2026-27 Levinson Emerging Scholars
Meet the 2026-27 cohort
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Alice GettigAlice Gettig
Electrical and Computer Engineering
Alice Gettig
Alice Gettig
Major(s): Electrical and Computer Engineering
Project: Controlling Mouse Speed to Isolate the Influence of Locomotion in Cortical State
Mentor: Nick Steinmetz, Department of Neurobiology and Biophysics
Alice Gettig is a junior at the University of Washington studying Electrical and Computer Engineering. Drawn to computational neuroscience, she joined the Steinmetz lab in the Department of Neurobiology and Biophysics in 2025 to pursue this interest, and over the past year has been studying how locomotion affects cortical state in mice. Her project focuses on disentangling neural arousal from physical movement itself, by controlling the speed at which mice run and recording the associated brain activity with wide-field imaging. To make this possible, she has been designing a treadmill and its physical and electrical systems. Outside of research, Alice enjoys spending time in the mountains, watching movies, riding her bike, and doing yoga. After completing her bachelor’s degree, she plans to pursue a PhD in neuroscience, combining her technical engineering background with her scientific interest in the brain. Alice would like to extend her immense gratitude to Dr. Nick Steinmetz for his endlessly constructive mentorship, and to the entire Steinmetz lab for their rigorous pursuit of scientific discovery and welcoming environment.
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Dahna KimDahna Kim
Biochemistry, Bioengineering
Dahna Kim
Dahna Kim
Major(s): Biochemistry, Bioengineering
Project: Developing an In Vitro Model of Bladder Smooth Muscle Contraction to Study Pathophysiological Bladder Remodeling
Mentor: Maya Chandru, Department of Urology; Ashleigh Theberge, Department of Chemistry
Dahna is a junior at the University of Washington majoring in Biochemistry and Bioengineering. Passionate about the intersection between the biosciences, engineering, and health justice, she conducts research in the Bioanalytical Chemistry for Medicine and the Environment Laboratory and the GenitoUrinary Engineering Collaborative, mentored by Dr. Ashleigh Theberge and Dr. Maya Chandru. In her project, she aims to leverage microfluidics-based suspended tissue engineering platforms to create a 3D model of bladder smooth muscle contractions against varying levels of resistance. Using this model, she would like to elucidate little-understood mechanisms of histological remodeling processes in bladder smooth muscle tissue in response to bladder outlet obstruction. She hopes that this shareable, tunable model can also be applied to test the effects of existing bladder-relaxing medications, and ultimately aid in the screening and development of novel drugs targeting the bladder. Her research experiences have inspired her plans to become a physician scientist and explore how research and patient care continuously inform one another. She would like to extend her gratitude to the Levinson family for their generosity, and to her lab mentors and peers for their scientific insights and uplifting community.
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Ruyan LiRuyan Li
Neuroscience, Informatics
Ruyan Li
Ruyan Li
Major(s): Neuroscience, Informatics
Project: Tracking Aperiodic Neural Activity Dynamics Across the Human Auditory-Language Hierarchy
Mentor: Jesse Miles, Department of Neurosurgery; Jeffrey Herron, Department of Neurosurgery
Ru Li is a senior at UW pursuing degrees in Neuroscience and Informatics. Ru conducts research in the GRID Lab, her project use human intracranial EEG recordings to study neural activity during language processing, with a particular interest in aperiodic brain activity and its relationship to cortical excitability. More broadly, Ru is interested in computational neuroscience, epilepsy, and the development of neurotechnology that can better connect neural signals with clinical care. Outside of research, Ru enjoys singing, dance, and creating accessible neuroscience content for a broader audience. -
Alessandro MartinezAlessandro Martinez
Environmental Engineering
Alessandro Martinez
Alessandro Martinez
Major(s): Environmental Engineering
Project: Tire Wear Particles (TWPs) and Tire-Rubber-Derived Additives in Roadside Soils
Mentor: Edward Kolodziej, Department of Civil and Environmental Engineering
Alessandro Martinez is a rising senior majoring in environmental engineering. He started his undergraduate research with Professor Edward Kolodziej’s lab group in the Summer of 2025, assisting in projects investigating urban streams for tire-derived contaminants like 6PPDQ, which is acutely lethal to Coho Salmon. His current project examines the concentration of tire-derived compounds and tire wear particles (TWPs) in roadside soils. The goal of his research is to illuminate the mass balances of tire-derived compounds and TWPs and consider how factors of traffic density, season, and vegetation may impact the accumulation of these pollutants. In doing so, his research hopes to guide improvements in the field of green infrastructure designed to treat stormwater carrying TWPs and tire-derived compounds so that communities can better mitigate environmental harm. Outside of research, Alessandro is also involved in other campus groups, currently serving as president for the UW chapter of the American Water Resources Association, and plays clarinet in the UW Wind Ensemble. Beyond graduation, Alessandro hopes to pursue a career focused largely on stormwater engineering, where he can design stormwater conveyance and treatment systems. This student would like to thank Ph.D. student mentors Emily Everton and Alanna Hildebrant for supporting him on his research journey, and Professor Kolodziej for pushing him to think more critically and always read more research papers.
