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Yale Analog and RF Circuits and Systems (ARCS) Research Group, Department of Electrical and Computer Engineering, Yale University The Analog and RF Circuits and Systems Research Group in
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stress affects specific cell types in the nervous system and the gut, using human pluripotent stem cell (hPSC)-derived models of the enteric nervous system. Our work sits at the intersection of stem cell
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outstanding applicants for multiple postdoctoral openings in quantum information science and engineering. The start date is flexible. The group has broad research interests and successful candidates will have
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-based perturbations, base/prime editing, and targeted epigenetic modulation). Functional genomics in neuronal systems, including transcriptomic and epigenomic profiling. Model systems such as human iPSC
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, and therapeutic engineering. Projects may involve immunotherapy models, CRISPR-based perturbation and screening, mRNA therapeutics and vaccines, protein engineering, systems immunology, and tumor
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Research focus Brain-body neuroscience is a rapidly growing field, and this position offers the chance to help define a new frontier in brain-body neuroimmunology, using systems neuroscience tools
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and kinetic modeling. A PhD in biomedical engineering, physics, or a related field is required. However, interested candidates with a strong computational background and interest in getting involved in
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A postdoctoral associate position is available in the laboratory of Dr. Mark Lee (https://medicine.yale.edu/profile/mark_n_lee/?tab=research ) at the Yale School of Medicine in New Haven
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The discovery of existing datasets relevant to a scholar’s research is a daunting task, made more complicated by a lack of standards in descriptive practices, the size of datasets, and the scale and
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debates, nationally and internationally, on digital ethics broadly understood. Proven research experience in digital ethics, technology policy, or the societal implications of digital technologies. A strong