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physiologically plausible models of how light penetrates brain tissue particularly how it is scattered and absorbed. The project will also refine the use of optogenetics that can be used to drive cells
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characterization (ultrasound, x-ray scattering, IR imaging), and experimental equipment design (CAD, controls (i.e., LabView, Python, Arduino, G-code), image/video processing (i.e., ImageJ). [1] A
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algorithms for enhanced sampling is essential to bridge length or time scales over many orders of magnitude. Comparison of our simulations with the experimental results of others [e.g., small-angle scattering
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scattering and understanding background events that can mimic or obscure the signal. Remote shifts to monitor detector operation and data quality will be required. The student will also have the opportunity
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Neuroscience https://doi.org/10.1038/nn.4465 Lomi, E., Jeffery, K. J., & Mitchell, A. S. (2023). Convergence of location, direction, and theta in the rat anteroventral thalamic nucleus. IScience https://doi.org
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: Tenured/Tenure-track faculty Position Location: Beijing, Beijing, China [map ] Subject Areas: Physics / Condensed Matter Theory , High Energy Theory , Mathematical Physics , Particle Theory , Scattering
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: Tenured/Tenure-track faculty Position Location: Beijing, Beijing, China [map ] Subject Areas: Physics / Condensed Matter Theory , Particle Theory , Physics , Scattering amplitudes , String Theory , String