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Rin PrabhakaranRin Prabhakaran
Bioengineering, Biochemistry
Rin Prabhakaran
Rin Prabhakaran
Major(s): Bioengineering, Biochemistry
Project: Understanding the Evolutionary Adaptations for Saline Tolerance in Mosquito Larvae through Transcriptomics and Morphometrics
Mentor: Andrea Durant, Department of Biology
Shrinidhi (Rin) Prabhakaran is a senior majoring in Bioengineering and Biochemistry at the University of Washington. Since joining the Durant Lab in her Freshman year, Rin has been studying how mosquito larvae have evolved specialized osmoregulatory organs that enable them to survive in challenging saline environments, using transcriptomics, morphometrics, and comparative physiology to investigate these adaptations. She is grateful to Professor Andrea Durant and PhD student Elissa Khodikian for not only teaching her technical skills, but also cultivating a welcoming environment that encourages her growth as a researcher. Through her undergraduate research experiences, Rin has deepened her interest in biomedical research and hopes to pursue a PhD in Bioengineering. She is honored to receive the Levinson Emerging Scholars Award and deeply grateful to Art and Rita Levinson for their support. Outside of research, Rin enjoys reading, spending time with her cat, and drinking coffee.
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Sarah RamzanSarah Ramzan
Biochemistry
Sarah Ramzan
Sarah Ramzan
Major(s): Biochemistry
Project: Understanding the Role of MGRN1 in Promoting Mitochondrial Health and Deterring Neurodegeneration
Mentor: Jennifer Kong, Department of Biochemistry
Sarah Ramzan is a junior at the University of Washington studying Biochemistry with a minor in Bioethics. She joined the Kong Lab in the Department of Biochemistry in summer 2024 to explore her interests in cellular mechanisms, signaling sensitivity, and development. Her project focuses on understanding the origins of spongiform neurodegeneration by investigating how loss of the E3 ubiquitin ligase MGRN1 affects mitochondrial function and brain development. Using stem cell-derived neurons, Sarah hopes to identify how MGRN1 maintains mitochondrial integrity in neurons and determine whether mitochondrial dysfunction represents an early cellular event that precedes neurodegeneration. Ultimately, this work can reveal molecular targets for therapies aimed at slowing or preventing disease progression and also nurturing healthy brains. After graduation, Sarah plans to continue her commitment to lifelong learning and pursue a career as a physician-scientist. In her free time, Sarah enjoys creative pursuits like knitting and crocheting, as well as spending time with friends and family. She is grateful to her mentor, Dr. Jennifer Kong, for her guidance and for the support of the Levinson Emerging Scholars Award.
