separate population increasingly participates in the remote grooming and tree planting of forest lands. Physically demanding, dangerously hazardous, and low paying, forestry services work in the Pacific Northwest predominantly employs Mexican and Central American immigrants. As an extension of my honors project at the UW School of Nursing, I examined how occupational injury among this group of workers with correlates with attitudes that workers and employers hold about their work environments. Performing a secondary analysis using survey interview data collected by the UW Pacific Northwest Agricultural Safety & Health Center, and the Northwest Forest Worker Center, I identified top risk perceptions and barriers to workplace safety as reported by workers, as well as by a set of employers and supervisors. Not only was there variation in the prevalence of worker injury between different employers, there was also variation in the perceived attitudes about workplace safety. In future research, it will be possible to link the experiences of workers with the attitudes and policies of those who employ them.
- Presenter
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- Kimia Preston, Freshman, Pre Engineering UW Honors Program
- Mentors
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- Thomas Grabowski, Radiology
- Thomas Grabowski, Radiology
- Session
-
- MGH 258
- Easel #186
- 11:00 AM to 1:00 PM
Parkinson's disease (PD) is degenerative disorder of the nervous system that primarily impairs motor function along with other cognitive functions due to a specific loss of striatal dopamine neurons. The most challenging aspect of treating PD is that there is no explicit cause or any definitive long-term treatment. Current therapies restore dopamine levels in brain to alleviate the symptoms of PD. In this study, our goal is to address and identify possible markers of PD by studying the action of dopamine using functional MRI (fMRI) data. Resting-state fMRI allows us to examine the patterns of neuronal firing in vivo. We performed fMRI in 26 PD patients (age = 68 +/- 8 years) before (OFF group) and after (ON group) administration of dopaminergic medication to understand which brain regions showed altered neuronal firing with dopamine therapy. We applied the Integrated Local Coherence (ILC) approach to study temporal coherence of neuronal fluctuations within regions. High ILC corresponds to coherent neuronal fluctuations or recruitment of larger number of neurons as baseline. Low ILC corresponds to reduced temporal coherence in neuronal fluctuations due to neurodegeneration. ILC was computed in the cortex and compared between the ON and OFF groups using a paired t-test. Significance was considered for a voxel-wise threshold of p=0.001 and a Family-Wise Error correction for multiple comparisons at p=0.05. ILC measures were higher bilaterally in the superior parietal lobe, angular gyrus, and precuneal regions in the OFF compared to ON group. These results support another study where increased temporal coherence was observed in the same regions in PD patients compared to healthy controls. These regions are also part of the PD-related disease pattern network involved in motor dysfunction. With this work we believe that administration of levodopa reduces the excessive recruitment of neuronal regions during rest in PD patients.
- Presenter
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- Andrew Douglas Ramsay, Senior, Biochemistry
- Mentors
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- Sarah L. Keller, Chemistry
- Roy Black, Chemistry
- Session
-
- MGH 241
- Easel #128
- 11:00 AM to 1:00 PM
The three essential structures of life are RNA, protein and a lipid bilayer membrane. We hypothesize that these three structures formed co-dependently in an aqueous environment, as opposed to forming independently in diverse environments. In our scheme, a vesicle (membrane) formed and bound nucleobases and amino acids, the building blocks of RNA and proteins, respectively. Then, the resulting confinement and conformational constraints imposed by the membrane on the nucleobases and amino acids facilitated the formation of RNA and proteins, leading to the origin of life. The work presented here addresses one part of the hypothesis: “Do amino acids increase vesicle formation?” An increase in vesicle formation due to the addition of amino acids would support the hypothesis that membranes and proteins evolved co-dependently. It would suggest that amino acids stabilize vesicles, increasing the likelihood that fatty acid membranes and amino acids co-localized. Our experiments used decanoic acid, a prebiotic fatty acid that spontaneously forms membranes when dissolved in water. In the first part of the research, we added aqueous solutions of amino acids to a solution of decanoic acid at pH 6.83 and determined the extent of vesicle formation by measuring light scattering with a spectrophotometer. In the second part, we added amino acids to a decanoic acid solution above the pH at which vesicles form, and then slowly acidified the solution until vesicle formation began; again, we used light scattering as a measure of the extent of vesicle formation. We found that specific amino acids do in fact increase vesicle formation and also have an effect on the pH at which vesicles form. The next step in this research will be the addition of multiple types of amino acids and peptides additions in order to search for combinations that increase vesicle formation the most. The results contribute to the the possible driving mechanism behind the emergence of protocells.
- Presenter
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- Alexander Michael (Alex) Ratcliff, Senior, Environmental Engineering UW Honors Program
- Mentors
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- Rebecca Neumann, Civil and Environmental Engineering
- Yasmine Farhat, Civil and Environmental Engineering
- Session
-
- Commons East
- Easel #65
- 11:00 AM to 1:00 PM
This research looks at the impact of elevated temperatures on rice biomass allocation, in the context of rice nutrient and contaminant uptake. Below-ground biomass allocation can influence the rate of mineral uptake, and above-ground biomass can influence how those nutrients are distributed. Rice was grown in four growth chambers set to different temperatures ranging from low (25.4°C) to high (33.0°C). Rice plants were harvested during two developmental stages, flowering and grain filling. The plants were sectioned into four components before storage and desiccation: roots, leaves, stems, and grain. A total of 256 rice plants were grown over two harvesting periods, thus each treatment has a sample size of 64 plants. To examine biomass allocation, each component is being measured on a high-precision scale accurate to the nearest 10^-5 gram. The impact of temperature will be quantified for the following groups: temperature treatment vs. component biomass, treatment vs. above- and below-ground biomass ratio, and treatment vs. total biomass. Rice is the primary staple food of over half of the world's population and is the main caloric and nutritional source in many developing countries. Increased global temperatures due to climate change may have significant impacts on rice growth, yield, and nutritional quality.
- Presenter
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- Sanjana Ravi, Senior, Psychology, Early Childhood & Family Studies UW Honors Program
- Mentors
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- Kristina Olson, Psychology
- Anne Fast, Psychology
- Session
-
- Balcony
- Easel #92
- 11:00 AM to 1:00 PM
Everyday, human beings engage in prosocial behaviors, which are behaviors intended to benefit others. These include simple acts, such as holding doors for others, and costlier behaviors, such as donating money. Even young children help, share with, and comfort others. To gain insight into why human beings engage in prosociality from such an early age, it is critical to examine individual variability in children’s prosocial behavior. That is, why are some children more prosocial than others? One factor that may influence prosociality is social anhedonia, which is the reduced capacity to experience pleasure from social interactions. Adults with high social anhedonia are less prosocial; however, no work has explored if children’s capacity to experience pleasure from social interactions motivates their prosociality. The current work develops a measure of social anhedonia in early childhood and examines if variability in the capacity to experience pleasure from social interactions is related to children’s tendency to engage in prosocial behavior. To explore this question, parents of 4- to 8-year-olds report their child’s prosociality. They also report their child’s social anhedonia using the Child Social Anhedonia Scale, which I created based on a questionnaire assessing adulthood social anhedonia. This work is ongoing, but an analysis of 134 participants (57 females) revealed a significant negative correlation between children’s social anhedonia and prosociality, r=-0.32, p<0.001. This finding suggests that children who are less likely to experience pleasure from social interactions are also less prosocial, implying that perhaps enjoying social interactions serves as a motivation for children’s prosociality. This study is the first step in understanding the relation between pleasure from social interactions and children’s prosocial behavior. Future studies could further examine if this relationship is causal.
- Presenter
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- Clay Renshaw, Junior, Biochemistry, University of Nevada Las Vegas McNair Scholar
- Mentor
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- Ronald Gary, Biochemistry, University of Nevada, Las Vegas
- Session
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- MGH 241
- Easel #147
- 11:00 AM to 1:00 PM
Glutathione S-transferase (GST) is an enzyme that is present in most organisms. Its primary function is the detoxification of xenobiotic compounds. In mammals, some GST isoforms have a role in modulating the MAPK signaling pathway. The GST protein from Schistosoma japonicum (26 kDa) is also an important tool used in biochemistry labs as a tag for the isolation of proteins via affinity chromatography. Reduced glutathione (GSH) is a substrate for GST that binds to its G-site with a high affinity, and this interaction can be exploited to purify GST-fusion proteins on agarose beads containing a GSH moiety. In the research presented, GST was expressed in E. coli, purified, and dialyzed to remove GSH ligand completely. The protein concentration of the purified, dialyzed GST sample was quantified using Qubit™ fluorescence spectroscopy. Isothermal titration calorimetry (ITC) was utilized to measure the dissociation constant and thermodynamic properties of the binding of GSH to GST. ITC is a highly sensitive analytical method that monitors changes in heat produced from noncovalent chemical associations. In order to obtain accurate ITC measurements, various concentration ratios of GSH/GST were explored. Quantifying the binding affinity and thermodynamic properties of GSH binding with GST provides useful information for investigators who use GST as a fusion tag or who are interested in reactions between the GSH-GST complex and its substrates.
