37 computer-science-image-processing-"https:" Postdoctoral positions at St Jude Children's Research Hospital
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Computational Postdoctoral Researcher - Bacterial Genomics, Transcriptomics, and Single-Cell Genomic
, transcriptomics, and single-cell biology. Qualifications Required • Ph.D. in Bioinformatics, Computational Biology, Computer Science, Mathematics, Statistics, or a related quantitative discipline. • Candidates
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. Jordan Meier in the Department of Chemical Biology and Therapeutics which aims to identify regulators of RNA modification-dependent pathways using genetic and small molecule screening approaches. Work will
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National Cancer Institute (NCI)-designated Comprehensive Cancer Center devoted solely to children. Our 300 faculty work across the spectrum of basic, translational, clinical, and population science in a
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Nature 2024 doi: 10.1038/s41586-024-08211-4 https://www.science.org/content/blog-post/real-high-throughput-chemistry-through-mass-spec Minimum Experience PhD in Organic Chemistry St. Jude is an Equal
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. To find out more about our benefits for postdocs, check out this link. The Department of Imaging Sciences is interested in broad areas of imaging, including multi-omics technologies, structural and
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/computational studies, with recent first authorships by Geeleher Lab members, including: https://www.nature.com/articles/s41467-021-26640-x https://www.nature.com/articles/s41467-023-43134-0 https
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profiling, molecular biology, cancer genomics, and in vivo preclinical modeling. Examples of representative recent papers led by wet-lab scientists in our lab (as first author) include: https://www.nature.com
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. Experience in one or more of the following areas is desirable: primary cilia biology, mitochondrial homeostasis, mouse genetics, imaging, biochemistry, genomics, stem/progenitor cell biology, or disease models
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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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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