56 post-doc-image-processing Postdoctoral positions at Duke University in postdoctoral
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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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cryo-EM workflow, including sample preparation/freezing, data collection, processing, and atomic model building. Biochemical/Biophysical Characterization: Managing protein engineering (cloning
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procedures and results. Specifically, the Post Doc will be focused on studies of signaling by G protein-coupled receptors, and will be performing a number of luminescence- and bioluminescence resonance energy
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mentor in preparation for a full-time academic or research career. Work Performed DEFINITION: The Postdoctoral Appointee holds a Ph.D. or equivalent doctorate (e.g. ScD, MD, DVM). Candidates with non-US
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sequencing, and spatial transcriptomics. Be Bold. Qualifications: A PhD, MD, or MD/PhD in a biomedical sciences-related field is required, along with a peer-reviewed publication record. Experience in RNA
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biology, biochemistry, cancer genomics, histopathology, bioinformatics, imaging, and cell biology. Specific research projects will be developed jointly with the Principal Investigator based
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Appointee holds a PhD or equivalent doctorate (e.g. ScD, MD, DVM). Candidates with non-US degrees may be required to provide proof of degree equivalency. 1. A candidate may also be appointed to a postdoctoral
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neurobiology, RNA biology, and evolution. We are especially interested in understanding: How does post-transcriptional control shape neural cell fate and disease? We have discovered canonical and non-canonical
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integrity, values of ownership of a research project, and follow timelines to achieve deliverables Requirements: · PhD (with clinical research experience), MD, MBBS, DSc, or other doctorate in a relevant
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Muscular Dystrophy. • Design, execute, and document molecular, cellular, biochemical, and immunological experiments. • Conduct whole-body plethysmography, neurophysiology, and post-mortem molecular analyses