- Presenter
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- Clarita Reyes, Junior, Psychology, Education, Communities and Organizations Mary Gates Scholar, McNair Scholar
- Mentor
-
- Yelena Patish, Education
- Session
-
- Commons West
- Easel #27
- 11:00 AM to 1:00 PM
Building relationships with students may not be an easy task as a teacher, because students are coming in with a diverse range of differences which includes students’ backgrounds (i.e. life outside of school, race, socio economic status), perspectives, behavior, and interests. Teacher-student relationships may help increase student engagement, increase their sense of belonging, and help foster a safe environment which can have a significant impact on their success. Unfortunately, research has shown that many teachers are unprepared to teach students from diverse racial and cultural backgrounds. One reason may be that teacher preparation programs have not been as successful in changing teacher's values, attitudes, and dispositions related to teaching culturally diverse students. In my research, I examined the structure and content of the University of Washington Elementary Teacher Education Program (ELTEP) to better understand how teacher candidates transfer knowledge from their course work into their field placement, focusing on classrooms that are situated in culturally, racially, and ethnically diverse Seattle public schools. I analyzed how teacher candidates took up strategies for building teacher student relationships from their coursework into their field placements. I did so through interviews and ethnographic observations, analyzing teacher student communication patterns (i.e. one on one interactions, positive and negative reinforcement, humor, body language, etc.) in their field placements. My findings have significant implications for improving ELTEP coursework focused on building teacher-student relationships and ultimately improving student success in Seattle public schools.
- Presenter
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- Juana Maria Rivera Ordonez, Senior, Environmental Science & Resource Management (Wildlife Conservation), Biology (Ecology, Evolution & Conservation)
- Mentors
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- Jesse Delia, Biology
- Karen Warkentin, Biology, Boston University
- Session
-
- MGH 241
- Easel #138
- 11:00 AM to 1:00 PM
Across animals, embryos can hatch in response to environmental cues. Early hatching can improve embryo survival when eggs are in danger, but may come at a cost to the larval life-stage. Thus, understanding the adaptive value of hatching plasticity requires evaluating the costs and benefits that characterize selective trade-offs. Several species of glassfrogs (Centrolenidae) can hatch as early as 7 days in response to predators, dehydration, and parental abandonment, or delay hatching to 20 days under good conditions. We measured two fitness correlates, for survival and growth, to test the adaptive value of delayed hatching in five species: Cochranella granulosa, Hyalinobatrachium fleischmanni, Hyalinobatrachium colymbiphyllum, Teratohyla pulverata, and Teratohyla spinosa. Hatchlings fall from arboreal eggs into streams and must dive to the bottom to escape predatory fish. We measured diving performance for early and late hatchlings to infer predation risk. As tadpoles cannot benefit from external food resources until they reach feeding competence, we quantified the onset of feeding and compared gut-coil development in siblings of different hatching ages. Older hatchlings dove faster and began feeding sooner after hatching than did younger individuals, suggesting that delayed hatching is advantageous for escaping predators and reducing lag-time in exotrophic-based growth of larva. This study provides insight on the selective trade-offs that favor hatching plasticity in glassfrogs.
- Presenter
-
- Alex Luis Roederer, Senior, Biochemistry
- Mentors
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- Tiffany Hensley-McBain, Pharmaceutics
- Nichole Klatt, Pharmaceutics
- Session
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- MGH 258
- Easel #188
- 11:00 AM to 1:00 PM
The vaginal microbiome has a mutualistic relationship with the immune system and can have a major impact on health and immunity to diseases, specifically its role in prevention against STI’s and Bacterial Vaginosis (BV). BV has been found to be associated with the prevalence and incidence of multiple STI and HIV. We hypothesized that changes in bacterial composition would correspond to changes in inflammatory cell frequencies in the vagina and examined this using rhesus macaques (RM) treated with various antibiotic regimens.12 rhesus macaques were administered paromomycin (n=3), enroflaxin (n=3), clindamycin (n=3), or cephalexin (n=3). Vaginal biopsy samples were taken twice before antibiotics (ABX) and at 5 timepoints post-ABX. DNA was extracted according to standard protocol and bacterial 16s rDNA was amplified and quantified by PCR and sequenced using Illumina kits and the Illumina MiSeq platform to determine abundances of relative bacteria. Flow cytometry was performed on cells isolated from matched biopsies to assess inflammatory cell frequencies. For animals treated with cephalexin or paromcyin, we found that CD4+ T cells and CD8+ T cells spiked after treatment around day 14 and declined to normal levels by day 63. Additionally, we found that neutrophil abundances spiked between days 28-63. Animals treated with clindamycin increased CD4+ T cells and CD8+ T cell counts around day 28 through necropsy while neutrophil levels stayed constant. Those given enroflaxin spiked in CD4+ T cell and CD8+ T cell counts at day 14 then returned to baseline, while neutrophil levels spiked between day 14-63. We observed alterations in bacterial composition that was dependent on the ABX regimen given and observed associations between these changes and the immune cell changes we observed. Taken together, these data show that altering the vaginal microbiome results in changes in inflammatory cell frequencies that could have implications for STI risk.
- Presenter
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- Sofwa Sabarudin, Senior, Earth & Space Sciences (Physics) UW Honors Program
- Mentor
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- Emily Roland, Oceanography
- Session
-
- Commons East
- Easel #80
- 11:00 AM to 1:00 PM
During the time in between large earthquakes, smaller seismic events, or microseismicity events have been detected along the Cascadia plate boundary. This microseismicity represents the accommodation of small stresses along the margin, and may provide information on the location of high stresses or zones of weakness in the crust and upper mantle, or along the plate boundary. Studying the distribution of microseismicity and comparing it to known structural models based on seismic reflection profiles may help us to better understand the overall faulting process at subduction zones. In this research, I compared the spatial distribution of microseismicity along different parts of the subduction zone with structural features from seismic reflection images. I used earthquakes dataset that are recently compiled using regional seismometer located within the subduction zone as part of the Cascadia Initiative. I presented a depth profile of Cascadia subduction zone forearc, a margin between the oceanic trench and the continental plate, to investigate whether current depth estimates for recent earthquakes are more consistent with upper plate seismicity within the North America Plate, along the plate boundary, or within the down going oceanic plate. The results of this study will help us to better visualize the spatial distribution of microseismic events and draw its relation with the damage zone or other fault structures along Cascadia subduction zone.
- Presenter
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- Alicia Salisbury, Senior, Microbiology, University of Nevada Las Vegas McNair Scholar
- Mentors
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- Philippos Tsourkas, Biological Sciences, University of Nevada, Las Vegas
- Christy Strong, Biological Sciences, University of Nevada, Las Vegas
- Session
-
- MGH 241
- Easel #148
- 11:00 AM to 1:00 PM
American Foulbrood (AFB), a disease of honeybee larvae caused by the bacterium Paenibacillus larvae, has global economic significance. AFB spreads through colonies killing the next generation of bees. AFB has traditionally been treated with antibiotics or by burning infected hives and exposed materials. The former method is complicated by antibiotic resistance and bacterial sporulation, while the latter method carries severe financial liability for beekeepers. One alternative treatment is the use of bacteriophages, viruses that infect and destroy bacteria. Bacteriophages are host-specific and co-evolve with their host, unlike antibiotics, thus making resistance and collateral damage a non-issue. Characterizing these phages will be key to future treatments of infected hives. The P. larvae phage Willow, isolated in our lab, is both lysogenic (allow the infected bacterium to survive) and lytic (kill the infected bacterium). Currently, we have confirmed Willow lysogeny in P. larvae strain 3650. This relationship presents a model system for investigation. A comprehensive understanding of the host-pathogen interactions between Willow and P. larvae will aid in the effective targeting of P. larvae in the field. Our laboratory also seeks to determine the relatedness of four P. larvae phages to Willow to further characterize the genes responsible for lysogenic/lytic decision making. In sensitivity assays, lysogens (bacteria with integrated phage) are plated to form a lawn and dilutions of a different phage are spotted onto the plate. An identical wild-type plate is made, and comparison yields plating efficiencies. Plating efficiency determines what degree of protection is offered by the integrated phage. I hypothesize that genetic sequencing will show measurable genetic differences in the putative C1/Cro region of the phages under investigation, and that all genome sequence similarity will correlate directly with established plating efficiencies. Furthermore, I used sequence alignment, product alignment, and dot-plots to illustrate the degree of sequence similarity between phages.
