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, extracellular matrix, and therapies are spatially organized in human tissues. Our goal is to translate spatial insights into strategies for disease interception and curative therapy. Potential project directions
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high‑density electrophysiological recordings (e.g., Neuropixels) in awake, behaving macaques. • Lead or contribute to cognitive and behavioural experiments in non‑human primates or humans that probe
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from across Stanford University including the Schools of Medicine, Humanities and Sciences, Engineering, Education, Law, Earth Sciences, and the Graduate School of Business together with colleagues
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to intervention). Researchers face these same challenges creating a bottle-neck to research at scale. While education technology companies have built products that lower the demands on teachers, many
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transporters, which play critical roles in human physiology and pathophysiology. Available projects include cryo-EM structure determination and electrophysiological studies of mechanism, tightly integrated with
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Posted on Thu, 09/10/2026 - 14:18 Important Info Faculty Sponsor First name: Robb Faculty Sponsor Last Name: Willer Stanford Departments and Centers: Institute for Human-Centered Artificial
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publicly available data and primary data collection. Our lab emphasizes deploying novel strategies to evaluate the impacts of environmental change on human health, in order to better design and test
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precision medicine approaches is preferred. Familiarity with psychological constructs and/or experience with human subject data is preferred. Profound experience in statistical and computational approaches
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and/or related fields including genetic epidemiology, human genetics, biostatistics, bioinformatics, computational biology, or phenomics (including EHR, deep medical imaging, and biomarker profiling
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vascular cells and diseases. Position will involve working with both human cells and mouse models. The project encompasses uncovering novel mechanisms of gene regulation, and high dimensional single cell