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Padmaja SenthilPadmaja Senthil
Neuroscience
Padmaja Senthil
Padmaja Senthil
Major(s): Neuroscience
Project: Age Dependent Vulnerability in TDP-43 Pathology: Investigating Immunological and Molecular Determinants of Early Mortality in Mouse Models
Mentor: Martin Darvas, Department of Laboratory Medicine and Pathology
Padmaja Senthil Kumar is a junior at the University of Washington studying Neuroscience with a minor in Neural Computation and Engineering. She joined the Darvas Lab at Harborview Medical Center in Winter 2025 under the mentorship of Dr. Martin Darvas, focusing on critical brain circuits and signaling pathways involved in aging and neurodegenerative diseases. Her current project investigates age-dependent vulnerability in TDP-43 pathology. TDP-43 mislocalization and aggregate formation is a hallmark of amyotrophic lateral sclerosis, frontotemporal dementia, and subsets of Alzheimer’s disease, and while aging is the strongest risk factor for neurodegeneration, early-onset forms of these diseases often progress more aggressively once established. The lab identified a striking paradox underlying this phenomenon: young mice injected with AAV-mediated TDP-43 overexpression experienced faster motor decline and earlier mortality, yet aged mice displayed higher TDP-43 burden and astrocytic activation in the lumbar spinal cord. Padmaja’s work focuses on uncovering the mechanisms behind this age-dependent vulnerability by analyzing motor and frontal cortex tissue for neuronal loss, microglial activation, and proteostatic stress, and correlating these findings with behavioral and survival outcomes. This research aims to clarify how age shapes vulnerability to TDP-43 toxicity and lay the groundwork for age-informed therapeutic strategies in early-onset neurodegenerative disease. Upon graduation, Padmaja hopes to pursue medicine and build a career at the intersection of surgery and neuroscience research. Outside the lab, she enjoys running, trying new recipes, traveling, and spending time with friends and family. Padmaja is deeply grateful to Dr. Martin Darvas, Dr. Daniel Fisher, and Marisol Lauffer for their continued mentorship and support in the development of this project. She also thanks the Levinson family for this award and their generous support of undergraduate research.
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Shagun SethShagun Seth
Biology
Shagun Seth
Shagun Seth
Major(s): Biology
Project: Decoupling Cue Perception from Drug-Seeking: Using Peripheral Biomarkers to Predict Fentanyl Relapse
Mentor: Todd Appleby, Department of Neurobiology and Biophysics
Shagun is a senior at the University of Washington pursuing a Bachelor of Science in Biology with a minor in Health Studies. In the Golden Lab, under the mentorship of Todd Appleby, her research addresses the fentanyl overdose epidemic by decoupling cue perception from drug-seeking behavior using peripheral biomarkers. Building on her experience with oral fentanyl self-administration (OFSA) mouse models, Shagun will assist with the surgical implantation of wireless Bio-Mechano-Acoustic Devices (BMAD) to continuously monitor the heart and respiratory rates of freely moving subjects. Her work isolates the “pre-approach window:” the critical period immediately following a visual trigger but strictly before physical movement toward a drug-delivery lever occurs. By testing how visual cue brightness modulates peripheral physiology during this window, she uses computational modeling to predict the trial-by-trial likelihood of fentanyl-seeking behavior. Shagun aims to establish physiological monitoring as a reliable predictor for impending relapse, paving the way for proactive, wearable therapeutic devices for individuals in recovery.
Driven by this work, Shagun plans to pursue an MD after graduation with the hopes of bridging preclinical biomarker research with clinical addiction medicine. In her free time, she enjoys baking and exploring new cafes. She extends her sincere gratitude to Todd Appleby, Sam Golden, the Golden Lab, and Art and Rita Levinson for their generous support, and is honored to receive the Levinson Emerging Scholars Award.
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Jack SmithJack Smith
Biochemistry
Jack Smith
Jack Smith
Major(s): Biochemistry
Project: Investigating the Interactions of Microbiome Mimics with Epithelial and Immune Cells
Mentor: Shijie Cao, Department of Pharmaceutics
Jack is a fourth-year at the University of Washington studying biochemistry, with minors in statistics and pharmaceutical science. He is interested in drug development, and joined the PRIME lab to research nanoparticle drug delivery. One PRIME lab venture is to develop microbiome-mimicking nanoparticles to restore healthy immune system function. These mimics have been effective in preliminary testing, but the exact methods by which they are internalized by epithelial and immune cells remain unclear. Jack’s project focuses on figuring out which molecular pathways are involved; if elucidated, this information could allow the mimics to be improved and optimized at the cellular level. After Jack obtains his B.S., he plans to attend graduate school for a Ph.D. in pharmaceutical development.