- Presenter
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- Shwetha Hariprasad Sanapoori, Junior, Biochemistry
- Mentors
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- Tonya Palermo, Anesthesiology
- Rachel Aaron, Anesthesiology
- Session
-
- MGH 258
- Easel #192
- 11:00 AM to 1:00 PM
The ability to regulate emotion does not develop completely until young adulthood, meaning teenagers are at risk for disorders associated with difficulties in regulating emotions. Identifying one’s emotions is essential for taking active steps towards regulating them; thus emotion differentiation is an essential skill that facilitates psychological well being. Although there have been multiple questionnaires developed to assess emotion differentiation, there are limitations of self-report. Behavioral tasks provide an opportunity to observe an individual’s ability to identify emotions. The Photo Emotion Differentiation (PED) task is a computer task designed to assess emotional differentiation, validated predominantly in adult populations. Participants are shown 20 standardized emotional images and are asked to report the intensity with which they experience each of the 19 listed emotions. The limitation to this method is that it has only been used once in child populations. We aim to validate the PED for use in adolescents by comparing it to a self-report questionnaire [the Levels of Emotional Awareness Scale for Children (LEAS-C)] that assesses emotion differentiation. The instructions for the LEAS-C ask youth to respond to 12 scenarios by indicating how they might feel and how the other person in the scenario might feel. A validated scoring system is used applying specific criteria to the emotion words used in the response. This is an ongoing study and we have currently recruited 14 participants from ages 13 to 16 who will come for a lab visit and complete both the PED and the LEAS-C. A positive correlation between the scores from the PED and LEAS-C will show that the PED is measuring the construct of emotion differentiation and can be used to obtain valid assessment in youth in subsequent studies. With this information, the PED can be used to examine the relationship between pain and emotion differentiation in adolescents.
- Presenter
-
- Harrison Sarsito, Senior, Chemical Engineering Mary Gates Scholar
- Mentors
-
- Brandi Cossairt, Chemistry
- Michael Enright, Chemistry
- Session
-
- MGH 241
- Easel #125
- 11:00 AM to 1:00 PM
Increasing world energy consumption is accompanied by rising concerns over non-renewable fossil fuel usage and its detrimental environmental impacts. Even if we were to try to meet future energy demands exclusively with fossil fuels, we would fall woefully short of our projected global needs. Consequently, there are compelling economic and environmental reasons that support a dramatic shift in future energy utilization to renewable technologies. The development of solar-driven technologies to generate renewable, transportable, and storable fuel sources is desirable since these energy-dense fuels can be used in the future regardless of the time of day, season, or geographic location. My research explores the utilization of nanomaterials for solar energy-catalyzed biomass decomposition into fuels and valuable, small molecules with diverse industrial applications. Specifically, this work shows the potential of using nanomaterials of a variety of structures to convert lignin (which composes 20-30% of biomass) into more useful small molecule components. To do this, we strive to understand how to make a nanomaterial that both efficiently absorbs light and subsequently uses that absorbed energy to power lignin degradation. The ability of a nanomaterial to absorb light and catalyze this reaction depends on its electronic properties, which is dependent on both its elemental composition and morphology. Our work explores the various catalytic efficiencies of nanomaterial systems of different shapes and sizes.
- Presenters
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- Sairandri Sathyanarayanan, Freshman, Pre-Sciences
- Griffin Michael Hardy, Junior, Pre Engineering
- Gideon (Gid) Fadele, Junior, Pre Engineering
- Mentors
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- Alberto Carignano, Electrical Engineering
- Eric Klavins, Electrical Engineering
- Session
-
- Commons East
- Easel #59
- 11:00 AM to 1:00 PM
Water can have many contaminants that are harmful to humans and animals alike. Since water is so essential to life on this planet, it is important to know whether or not a water source is contaminated. However, testing water samples can be expensive. In order to make it easier to test water for contaminants, we are working to create a device to sense this contamination within a matter of hours by using yeast that produce a fluorescent protein in the presence of various water contaminants. In order to make the yeast easier to transport, we first need to dry the yeast before packaging it, similar to dry yeast that can be bought at the grocery store. To test a sample, the device utilizes a light to frequency sensor to convert the intensity of light from the glowing yeast into a signal that can be processed by an arduino board contained within the device. Our device can be used as a reusable, low cost diagnostics machine for testing water for contamination. This could provide access to advanced technology in parts of the world that don’t have access to expensive testing equipment, as well as be used by an ecologist in the field.
- Presenter
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- Sam Cullen Scharffenberger, Senior, Environmental Science & Resource Management Mary Gates Scholar, UW Honors Program
- Mentor
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- Sharon Doty, Environmental & Forest Sciences
- Session
-
- Balcony
- Easel #118
- 11:00 AM to 1:00 PM
Microbes that live within plants, called endophytes, are being heavily researched on their ability to assist host plants in processes from nitrogen accumulation to drought tolerance. Two endophyte strains named WP5 and WP9 are known to colonize Populus trees. Previous research has shown that the presence of WP5 in a host plant allows for greater colonization by WP9 subsequently. This research is directed at replicating these results with more robust molecular biology techniques. Methods for experimentation include the growth of the endophytes in selective media and varying the optical densities of these liquid cultures before inoculating the poplar clones. The plants co-cultivate with the inoculum for 24 hours, at which point they are removed, washed and placed in limited nutrient media. After removal from the inoculum as well as at 7 and 14 days hence, the host plants will be sampled by performing genomic DNA extractions and subsequently analyzed through Digital Droplet PCR to quantify endophyte presence. Additionally, these strains have been marked with fluorescent tags to enable imaging under a microscope. The two endophytes were labeled with different colors, one red and one green, so that they could be visualized concurrently. Along the same sampling timeline, root samples will be taken to image through microscopy in order to visually investigate the colonization process of the two strains. The results of this research will help to shed light on the colonization abilities of these strains, and allow for the optimization of bio-fertilizers comprised of endophytic consortia.
- Presenter
-
- Shareef Shaheen, Junior, Extended Pre-Engineering
- Mentors
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- Samuel Arnold, Allergy and Infectious Diseases
- Molly McCloskey, Allergy and Infectious Diseases
- Session
-
- MGH 258
- Easel #179
- 11:00 AM to 1:00 PM
Utilizing the Type III Secretion System (T3SS), Shigella spp. uses a cascade of proteins to manipulate, penetrate, and colonize host eukaryotic cells. Inducing epithelial necrosis, Shigella spp. infection is responsible for moderate to severe diarrhea in millions of children and immunocompromised individuals — the majority from under-developed communities. Previous translational research on Shigella spp. has been limited due to the lack of proper in vitro and in vivo models. Understanding infectivity of Shigella spp. heavily relies on imprecise estimations of intracellular Shigella spp., which ultimately impacts vaccine and antibiotic efforts. This project aims to address this problem by developing a novel red intracellular reporter to quantify successful invasion of Shigella flexneri. By using a series of polymerase chain reaction (PCR) assemblies, we aim to construct a plasmid with a RFP reporter to be expressed during successful invasion of Shigella spp. The IpaH9.8 MxiE promoter, which has been shown to be expressed upon cell entry, has been integrated within the pUltra RFP plasmid through a Gibson-Reaction assembly and cloned using PCR. The new DNA replicate was electroporated into a streptomycin-resistant S. flexneri strain. We initially tested each strain in vitro by inoculating HCT-8 cells with the newly engineered S. flexneri and monitored for selective RFP expression by intracellular S. flexneri. The outcomes of this project will provide an accurate and efficient method of quantifying invasive S. flexneri. in vitro and in vivo, as well as quantifying efficacy of new antibiotic treatments. The implications of this project are crucial to the advancement of shigellosis research and in furthering the efforts of the international community to abate the rates of disease mortality and burden.
- Presenter
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- Ryan Charles Shean, Senior, Microbiology Mary Gates Scholar, Undergraduate Research Conference Travel Awardee, Washington Research Foundation Fellow
- Mentor
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- Alex Greninger, Laboratory Medicine
- Session
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- MGH 241
- Easel #155
- 11:00 AM to 1:00 PM
Arthropods represent 29 percent of the world’s animal biomass and comprise over 500 million years of evolutionary diversity. Arthropods such as spiders and moths constitute a perfect milieu for the discovery of multitudes of highly diverse RNA viruses of unknown pathogenic potential. Sequencing and characterizing these viruses is of immense value for understanding many basic science questions about viruses. The sequences obtained and described can also provide great insight into future zoonotic outbreaks. We sequenced RNA extracted from 10 moths and 6 spiders collected from western Washington. We developed a custom bioinformatics pipeline for automatic discovery and characterization of completely new viruses. The custom software also automates the process of depositing viral sequences into the National Center for Biotechnology Information’s Genbank archives, the main database in which DNA and RNA sequences are shared among scientists and researchers. A total of 12 novel viral genomes were discovered in these 16 samples. These new viruses belong to 4 highly different viral families, all of which contain species known to infect humans. We also present what is likely a completely new viral clade within Picornavirales, the viral family that contains polio and many other diseases afflicting humans. This new viral clade has a never seen before genome organization and contains a highly divergent RNA dependent RNA polymerase. New and highly divergent strains such as the ones outlined here provide extremely valuable insight into the inner workings of viral biology and genetics.
