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an emphasis on understanding maintenance T cell quiescence. See https://medicine.iu.edu/faculty/51983/richer-martin and https://www.mjricherlab.com/ for more information. Applicants should have recently
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evaluating applications as they are received and applications will continue to be reviewed until positions are filled. About the School and Department: The Indiana University School of Medicine https
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phenotypes, with expert advice from a behavioral neuroscientist. Investigate structure-function relationships using disease-causing missense mutants and a variety of cell-based and biochemical functional
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. Utilizing Drosophila, mouse, and human brain organoids as model systems, our research focuses on elucidating to neural stem cell proliferation, differentiation, and regeneration, as well as their implications
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, cellular, and structural approaches. Applicants should hold a PhD or equivalent degree in Biochemistry, Molcular Biology, Cell Biology, or related fields. Applicants should be self-driven, highly motivated
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at the molecular and tissue level, and how its disruption contributes to hereditary cancers and pediatric malignancies (https://bcchr.ca/maxwell-lab ). Key areas include: Mechanisms of cell division fidelity
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Research Institute and UBC, investigates how cell division is regulated at the molecular and tissue level, and how its disruption contributes to hereditary cancers and pediatric malignancies (https
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regulated at the molecular and tissue level, and how its disruption contributes to hereditary cancers and pediatric malignancies (https://bcchr.ca/maxwell-lab ). Key areas include: Mechanisms of cell
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of Michigan in the Department of Cell & Developmental Biology (CDB). We use a combination of developmental biology models including Xenopus (frog), mouse, and pluripotent stem cells, gene editing, and
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fellow to join the 3D Stem Cell Biology Research Lab (https://www.hashinolab.com ) and study normal and pathological development of the human inner ear using stem cell-derived organoids as a model system