Outside of academics, Jack enjoys listening to music, playing guitar at open mics, going to art galleries, playing pool, reading classics, and, most importantly, scrolling reels. He would like to sincerely thank Professor Cao, Brad Cleveland, Giulia Stewart, Lindsey Williams, Yitong Guo, and every other member of the PRIME lab for creating such a lovely and welcoming research environment. Finally, he is very grateful to Arthur and Rita Levinson for their generosity and support and thrilled at the opportunity to become a Levinson Emerging Scholar.
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Chris SoetedjoChris Soetedjo
Bioengineering
Chris Soetedjo
Chris Soetedjo
Major(s): Bioengineering
Project: Engineering FLIM-Compatible Genetically Encoded Sensors for Subcellular H2O2 Imaging in hiPSC-Derived Cardiomyocytes
Mentor: Andre Berndt, Department of Bioengineering
Chris is a senior majoring in Bioengineering at the University of Washington. He conducts research in the Berndt Lab under the mentorship of Dr. Andre Berndt and postdoctoral mentor Dr. Justin Daho Lee. Since joining the lab in June 2025, he has contributed to projects that accelerate redox sensor optimization and improve the success rate of genotype retrieval of a high-throughput mammalian cell screening system. His current project focuses on utilizing microbe-independent deep assembly and screening methods (MIDAS) to engineer FLIM-compatible redox sensors. Compared to intensity-based fluorescent sensors, FLIM-compatible redox sensors minimize sensor-concentration artifacts and enable quantitative redox imaging. These sensors will allow researchers to visualize redox dynamics in living human cells and accelerate the development of redox therapeutics. In his free time, Chris enjoys volunteering at the UW Medical Center, reading, and gaming. After graduation, he plans to pursue an MD-PhD to continue his research on engineering tools for both research and clinical use. He is grateful for the support from his mentor, Dr. Andre Berndt, and the entire Berndt Lab for creating a fun and nurturing environment. He is incredibly honored to be a Levinson Emerging Scholar and thanks Art and Rita Levinson for supporting his research.
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Sofia SolariSofia Solari
Bioengineering
Sofia Solari
Sofia Solari
Major(s): Bioengineering
Project: Expanding HIV Treatment Monitoring for High-Potency Antiretrovirals
Mentor: Ayọ̀kúnlé Ọlánrewájú, Department of Bioengineering
Sofia Solari is a senior majoring in Bioengineering at the University of Washington. She joined the Olanrewaju Lab her freshman year, where she helped develop enzymatic assays to serve as the base for a point-of-care, low-cost medical device that measures HIV medication levels. Her current project focuses on developing a cost-effective method for incorporating RNA into the assay base, enabling increased sensitivity, reduced production costs, and expanded applicability to novel, high-potency antiretrovirals. Her project will help catalyze a more accessible, faster approach to HIV drug monitoring, enabling broader distribution in low- and middle- income countries, which bear the highest burden of HIV globally. As a result, clinicians will be able to ensure patients are at sufficient medication levels, ultimately improving HIV care and treatment. Outside of the lab, Sofia enjoys cooking, trying new cafes, and spending time with friends and family. She would like to thank her mentor and principal investigator, Dr. Ayọ̀kúnlé Ọlánrewájú, along with PhD students Carrie Lin, Maya Singh, and Willow Chernoske, for their constant support and guidance. She is honored to receive the Levinson Emerging Scholars Award and gives thanks to Art and Rita Levinson for their generous contribution. Finally, she would like to thank her parents for their unwavering support and encouragement. -
Lloyd SonLloyd Son
Bioengineering
Lloyd Son
Lloyd Son
Major(s): Bioengineering
Project: Deep Learning-Based Prediction and Optimization of Stimulation-Evoked Cortical Responses
Mentor: Azadeh Yazdan-Shahmorad, Department of Bioengineering
