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, with additional mentorship from Professor Bobby Bartlett. The program is structured to support the development of a strong research pipeline, including the opportunity to coauthor work with Professors
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engineering, and advanced analytics to develop novel approaches that improve patient outcomes and expand access to life-saving surgical interventions. The fellowship includes opportunities for mentorship
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in human biology and evolution, our work seeks to uncover the molecular logic underlying human-specific neuronal differentiation and synaptic connectivity and to translate these insights
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-country partners, conducting rigorous data analysis, and contributing to the development of actionable insights for policy and program improvement. The start date is Fall 2025. This is a full-time (100% FTE
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state-of-the art micro-fluidic platforms developed at Stanford by the Fordyce lab. Individuals should have experience with molecular cloning, next generation sequencing, experience with enzyme kinetic
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disciplines, including translational projects involving human cohorts • Prepare manuscripts for publication in high impact journals • Present findings at internal seminars and national and international
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receive individualized mentorship, opportunities for cross-disciplinary collaboration, and support for career development and grant writing. Successful candidates will join a vibrant, multidisciplinary
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. Role & Responsibilities: Design and optimize large-scale electrophysiological and behavioral experiments using next generation custom-built hardware and software platforms Develop and implement end
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Simpson in the School of Engineering and School of Sustainability, Department of Civil and Environmental Engineering at Stanford University. The work will play an important role in the development of a
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mice or humans, and to develop therapies. Prior research experience in stroke or a field related to our research, with prior publications that demonstrate high quality research. Outstanding references