- Presenter
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- Samuel Joseph Shekut, Junior, Earth and Space Sciences: Geology
- Mentor
-
- Alexis Licht, Earth & Space Sciences
- Session
-
- Commons East
- Easel #52
- 11:00 AM to 1:00 PM
In a region as tectonically and volcanically active as the Pacific Northwest, accurate models of tectonic history are essential to inform our understanding of modern tectonics dynamics. At present, very little is known of the history of the Olympic Mountain Range. Previous work has used fission track dating to date the onset of exhumation of the Olympic Mountains and has placed it around 18 Million years. Fission track dating as a method relies on the analysis of fissures in certain uranium containing minerals, in this case zircon and apatite, to determine when the rock body they inhabit cooled below the temperature at which that mineral is no longer able to chemically diffuse with its surroundings. This data is a proxy for paleodepth, however it gives little information about the topography at that time. In the past 20 years, newer, more precise methods have been developed such as Uranium-Lead dating of detrital zircon crystals. This method relies on analyzing zircon minerals extracted from sandstones and dating them using the radioactive decay of Uranium to Lead, and eventually comparing these ages with those of the potential sediment sources to reconstruct their provenance. Here, we analyze sandstones from the Seattle Basin and Olympic Peninsula to reconstruct the uplift history of this region. This approach coupled with stratigraphic techniques may be used to place a more precise age constraint on the onset of high topography in the modern Olympic Mountains: an event which tremendously impacted regional tectonics, ecology and climate in Washington State.
- Presenter
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- Margaret Slack, Senior, Biology (General) Levinson Emerging Scholar, Innovations in Pain Research Scholar
- Mentor
-
- Tonya Palermo, Anesthesiology
- Session
-
- MGH 258
- Easel #190
- 11:00 AM to 1:00 PM
Chronic pancreatitis (CP) is a condition in which the pancreas is consistently inflamed, resulting in pain, malabsorption of nutrients, and irreversible organ damage. CP-related pain can be severe and is associated with decreased quality of life and impaired psychosocial functioning. Treatment options for CP, particularly for pain management, are extremely limited in both scope and efficacy. It is imperative that additional pain therapies be made available to the CP population. Cognitive behavioral therapy (CBT) is a non-pharmacological treatment that has shown benefits in helping people cope with painful conditions. This study aimed to 1) adapt an established online CBT program (The Pain Course) for people with CP pain, 2) assess feasibility and acceptability of the program, and 3) conduct a pilot randomized controlled trial to determine preliminary efficacy of the program. We first adapted The Pain Course through careful review of the existing five lessons and case stories to insert information about CP and its symptoms to increase the relevancy of the program for CP patients. In the second phase of the project, 10 CP patients will receive access to the modified online course (The Pancreatitis Pain Course) and will complete the intervention to learn cognitive-behavioral pain coping skills. Patients will provide qualitative feedback regarding their experience and the acceptability of the intervention through interviews, and the course will be modified further. In the final phase, 30 patients will be randomized (15 patients will receive CBT and 15 will receive waitlist control condition). Outcome data on pain, psychological functioning, and quality of life will be obtained at baseline, 8 weeks, and at three-month follow up to assess treatment efficacy. Ultimately the goal is to develop a safe, economical treatment option for those who suffer from CP pain that will alter and expand current clinical practice of CP pain management.
- Presenter
-
- Veronica Spaulding, Senior, Chemistry, Univ Wyoming McNair Scholar
- Mentor
-
- John Hoberg, Chemistry, University of Wyoming
- Session
-
- Commons East
- Easel #81
- 11:00 AM to 1:00 PM
Graphene is a ground-breaking material with over twenty thousand patents involving its applications and modifications. It is the strongest, yet thinnest material known with semi-conducting properties. Extensive research has been performed on graphene to improve characteristics such as its conductivity, formation of holes and chemically manipulating its structure. Specifically, graphene is a two-dimensional, single atomic layer of graphite; which is an allotrope of carbon made up of tightly bonded carbon atoms organized into a hexagonal lattice. What makes graphene of interest is its sp2 hybridization and nanoscopic atomic thickness (of 0.345nm). An alternative structure comparative to graphene involves utilizing a self-assembly condensation between amine containing compounds and carbonyl groups, which form a graphene-like nitrogenated derivative. These materials have ordered pores with high crystallinity. The synthesis of such compounds is well established and have been characterized as Covalent Organic Frameworks (COFs). This amine/carbonyl condensation reaction can produce significant control of the lattice structures desired in the final 2-D material. This material can then be fabricated into membranes for applications in separations, batteries and more. The goal of my work utilizes this condensation method to chemically synthesize a framework with two chemically distinct pores in the lattice. The two pores are capable of chemical manipulation, which would potentially be superior to graphene. This gives rise to a variety of applications of the material and its derivatives, which we hope to improve on by using these nitrogenated frameworks.
- Presenter
-
- Kimberly Stewart, Senior, Environmental Science, Heritage College McNair Scholar
- Mentors
-
- Michael Heim, Biological & Environmental Sciences, Lac Courte Oreilles Ojibwa Community College
- Corbin Schuster, Biological & Environmental Sciences, Heritage University
- Session
-
- MGH 241
- Easel #149
- 11:00 AM to 1:00 PM
Foliar (leaf) diseases and epiphytes are a major hindrance to photosynthesis throughout the wet tropics. The research sought to determine whether there is a correlation between foliar epiphyte and disease coverage in a relatively small elevational gradient with a hypothesis that a decrease in elevation increases humidity levels which then correlates with greater coverage by foliar diseases and epiphytes on Geonoma oxycarpa. The study took place in three wet pre-montane secondary forest sites in southern Costa Rica, ranging in elevation from 1130.8 – 1188.7 m, and focused on G. oxycarpa due to its accessibility and observable patterns of foliar epiphytes coverage and disease. Three specimens of G. oxycarpa were chosen at each site, and initial estimates of the percentage of foliar epiphytes and diseases were done visually. Photos were then taken for analysis using ImageJ and a metric scale ruler was used to determine the total area of a leaf sample and the healthy portions of the leaf. Weather meters were used to determine the average relative humidity at each of the three sites. All the data was used in linear regression exploratory analysis using the open source software ‘R’. It was determined through clear, though not statistically significant, trends in the data that increased coverage of foliar diseases and epiphytes was related to a decrease in elevation and a corresponding increase in humidity, confirming our hypothesis. These findings indicate that native plants that can tolerate or better defend themselves against the onslaught of foliar epiphytes and diseases should be chosen for the more humid, lower microclimates. Because of this implication, this study is particularly important regarding the preservation of forest microclimates for indigenous cultures that depend upon native tropical plant life for a wide variety of ethnobotanical uses and crucial to the success of native plant restoration and preservation efforts.
- Presenter
-
- Jacob Aaron Straus, Senior, Biology (General) Mary Gates Scholar
- Mentors
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- Tonya Palermo, Anesthesiology
- Caitlin Murray, Psychology, Seattle Children's Research Institute
- Session
-
- MGH 258
- Easel #191
- 11:00 AM to 1:00 PM
Chronic pain is a perplexing and complex disease that may inflict physical disability or psychological impairment on individuals due to a medical illness or intervention, acute injury, or in the absence of physical illness or injury. Yet while chronic pain affects individuals across all age ranges, certain groups are disproportionately represented in chronic pain research. In particular, limited chronic pain research has focused on adolescents and young adults (AYAs) roughly between the ages of 16 and 25, leaving unanswered questions about how and when AYAs with chronic pain achieve developmental milestones such as gaining employment, forming romantic relationships, and living independently. The focus of this project is to investigate the effects of chronic pain on AYAs and aims to answer the following research questions: (1) Does the age of onset of chronic pain influence how AYAs achieve developmental milestones, (2) What developmental milestones are achieved by AYAs with chronic pain and how do they compare to controls who experience no chronic pain, and (3) Are commonly applied psychological measures ascertaining the most important information from AYAs? To answer these questions we performed a secondary data analysis of a data set of AYAs reporting to a tertiary pain center in the United Kingdom. This data set is courtesy of Dr. Hannah Twiddy of the University of Liverpool. Our analysis includes questionnaire data in the form of validated measures for impacts of pain on lifestyle, disability, depression, and self-esteem among others. Results of this study describe the developmental milestones achieved by AYAs suffering from chronic pain and will help psychologists understand the nature of chronic pain in AYAs, and potentially develop more effective treatment plans in the future.