Lloyd is a senior at the University of Washington studying Bioengineering. He joined the NERD Lab in his freshman year, where he began investigating brain stimulation for neurologic conditions. His project aims to use machine learning to predict the evoked neural response to optogenetic stimulation in non-human primates. This framework would allow researchers and clinicians to choose stimulation parameters intentionally for a desired neural response, rather than relying on trial and error. After graduation, Lloyd plans to work in the neural engineering industry before attending medical school to pursue his interest in neurology and brain-computer interfaces. In his free time, Lloyd enjoys reading, playing chess, and playing acoustic guitar. He would like to thank Felix Schwock and Dr. Azadeh Yazdan for their amazing mentorship, which helped him grow as a researcher and as a person. He is honored to receive the Levinson Emerging Scholars award, and would like to thank Dr. and Mrs. Levinson for their generous support of young scientists. -
Shrey StallardShrey Stallard
Biochemistry
Shrey Stallard
Shrey Stallard
Major(s): Biochemistry
Project: Elucidating the Role of Chloride Intracellular Channel 1 in Diabetic Cardiomyopathy
Mentor: Devasena Ponnalagu, Department of Pharmacology
Shrey Stallard is a senior at the University of Washington pursuing a Bachelor of Science in biochemistry. He joined the Ponnalagu Laboratory in the Department of Pharmacology in January 2024 to expand his understanding of diabetes and cardiovascular disease, two pathologies that have deeply impacted his family and personal life. His project explores the role of Chloride Intracellular Channel 1 (CLIC1), a metamorphic ion channel protein found to be enriched in cardiac tissue and myocardial cells, in diabetic cardiomyopathy. Through his work, Shrey found that a global knockout of CLIC1 resulted in exacerbated cardiovascular dysfunction and heart failure in diabetic mice. He extended and corroborated these findings at the cellular level using H9c2 rat cardiomyoblasts by modeling lipotoxic stress following a CLIC1-specific knockdown. These findings support a novel protective role for CLIC1 in diabetes-related cardiovascular diseases. His current research aims to better understand the molecular mechanisms by which CLIC1 may protect the heart under diabetic and lipotoxic conditions. He has presented his research at the Biophysical Society Annual Meeting, the Biochemistry Undergraduate Research Symposium, and multiple UW Undergraduate Research Symposiums. He is also committed to mentoring the next generation of scientists through his involvement in UW Bright-Up and UW Feedback, where he supports the development of future researchers from underrepresented backgrounds. After graduation, Shrey plans to pursue a PhD in molecular biology, biochemistry, or pharmacology, with the hope of expanding his knowledge of molecular mechanisms underlying cardiovascular pathologies. Beyond school and research, Shrey loves to go to the movie theater, camping, and supporting the San Francisco 49ers. He is immensely grateful to his mentor, Dr. Devasena Ponnalagu, who has been instrumental in his growth as a researcher, as well as the members of the Ponnalagu Laboratory for their guidance and encouragement. Shrey would also like to thank Dr. and Mrs. Arthur Levinson for their generous support of undergraduate research and for helping him and his colleagues to continue to grow as scientists.
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Gianna TerraGianna Terra
Bioengineering
Gianna Terra
Gianna Terra
Major(s): Bioengineering
Project: Biophysically Detailed Computational Models to Study Conduction Failure and Arrhythmogenesis in Anatomical Isthmuses in Repaired Tetralogy of Fallot
Mentor: Patrick Boyle, Department of Bioengineering
Gianna Terra is a senior at the University of Washington studying bioengineering. She has been a part of the Boyle CardSS lab since her freshman year, where her research focuses on designing cardiac computational models to study arrhythmia mechanisms. Her current project uses two and three dimensional models to investigate how specific anatomical features contribute to arrhythmia formation, with the goal of identifying clinically meaningful features. She is passionate about applying bioengineering principles to healthcare problems with the goal of improving patient outcomes. Outside of research, Gianna enjoys reading, being outside, and spending time with friends. Gianna is incredibly grateful for the support of the Boyle lab, and would especially like to thank her mentors Matthew Magoon and Dr. Boyle for always encouraging and supporting her success.
