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proteostasis, cytoskeletal dynamics, and ferroptotic cell death. This collaborative work combines biochemistry, chemical biology, cell signaling, live-cell imaging, and organotypic brain slice models to dissect
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applications for a full-time Postdoctoral Associate to help build the HARP research infrastructure and conduct the initial studies leveraging the infrastructure. The postdoc will design and lead core projects
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5 of the Postdoc Policy for the length of the appointment). The appointment involves substantially full-time research or scholarship and may include teaching responsibilities. The Postdoctoral
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imaging technologies, behavioral neuroscience approaches, molecular techniques, and data analytics to answer important scientific questions and advance translational discoveries. What You'll Do: Lead
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work at the intersection of systems neuroscience, neurophysiology, imaging, and computational analysis to uncover how motor cortical circuits support learning and memory. Be You. You will contribute
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Model and Data Sharing portal. Work collaboratively with graduate students, postdocs, software engineers, faculty, and senior researchers from Duke University and UNC Chapel Hill. Participate in research
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on the current year Duke and NIH Postdoc guidelines. Duke University considers factors such as (but not limited to) scope and responsibilities of the position; candidate 's work experience, education/training, and
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, pluripotent stem cells, organoids, fixed and live imaging, and functional genomics. They will gain conceptual and technical training in cortical development and in professional skills such as grant writing and
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the cellular crosstalk and basic molecular mechanisms during lung repair and disease. We utilize in vivo mouse genetics, live -imaging, 3D organoids, functional screening, and next generation sequencing
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disorders, with a particular emphasis on glycogen storage diseases (GSDs), including GSD type II (Pompe disease). The postdoc will contribute to advancing understanding of the natural history of GSDs and