- Presenter
-
- Neele Thom, Junior, Biology (Bothell Campus) Mary Gates Scholar
- Mentors
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- Sergei Doulatov, Hematology, Medicine
- Massiel Stolla, Hematology
- Session
-
- MGH 258
- Easel #182
- 11:00 AM to 1:00 PM
Autophagy is a process in which cells recycle their damaged or unwanted organelles. The process of macroautophagy encompasses a variety of selective autophagy mechanisms such as ribophagy, mitophagy, and lipophagy - each of which has a different specific target for degradation. These processes are initiated for multiple reasons, incuding ATP starvation and stem cell differentiation. During erythropoiesis, the process of hematopoietic stem cells differentiating into red blood cells, selective autophagy is known to be used to clear mitochondria in the terminal stages. Doulatov lab has recently identified the selective expression of BNIP3, a homolog of the known mitophagy regulator BNIP3 (NIX), in early erythroid progenitors. These preliminary data suggest that there may be an unnappreciated role for mitophagy in the earlier stages of erythropoiesis in addition to its late stage role. To better understand how mitophagy is involved at this time point, the level of expression of proteins BNIP3, BNIP3L (NIX), and another known mitophagy protein PINK1 will be evaluated at days 1, 3, 5, 7, 9, 11, and 15 of erythropoiesis by western blot. The expression of these proteins will be analyzed in conjunction with mitochondiral mass of the cells, which has been observed to rapidly decline following a sudden burst in mass at day three of erythropoiesis. We hypothesize that autophagy is responsible for this dynamic behavior, and investigating the expression of these proteins may implicate which specific mitophagy pathway is being used. After determining these expression patterns, we can use lentiviruses expressing shRNAs to seperately reduce and overexpress autophagy proteins in order to manipulate mitochondrial mass during erythropoiesis. Exploring the relationship between selective autophagy and mitochondrial dynamics during normal human erythropoiesis may eventually provide insight into pathologies in which erythropoiesis is impaired.
- Presenter
-
- Lauren Thompson, Sophomore, Marine Biology, Grays Harbor Coll
- Mentor
-
- Amanda Lyn Gunn, Aquatic & Fishery Sciences, Grays Harbor College
- Session
-
- Balcony
- Easel #104
- 11:00 AM to 1:00 PM
Stream microbiomes are composed of diverse collection of microbes that play an important role in keeping the surrounding riparian zones and life within the streams healthy and thriving. The Chehalis River provides habitats in favor of fish spawning and juvenile development, but fish return populations upstream haves decreased in recent years. The aim of this study was to identify and characterize microbes within the Chehalis River tributaries, in correlation to fish populations, that are causing part of an invisible fish barrier. An invisible fish barrier is an undefined barrier that is blocking or preventing the return of fish. When water conditions are altered by human impacts or water quality is poor, it can result in microbial communities to shift. These communities can become harmful and potentially pathogenic to the surrounding hosts and environment. Microbial identification specifically within the stream in relation to fish populations could help to find ways to improve overall water quality for fish health. This analysis may provide a holistic indicator for necessary renovation and restoration of fish passages. Sites that lack species diversity in their riparian zones, and were closer to urbanization, show diversity in potentially harmful microbes like Camplyobacter, Sanguibacter and Shewanella, in correlation to low fish population. Continued monitoring will help correlate trends that are influencing riparian zones, water quality conditions and fish populations during the process of stream restoration.
- Presenter
-
- Maddie Thompson, Sophomore, Marine Biology, Grays Harbor Coll
- Mentor
-
- Amanda Lyn Gunn, Aquatic & Fishery Sciences, Grays Harbor College
- Session
-
- Balcony
- Easel #103
- 11:00 AM to 1:00 PM
Pollution from human influences is a growing problem in the Chehalis River and tributaries causing deleterious effects on stream health. Pollution runoff happens when rainfall or snow melt pick up and carry human-made or natural pollutants and are then deposited into streams, lakes, and rivers. With a better understanding of microbial populations within streams you can correlate the role that the surrounding environment is playing on overall stream health. Stream water has been facing a decline in quality from the leading cause of pollution from agriculture and manufacturer run-offs. Previous studies have linked increasing industrialization to ecological losses. Pollution entering a stream can influence and alter the abundance and diversity of aquatic life, especially at a microbial level. Although there have been many studies relating to run-off pollution affecting streams, there are no in-depth studies done on the taxonomy and functionality of microbes in urban water ecosystems, so it is important for this to be further investigated. For this project, overall stream health was measure by assessing seven locations along Alder and Fry creek. Environmental factors, percentage of man-made covering, and potential pollution runoffs were all considered and analyzed. A stream microbiome analysis was done along all sites sampled using 16s sequencing. The microbes present are a strong indicator of the health of the ecosystem. From this information, future studies can draw how to improve stream restoration efforts based off the abundance and diversity of organisms within streams facing variation in levels of human impacts.
- Presenters
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- Erin Tobin, Fifth Year, Nursing UW Honors Program
- Hannah Rose Galvan, Senior, Nursing UW Honors Program
- Mentor
-
- Ira Kantrowitz-Gordon, Family and Child Nursing
- Session
-
- Commons West
- Easel #30
- 11:00 AM to 1:00 PM
A consequence of the rising opioid epidemic in the United States is the dramatic increase in the number of infants born with a drug dependency known as neonatal abstinence syndrome (NAS). Treating NAS often requires lengthy hospital admissions and presents a range of challenges to both nurses and mothers caring for these newborns. While the nurse-mother partnership carries great potential to improve treatment outcomes for the infants, it is frequently hindered by stigma and poor maternal engagement. The purpose of this study is to better understand the nursing and maternal-level factors that affect the nurse-mother relationship and to identify the needs of both parties to partner in infant caregiving. We collected data through surveys given to nurses and mothers at Swedish Medical Center First Hill and Ballard campuses. Data analysis of the nurse surveys focused on the relationships among knowledge and comfort with NAS, stigma, and compassion while analysis of the mother surveys focused on the relationship among trauma history, parenting confidence, and maternal engagement. We hypothesized that greater knowledge and comfort with NAS among nurses was associated with decreased stigma and increased compassion towards families affected by this syndrome. We also predicted that extensive trauma history and lack of parenting confidence was negatively associated with the mother's ability to engage with her infant. In creating a better understanding of the nurse-mother relationship, we hope to guide future research on developing interventions that will improve the nursing care and maternal engagement in families affected by NAS.
- Presenter
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- Michael Anthony Tofflemire, Senior, Biology (Ecology, Evolution & Conservation)
- Mentor
-
- John Klicka, Biological Sciences
- Session
-
- MGH 241
- Easel #140
- 11:00 AM to 1:00 PM
Understanding the population structure and biogeography of avian fauna is an important tool for gaining insight into the historical and evolutionary processes leading to the diversification of North American birds. Research into the extensive adaptive radiation by the New World Setophaga warblers of the Parulidae family has been especially useful in illustrating these processes. Through phylogenetic analyses, we investigated the population structure of black-throated gray warblers (Setophaga nigrescens) in the Western United States. Previous analysis describes two distinct groups; a northwestern clade, known as S. n. nigrescens, and a southwestern clade, known as S. n. halseii. To elaborate on this study, we analyzed a larger number of Setophaga nigrescens samples that encompass a wider distribution across the Western US. Using mitochondrial sequences of the ND2 gene, we constructed several phylogenies using 48 S. nigrescens samples and 1 S. graciae sample as the outgroup. Our results support subpopulation structure as indicated by two haplotypes. One haplotype is regularly found in populations west of the Cascades and Sierra Nevada, while the second haplotype is common in the Southwestern US. Admixture appears to be occurring over a wide geographic range extending throughout Northern Arizona, Utah and Nevada, and possibly spanning farther north based on both haplotypes occurring in Washington State East of the Cascades. With a sequence divergence of about 0.8%, a Pleistocene origin seems likely; numerous glaciation cycles during this period may have facilitated this genetic divergence. However, additional samples will be needed to better illustrate the extent of their structure. This will have important implications for the diverse relationships found within the Setophaga genus of the Parulidae family and may benefit future studies involving the evolutionary processes that have led to the diversification of this group and North American birds in general.
- Presenter
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- Nancy Tovar-Garcia, Senior, Public Health-Global Health McNair Scholar
- Mentor
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- Sarah Ross-Viles, Health Services
- Session
-
- Commons West
- Easel #5
- 11:00 AM to 1:00 PM
Smoking is the world's leading preventable cause of death and it is responsible for millions of deaths annually. Smoking costs the United States billions of dollars each year due to medical care and lost productivity. There is very little research that addresses Hispanics working in agriculture jobs. This study evaluates whether and to what extent smoking is a coping mechanism for Hispanic males to manage agriculture work-related stress. This qualitative research study includes 5-10 short formal interviews with Hispanic males residing in Wenatchee, WA who smoke and work in agriculture. Results are analyzed using thematic analysis. Expected results are that Hispanic males who experience agriculture work-related stress use smoking as a coping mechanism, and experience negative health effects caused from either stress and/or smoking. This project will help health centers create programs that promote awareness on smoking and work-related stress that Hispanic males may be experiencing due to job roles.
