21 engineering-in-image-processing Postdoctoral positions at St Jude Children's Research Hospital
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The Yang Lab in Department of Surgery at St. Jude Children's Research Hospital is seeking a highly motivated Postdoctoral Fellow to join our translational research team. The research focuses
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of their approaches, while also driving their widespread adoption. To facilitate technology transfer, the Department of Imaging Sciences is establishing shared resources including an Advanced Instrumentation and
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for image processing A first-author publication record, good English, and a collaborative attitude Preferred: Cryo-FIB milling and lamella preparation Subtomogram averaging and tomogram processing Virology
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dynamics with in vivo downstream signaling response. • Engineer and isolate high-quality, homogeneous samples of GPCRs and signaling partners for ensemble and single-molecule analytical assays. • Expand your
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microscopy imaging of neuronal activity in mutant mice, with a focus on models of high-risk genetic risks for schizophrenia. St. Jude Children's Research Hospital is a world-class research institution
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discipline The ability to independently design and execute experiments and interpret data Expertise in at least one of the following areas: Super-resolution imaging, including Stimulated Emission Depletion
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, brain organoids, genome editing, high-resolution imaging, single-cell sequencing, spatial transcriptomics, epigenomics, and proteomics, as well as a unique mouse model in which neural progenitors acquire
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are often tied to their subcellular localization and the biological processes they are involved in. We have extensively characterized how the molecular grammar of prion-like low-complexity domains encode
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have: A Ph.D. in molecular biology, biochemistry/chemistry, structural biology or related discipline Previous experience in gene editing, transfection/reverse transcription, cloning, microscopy imaging
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lab studies how normal development processes are perturbed to drive pediatric embryonal tumors using rhabdomyosarcoma as a model system. Our findings defined the cell of origin of rhabdomyosarcoma, a