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durably improving health. Applicants must have a PhD or a foreign equivalent doctorate degree in Mechanical, Biomedical Engineering, Biology, or a related discipline. Applications should include: 1) cover
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cytoskeleton and membrane trafficking. • Utilize quantitative, biophysical, and computational approaches to cell biology, including fluorescence imaging, image analysis, and biophysical modeling. • Experiment
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, and with grant submissions. Applicants with appropriate interests who are eligible are strongly encouraged to get in touch with Dr. Eisenberg about also applying for the Biological Mechanisms of Healthy
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for these polymers and implement computational algorithms to assist their optimization. The RISE Polymer Lab is dedicated to developing the next generation of robust, intelligent, sustainable, and evolving (RISE
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an independent and collaborative research program focused on mechanisms of aging and/or developing interventions to improve health and quality of life in the aging population. They will also contribute in
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be expected to develop an independent and collaborative research program focused on mechanisms of aging and/or developing interventions to improve health and quality of life in the aging population
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neuroscience techniques. The Pollina Lab is broadly interested in identifying the molecular mechanisms that preserve longevity across the diverse cell types of the nervous system. We study mechanisms
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, establish advanced manufacturing routes for these polymers and implement computational algorithms to assist their optimization. The RISE Polymer Lab is dedicated to developing the next generation of robust
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physics, bioengineering, electrical or mechanical engineering, computer science, or a related field with experience building imaging instrumentation and interest in biological applications. Hands-on work
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lab is dedicated to understanding the mechanical operating principles of the actin cytoskeleton in cellular membrane bending and trafficking. We utilize a blend of biophysical modeling, genome-editing