- Presenter
-
- Max Akio Tracy, Junior, Pre Engineering
- Mentor
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- Alan Herr, Pathology
- Session
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- MGH 241
- Easel #153
- 11:00 AM to 1:00 PM
Elevated mutation rates due to mutations in the POLE gene, encoding DNA polymerase (Pol) Epsilon, drive a subset of colorectal carcinoma and endometrial cancers, and may accelerate tumor malignancy and pharmacological resistance in other cancers. Work with Saccharomyces cerevisiae revealed that classic mutator alleles encoding defects to Pol Epsilon proofreading mutators rely on the S-phase checkpoint, which regulates dNTP (deoxyribonucleotide triphosphates) levels by controlling the expression and activity of ribonucleotide reductase (RNR). This raises the question, do human POLE cancer alleles share this dependency on the S-phase checkpoint? And if so, do they activate the S-Phase checkpoint by creating replication stress? To investigate these questions, we created mutator yeast strains that mimic human POLE cancer alleles and deleted the S-Phase checkpoint kinase gene, DUN1, which works by indirectly controlling the expression of RNR, and thus dNTP production. Here we show that there is a consistent suppression of mutation rates in diploid strains lacking DUN1 compared to those with one or two working copies. We further extended these studies by monitoring key indicators of checkpoint signaling and replication stress. Our work suggests that targeting dNTPs in order to modulate the mutator phenotype represents a potential therapy for POLE mutator driven tumors.
- Presenter
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- Julie Trang, Fifth Year, Nursing UW Honors Program
- Mentor
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- Anita Souza, Nursing
- Session
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- Commons West
- Easel #9
- 11:00 AM to 1:00 PM
Homeless service providers often provide care and support to homeless individuals and families with experiences of trauma. Through hearing their client’s trauma stories and witnessing the pain, fear, and suffering that their clients endure, homeless service providers may be at risk for developing secondary trauma. Secondary trauma occurs when a helping professional develops symptoms of post-traumatic stress disorder through empathetic engagement with someone who has firsthand trauma experiences. A recent study revealed that 25% of homeless service providers reported high levels of vicarious traumatization. Amid a growing homelessness crisis and the challenges of ongoing budget cuts that homeless service agencies face, the percentage of homeless service providers with secondary trauma is likely to increase. The purpose of this investigation is to gain a better understanding about homeless service providers’ exposure and experiences of secondary trauma in their work environment. Participants of this study are homeless service providers that were recruited through convenience sampling from a large homeless service organization in King County. Participants completed demographic questions, a highly validated scale measuring Professional Quality of Life (ProQOL), and open-ended focus questions that explored occupational health challenges as well as personal level protective health factors. All measures were collected using an online survey application. We anticipate to find associations between secondary trauma among homeless service providers and high cumulative exposure to working with survivors of trauma, low engagement with self-care practices, a perceived lack of social and organizational support, and high work-related stress. Information gained through this research may be used to identifying ways to protect, sustain, and empower homeless service providers so that they can provide safe and quality care for their clients. The results of this investigation will be used to support occupational health policies and guidelines that promote the health and wellbeing of frontline workers in the homeless sector.
- Presenters
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- Priscilla A. Trivisonno, Senior, Community Psychology (Bothell)
- Sommer Jaber, Senior, Community Psychology (Bothell), Society, Ethics, & Human Behavior (Bthl) UW Honors Program
- Mentor
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- Charles Collins, Interdisciplinary Arts & Sciences (Bothell Campus), UW Bothell
- Session
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- Commons East
- Easel #46
- 11:00 AM to 1:00 PM
Along with the surge of white supremacy across the U.S. there has been an equally strong and more robust anti-racist/racial justice social movement. For white folx, widely publicized killings of young black men have awakened a collective populace to the injustices that communities of color experience and have been fully aware of for generations. Social Identity Theory suggests that individuals create and define their place in society by which groups they belong. It also suggests a divide between in-groups and out-groups, each with their own lived experiences of oppression. This project investigates how white anti-racist activists and activists of color come to know and understand structural systems of oppression. We utilize semi-structured interviews from seven white anti-racist activists and seven activists of color in the Puget Sound Region of the U.S. to identify the processes by which each group comes to understand systemic oppression and how they frame systemic oppression. Our findings suggest that people of color learn about these systems through personal experiences, whereas white activists see the experiences in these systems as a third party. Our research suggests that awareness and education about systemic oppression may indicate a pivotal point in which individuals decide to take action and become activists. We present findings along with theoretical and practical implications for anti-racist activism.
- Presenter
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- Jonathan (Johnny) Uriarte-Lopez, Junior, Biochemistry, Portland State University McNair Scholar
- Mentor
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- Eric Feczko, Medical Education & Biomedical Informatics, Oregon Health and Science University
- Session
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- MGH 206
- Easel #168
- 11:00 AM to 1:00 PM
Autism Spectrum Disorder (ASD) is a neurodevelopmental disorder consisting of altered social and communication difficulties and restrictive and repetitive behaviors. In the United States, 1 in 68 children are diagnosed with ASD, however, the underlying causes of ASD are unknown. Neuroscientists commonly use magnetic resonance imaging (MRI) to noninvasively study the brains of children with ASD. However, many MRI studies suffer from a small sample size. To address this issue, 17 institutions came together to share anatomical and functional brain images and formed the Autism Brain Imaging Data Exchange (ABIDE). Although ABIDE tackles sample size issues, new pipelines introduced by the human connectome project (HCP) require reassessment of data quality. For our study, an ABIDE dataset went through a rigorous, yet teachable quality control assessment protocol created by the Developmental Cognition and Neuroimaging Lab (DCAN) at Oregon Health & Science University. The scans were graded as usable, probable, and unusable. Grades were determined by precise delineation of gray and white matter brain segmentations in anatomical scans, signal dropout using blood oxygen level detection (BOLD) in functional scans, and proper atlas registration of functional and anatomical data. Preliminarily, 116 subjects were analyzed and numerous issues were found. Anatomical scan segmentation showed signs of poor delineation, and functional brain images had notable loss of signal. Thus far, the analysis yielded a 35% acceptance rate. Early results of this analysis indicate that the ABIDE dataset would benefit from an improved quality assessment protocol along with updates to processing pipelines to increase data quality.
- Presenter
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- Mary Valentine, Sophomore, Marine biology, Grays Harbor Coll
- Mentors
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- Amanda Lyn Gunn, Aquatic & Fishery Sciences, Grays Harbor College
- Adrian Tuohy, Aquatic & Fishery Sciences, Wild Fish Conservancy
- Aaron Jorgenson, Aquatic & Fishery Sciences, Wild Fish Coservancy
- Justin Eastman, Environmental Science
- Session
-
- Balcony
- Easel #105
- 11:00 AM to 1:00 PM
In the Pacific Northwest the Endangered Species Act (ESA) protects wild salmonids from commercial fishing. The current commercial fishing gear, including gill nets but not limited to, disrupts the recovery of these species because fishermen can not selectively harvest the hatchery fisheries without wild salmonids as bycatch, which have high mortality rates. Once ESA quotas are met this can effectively shut down commercial fisheries. The exploration of alternative fishing tools that can select for certain species will lower bycatch mortality rates of ESA species, and in turn allow commercial fisheries to operate longer. On August 26th through September 29th of 2017 Wild Fish Conservancy conducted follow up research, to a 2016 pilot study of Pound nets, in the Lower Columbia River Sub-Basin. Post release survival rates were evaluated in a modified stock selective pound-net. Using Mark Recapture methodology, with a Passive Integrated Transponder (PIT) tags, and genetic clippings for later analysis. Survival rates of control specimen to treatment specimen were captured as they traveled past dams upstream. Data analyzed were total catch, catch per unit effort and covariates of recapture probabilities. The preliminary results show that fishing with stock selective nets can effectively target hatchery fisheries while successfully releasing ESA listed species, reducing mortality rates. In 33 days WFC and a local fisherman captured and released 7,129 salmonids with a post release survival for steelhead and trout ( Oncorhynchus Mykiss) of 94.0%, and 96.6% for Chinook salmon (Oncorhynchus Tshawytscha) listed as ESA species. Hatchery fisheries of these species along with coho salmon (Oncorhynchus kisutch) were effectively selected with viable commercial quantities. Future subset data of genetic clips and a Jolly-Seber analysis will give more precise information of these post-release survival estimates.
- Presenter
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- Roxana Karina Vazquez, Senior, Psychology, Biology, Neuroscience, University of Nevada Las Vegas McNair Scholar
- Mentor
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- Kristen Culbert, Psychology, University of Nevada, Las Vegas
- Session
-
- Balcony
- Easel #99
- 11:00 AM to 1:00 PM
Anorexia nervosa (AN) is characterized by severe dietary restriction that results in significant malnourishment and weight loss. Regions in the brain related to appetitive drives and interoceptive awareness could be key biological factors that contribute to this severe dietary restriction. The insular cortex may be a particularly important region, as it is thought to be involved in a neural network that processes gustation and the integration of emotional valence with visceral input. A systematic review was conducted to explore links between AN and the insula using the following inclusion criteria: peer-reviewed fMRI studies that incorporated only adult samples of the AN population, were published in the last ten years, and measured activation in response to food-related stimuli. Eleven fMRI studies that addressed patients with current or past anorexia nervosa and the insula met inclusion criteria and were reviewed for qualitative analysis. Studies used a range of different methods, including different task paradigms, making it difficult to make between-study comparisons. Thus, although the insular cortex has been linked in the past to AN, if or how the insular cortex is implicated in restrictive eating in AN remains unclear. Additional studies are needed to clarify links between the insular cortex and AN to distinguish between disturbances that are present during the ill-state versus those that may occur prior to illness onset or following recovery. Studies that use larger sample sizes from both ill and recovered groups with AN will be necessary to further elucidate the potential insula dysregulation in AN and its role in food motivation.