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Yinuo XuYinuo Xu
Chemistry
Yinuo Xu
Yinuo Xu
Major(s): Chemistry
Project: Developing CLOCK Ion Mobility–Mass Spectrometry for Comparing Reference and Biosimilar Trastuzumab
Mentor: Matt Bush, Addison Roush, Department of Chemistry
Yinuo is a senior majoring in chemistry and biochemistry. In the Bush Lab, he uses native ion mobility–mass spectrometry to investigate protein structure and stability, with interests in analytical method development and biopharmaceutical characterization. Previously, Yinuo studied copper selenide nanomaterials and diffusion cation exchange in the Cossairt Lab, contributing to a JACS publication and presenting his work at regional and national ACS meetings. He also serves as a teaching assistant within the department. Outside the lab, Yinuo can usually be found birding, playing in a symphonic band, or crocheting small rodents. -
Rachel YinRachel Yin
Bioengineering, Neuroscience
Rachel Yin
Rachel Yin
Major(s): Bioengineering, Neuroscience
Project: Multimodal Parcellation of the Midbrain Reticular Formation
Mentor: Nicholas A. Steinmetz, Department of Neurobiology and Biophysics
Rachel Huiwen Yin is a fourth-year Bioengineering, Neuroscience, and Interdisciplinary Honors student. She joined the Steinmetz lab in her freshman year, where she initially conducted mouse behavioral training to study visually guided behavior and electrophysiology. She later developed a research project using dye injections to generate in vivo measurements of mouse brain locations and evaluate atlas accuracy. Her current work investigates the spatial organization of the midbrain reticular formation (MRF), a poorly differentiated brainstem structure. She aims to perform multimodal parcellation, clustering MRF neurons by their local cell type composition using spatial transcriptomics and comparing the organization against connectivity tracing, single-neuron reconstructions, and biophysical properties. Outside of research, she enjoys trying new boba spots, crafting, and working on puzzles. Rachel extends her gratitude to Dr. Nicholas Steinmetz and Kimberly Miller for their mentorship, the Steinmetz lab for their insights and community, and to Art and Rita Levinson for their support of undergraduate research.
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Olivia ZhuOlivia Zhu
Biochemistry
Olivia Zhu
Olivia Zhu
Major(s): Biochemistry
Project: Redesigning Recombinase Specificity for Targeted Gene Insertion
Mentor: David Baker, Department of Biochemistry
Olivia is a senior at the University of Washington majoring in Biochemistry. She joined the Baker Lab at the Institute for Protein Design, where she leads a project on redesigning recombinases — bacteriophage enzymes that insert entire genes into a genome at a single defined sequence. Recombinases have a useful property for therapeutic editing: they place large DNA payloads without leaving exposed double-strand breaks behind. Their limitation is that each one recognizes only the short DNA sequence it evolved to target, which is rarely where a therapy needs to go. Olivia is using computational protein design to reshape how these enzymes read DNA, so that their specificity can be redirected toward a chosen site in the human genome while preserving the machinery that makes the reaction work. She pairs this design work with a rapid biochemical assay for testing candidates and with computational screening to flag unintended sites before designs ever reach cells. The goal is to make large-payload gene insertion programmable rather than fixed by whatever sequence an enzyme happens to have evolved for. Olivia hopes to pursue a PhD in immune-engineering. Outside of the lab, she climbs, swims, and explore new restaurants with friends. She would like to thank Dr. David Baker and Bingxu Liu for their generous mentorship and for fostering a lab community where she has been able to take on an ambitious project. She is also deeply grateful to Art and Rita Levinson for their support and is honored to receive the Levinson Emerging Scholars Award.