- Presenters
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- Kaylen Tianna Vine, Senior, Interdisciplinary Arts & Sciences (Psychology), UW Tacoma
- Natalia Rebecca Masterman, Senior, Interdisciplinary Arts & Sciences (Psychology), UW Tacoma
- Mentor
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- Leighann Chaffee, Interdisciplinary Arts & Sciences (Tacoma Campus), University of Washington Tacoma
- Session
-
- Balcony
- Easel #94
- 11:00 AM to 1:00 PM
The key to understanding the obesity epidemic may be in the role of incentive motivation and reward mechanisms in eating behaviors, thus sugar-sweetened beverages are commonly investigated. Though explicit reports of food choice and behavior are typically used, reward processes likely influence intake through implicit mechanisms. Cognitive load, or the use of mental energy, influences eating behavior by decreasing mindful eating. The present study examines hedonic liking and motivational wanting with three tests, Greenwald and colleagues (1998) Implicit Association Test (IAT), the Personalized IAT (“I like”), and the Extended Personalized IAT (“I want”) in participants under cognitive load. As our ability to self-regulate is dependent on cognitive resources, the cognitive load manipulation should influence implicit liking and wanting, but not the traditional IAT. We predict that due to the cognitive load manipulation, 1) participants will demonstrate significantly greater implicit liking and wanting as compared to traditional IAT scores and 2) implicit wanting, but not implicit liking, will serve to predict participant beverage selection. The prediction of feeding behavior is important given that many efforts taken to combat the obesity epidemic have failed; therfore, understanding the underlying psychological processes that explain over consumption may be the key factor in abating the obesity epidemic.
- Presenter
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- Emily K Vo, Junior, Biochemistry
- Mentors
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- John Neumaier, Pharmacology, Psychiatry & Behavioral Sciences
- Kevin Coffey, Psychiatry & Behavioral Sciences
- Session
-
- Balcony
- Easel #90
- 11:00 AM to 1:00 PM
The ability to quantify rat and mice ultrasonic vocalizations (USVs) can provide ethological validity to animal models of affective disorders. Vocalization frequencies are key indicators of a rodent’s subjective state and are closely tied to their behavior. For example, 50-kHz calls in rats are emitted during positive events such as sucrose drinking, and are attributed to a positive affective state. In contrast, 22-kHz calls are ascribed to a negative affective state, and are emitted during negative events such as shock. Current methods for manually scoring vocalizations are slow and labor intensive, while automated programs lack the accuracy to produce satisfactory scoring under non-ideal recording conditions. In order to create a more precise program for detecting these USVs, we applied deep learning, which has revolutionized the field of bioacoustics through image detection and recognition of audio files. By converting soundwaves produced by mice and rats into spectrograms, we can train convolutional neural networks to distinguish between vocalizations and noise. Using these methods, we created the software DeepSqueak©, a Deep Learning Based System for Quantifying USVs and Extended Analysis Kit, which outperforms current state-of-the-art, commercially available software. Hundreds of rat calls from the 18-75kHz were manually isolated from spectrograms and used as training data for our neural network, allowing it to differentiate calls from noise. As a result, USV detections using DeepSqueak are far more rapid and accurate in comparison to existing software. The detected calls produced from the software were then reviewed and re-entered into the neural network as another training set to consolidate its precision and efficiency. With the speed and reliability of DeepSqueak, quantification of USVs can become more widespread and lead to a wealth of new knowledge relating to affective disorders.
- Presenters
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- Hue Lien Vo, Senior, Interdisciplinary Arts & Sciences (Psychology), UW Tacoma
- Shannon R. Taylor, Senior, Interdisciplinary Arts & Sciences (Psychology), UW Tacoma Undergraduate Research Conference Travel Awardee
- Mentor
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- Stephen Ross, Interdisciplinary Arts & Sciences (Tacoma Campus), University of Washington, Tacoma
- Session
-
- Balcony
- Easel #95
- 11:00 AM to 1:00 PM
Since 1989, over 2,000 individuals have been exonerated of crimes for which they were convicted. Of the 350+ of these individuals that were demonstrated to be innocent following post-conviction DNA testing, eyewitness misidentification was the single greatest contributor to their wrongful convictions. Given this emerging knowledge, policies have recently been adopted that recommend all identification procedures be video-audio recorded and conducted by an administrator that does not know which individual in the array is the suspect (i.e., blind). If one is not available, a “blinded” procedure is recommended in which the individual photographs are shuffled so that the administrator is unaware of where the suspect is located in the array. These recommendations developed out of the belief that they may produce more reliable evidence and increase observers’ abilities to discriminate between accurate and inaccurate witnesses. To date, studies examining third-party observers’ evaluations of videotaped identification procedures have exclusively relied on student samples. The current research extends our knowledge of third-party observers’ evaluations of recorded identification procedures through recruitment of community members (n=281) and prosecutors/defense attorneys(n=51). Participants viewed a recorded identification procedure in which the witness identified either a guilty or innocent suspect and were later asked to make judgments on the accuracy of the identification and perceptions of the witness and administrator. These procedures varied in presentation format (simultaneous/sequential) and administration type (blind/blinded/non-blind). Preliminary results show that defense attorneys displayed a disbelief bias in which they were more skeptical of identifications compared to prosecutors and community members. Secondly, observer’s perceptions of the ease of the witness’s decision and witness confidence predicted observer belief. Lastly, the ability to discriminate between accurate and inaccurate identifications was the lowest in the blinded administrations. These findings indicate a need for further research in the use of alternative administrations when a blind administration is not possible.
- Presenters
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- Anushka Wadhawan, Senior, Industrial Engineering
- Claire Overby, Junior, Industrial Engineering
- Matt Cook, Senior, Mechanical Engineering
- Qihua (Garret) Yang, Senior, Electrical Engineering
- Griffin Wu, Senior, Electrical Engineering
- Joseph Hyobeum Shin, Senior, Electrical Engineering
- Lucky Agung Pratama, Graduate, Built Environment
- Evan Robert Kirkpatrick, Senior, Industrial Engineering
- Noah Saul Bostick, Junior, Mechanical Engineering
- Madalyn Li, Senior, Industrial Engineering
- Mentors
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- Tom Furness, Industrial Engineering
- I-Chun Hung, Industrial Engineering
- Session
-
- Commons East
- Easel #70
- 11:00 AM to 1:00 PM
Flow is a mental state achieved by a person performing a task when there is a balance between skill and challenges, thereby evoking focused attention, full involvement, and enjoyment. For education applications, achieving a flow state may accelerate learning, retention and improve learning outcomes. Most current methods for assessing the extent of flow state use a self-reported questionnaire only when participants finish a learning activity. Alternatively, using objective real-time measurement such as electrophysiological techniques to assess the flow state, especially during a learning period, affords the possibility of timely adjustment of challenges to keep up with learners’ growing abilities. Such an adaptive approach may provide a more improved way to enter and sustain flow in learning activities. Previous studies also indicate that gamification is a proven way to induce the flow state, and virtual reality (VR) activities provide learners more immersive experience. The purpose of this preliminary study is to investigate an adaptive approach for assessing flow state during VR learning activities with electrophysiological measurement. This study used a NeuroSky EEG headset with a supervised machine learning algorithm to identify the features of attention, meditation, and eye blinks with flow state while performing VR learning activities. To evaluate the effects of the proposed approach, data collection was through an experiment with 10 UW students by assessing their flow state while playing VR educational games. The first version model trained by the three types of indicators is capable of determining if a learner performing VR learning activities enters the flow state. In turn, the result of this preliminary study serves as a metric for the follow-on research addressing the development of adaptive learning strategies to help each learner enter into a flow state and improve learning outcomes with the sustained flow state.
- Presenter
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- Winnie Wang, Senior, Physics: Comprehensive Physics, Astronomy, Philosophy
- Mentors
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- Andrew Connolly, Astronomy
- Melissa Graham, Astronomy
- Session
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- Commons East
- Easel #53
- 11:00 AM to 1:00 PM
One of the main science goals of the Large Synoptic Survey Telescope (LSST) is to further understand the relationship between dark energy and the universe's expansion. In order to achieve this scientific goal of the LSST, accurate estimates of photometric redshifts, which are used as a proxy for cosmological distance, for galaxies are required. To improve its estimates of photometric redshifts, the LSST could incorporate near-infrared data from other surveys along with its optical measurements of galaxy brightness. In order to understand how photometric redshifts improve with the addition of near-infrared (NIR) data, we statistically compare the quality of photometric redshifts using simulated galaxy catalogs with optical-only and optical-plus-NIR data. In my poster, I quantify the expected improvements to photometric redshifts when LSST optical data is combined with NIR data from the future ESA Euclid or NASA WFIRST space telescopes. In general, WFIRST has less outlier galaxies because WFIRST’s NIR filters have a redder band and can cover deeper in the IR spectrum.
- Presenter
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- Sarah Marie Wells, Junior, Pre-Social Sciences
- Mentors
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- Charles W Frevert, Comparative Medicine
- Mary Chang, Comparative Medicine
- Session
-
- MGH 206
- Easel #170
- 11:00 AM to 1:00 PM
The importance of understanding the inflammatory response in the lungs is underscored by the fact that pneumonia and influenza illnesses led to an estimated 12,000 deaths in the 2015-16 U.S. flu season. Our research investigates the expression and regulation of versican in response to lung infections, both viral and bacterial. Versican is a chondroitin sulfate proteoglycan present in the extracellular matrix; it is expressed in lungs during embryonic development, mostly absent during healthy adulthood, and re-expressed in instances of inflammatory lung injury or infection. We are interested in understanding the pathways that result in versican upregulation, as preliminary data suggest that versican can be either pro- or anti-inflammatory, depending on the type of cell it arises from. My research project investigates this differential regulation phenomenon - recently, I have incorporated chromatin immunoprecipitation (ChIP) of versican transcription in both viral-stimulated macrophages and lung fibroblasts to explore the epigenetic factors that control expression. ChIP allows us to establish and quantify interactions between proteins and DNA; in our case, we are interested in transcription factors that follow interferon beta signaling (IFNb), which has been shown by our lab to be a key mediator of versican expression. IFNb itself is a known anti-viral cytokine, suggesting that versican may also follow this response to viral infection. If we can determine which transcription factors, if any, lead to an increased response of versican, we will have identified a signaling pathway by which to manipulate versican expression. The ultimate goal of this work is to develop a lung inflammation therapy by driving production of versican in an anti-inflammatory state. Utilizing versican's power as an immunomodulatory molecule could be a new tool for fighting severe inflammation associated with respiratory illnesses.
- Presenter
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- Kedar Yadav, Freshman, Pre-Major, UW Bothell
- Mentor
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- Andrew Abian, Engineering and Mathematics (Bothell Campus)
- Session
-
- Commons East
- Easel #56
- 11:00 AM to 1:00 PM
The Collatz conjecture, named after Lothar Collatz, is one of the most deceptively difficult unsolved problems in mathematical number theory. The use of simple calculations and simple rules has left the mathematical community baffled for more than 80 years. Paul ErdÅ‘s, a monumental 20th century mathematician, said that: "Mathematics may not be ready for such problems." He also offered $500 for its solution. In 2010, Jeffrey Lagarias claimed that based only on known information about this problem, "this is an extraordinarily difficult problem, completely out of reach of present day mathematics.” The Collatz conjecture’s simple rules are as follows; First, start with an integer. If it is even, divide by two. If it is odd, multiply by three and add one. Then, repeat this process for the result. Simple calculations. The conjecture states that every number will eventually reach one. For example: 5>16>8>4>2>1. This research aims to explore and observe the behavior of the Collatz problem as well as the “Collatz family.” The Collatz family are defined as iterative functions in the form: AX + B (X ≡ 1 (modulo Y)) and X/Z (X ≡ 0 (modulo Y)) Where X, A, B, and Y are integers. The Collatz conjecture is for the case: A=3, B=1, Y=2. This research does not attempt to find novel solutions to the problem using analytic number theory, rather we utilize computer programs to find structures and anomalies within the Collatz familly map. Hopefully, more discoveries surrounding the structure of the problem will give rise to its elusive patterns.
- Presenter
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- Angela Ramona Yun, Senior, International Studies, Political Science McNair Scholar
- Mentor
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- Walter Parker, Education, Political Science
- Session
-
- Commons West
- Easel #23
- 11:00 AM to 1:00 PM
In the United States, international education and multicultural education are both discussed and implemented in many schools. International education is a form of education that aims to increase student’s knowledge of world regions and international affairs. It also promotes multiple language learning. One argument for international education is to promote global identity (Parker, 2008; Stewart, 2008). Meanwhile, multicultural education aims to transform the education system into one that provides diverse perspectives, histories, and values (Parker, 2008; Stewart, 2008; Banks, 2008). It focuses on a national civil rights narrative that is inclusive of ethnic identities within the United States (Banks, 2008). It promotes a national identity by focusing on the diversity and history of the United States. These two forms of education present global identity, national identity, and ethnic identity in education. The United States' education policy is profoundly connected to nationalism and largely concerned with unifying American identity (Hutchins 2016). The movements for international education and multicultural education bring into question the tensions over identity-formation and the role of education in influencing students’ identities. Should students mainly become national citizens or global citizens? Both? Neither? The purpose of addressing these questions is because modern education is closely related to liberal democratic nation-state development administered by the state through mass education (Hutchins 2016). The tensions of implementing both or either international education and multicultural education is because of this relationship. A change in education is a change in identity which relates to how domestic issues like minority rights and international issues like international peace and economics are handled. The purpose of this project is to consider the impact of these two programs on identity-formation in the United States by how they affect the legitimacy of the nation-state and how it could alleviate unchecked and dangerous nationalism in domestic and international policy.
- Presenter
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- Daisy Vanesa (Daisy) Zavala, Junior, Materials Science & Engineering Mary Gates Scholar, McNair Scholar
- Mentor
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- Susan Herring, Orthodontics
- Session
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- MGH 258
- Easel #185
- 11:00 AM to 1:00 PM
Craniofacial sutures are fibrous joints which connect adjacent skull bones. The sutures are sites of growth but are probably zones of mechanical weakness compared to the bones. The suture’s ability to transmit compressive and tensile loads therefore affects both cranioskeletal growth and stress distribution. I compared tensile mechanical properties of four adjoining sutures, two longitudinal (interfrontal; n=5; internasal, n=2); and two transverse (coronal, n=2; nasofrontal, n=8). Coronal (n=6) and nasofrontal (n=1) were tested in compression. The suture specimens were extracted from the heads of young pigs used in unrelated experiments. All sutures exhibited a “toe area” where substantial strain occurred at a low load relative to the elongation. This region presumably represents the stretching of relaxed fibers. The stress-strain curve showed a linear region that began almost immediately following the toe area, in this “elastic region” the suture can recover its original length when unloaded. At high stress the response began to deviate from linearity. With further strain, the load ceases to increase, the sutures experienced plastic behavior presumably representing increased load bearing by the remaining intact fibers, when even a slight drop in force was seen. The sutures were reshaped permanently, cycles of elastic and plastic behavior continued until a final softening phase and suture failure. The mechanical properties measured were similar at all four sutures under tension and compression. Ultimate stress was variable, ranging from 0.1-4.3 MPa and an overall average of 1.32 ± 0.88 MPa (n=22). Eliminating the highest and lowest values resulted in a more accurate mean of 1.23 ± 0.54 (n=20). These values are considerably less than bone (over 100 MPa). Ultimate strain was more consistent, averaging 5.9 ± 4.3 % (range 2–14%, n=22). These values are considerably more than bone (less than 1%). Thus, sutures are more flexible but less strong than bone.
- Presenters
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- Alexander Weihua (Alex) Zhu, Senior, Neuroscience
- Valeria Aizen, Junior, Biology (Molecular, Cellular & Developmental)
- Mentor
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- Daniel Promislow, Biology, Pathology, University of Washington School of Medicine
- Session
-
- MGH 241
- Easel #164
- 11:00 AM to 1:00 PM
Alzheimer’s Disease (AD) is one of the leading causes of death in the United States. Studies suggest that the root cause of AD is due to two proteins, Aβ1-42 and tau, which accumulate and aggregate into amyloid plaques and neurofibrillary tangles, respectively. Current studies on the heritability and genetic foundation for AD are not well resolved. In order to understand which genes are best able to resist the effects of Aβ1-42 and tau, we utilized an AD fruit fly model. More specifically, we used a mutant line of Drosophila melanogaster, which we call R32, in which human transgenes of Aβ1-42 and tau are expressed in the fly eye. We used this reagent to express AD proteins in the Drosophila Genome Reference Panel (DGRP), a set of 200 fully sequenced, inbred lines derived from a wild population, in order to simulate a model of natural genetic variation. Aβ1-42 and tau proteins lead to degradation in the eyes causing fusions and irregular shaping of ommatidia. Accordingly, we imaged fly eyes at 28 days of age. We found significant genetic variation in ommatidial circularity and area, two measures of eye quality. We performed a genome-wide association study to identify specific single nucleotide polymorphisms (SNPs) that act as markers signaling degradation in the ommatidia. Significant SNPs were found linked to genes associated with neurotransmitter receptors, neural signalling, and photoreceptor differentiation. Further studies will try to validate the effect of the identified genes and quantify the effects of the SNPs on the degenerative eye phenotype. Additionally, metabolomic studies as well as a model that expresses the AD-related proteins in the brain would be utilized to study the effects on lifespan, memory, and locomotion.
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