25 agent-based-modelling Postdoctoral positions at University of Nebraska Medical Center
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familiar with mammalian cell culture, gene cloning, transfections, cell culture-based assays and animal handling. Experience in handling brain tumor mouse models with intracranial injections is highly
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adenocarcinoma (PDA) pathogenesis. The murine models of distinct genetic subtypes of pancreas cancer that we have developed form the basis of our integrated, systematic, and multidisciplinary research program. Our
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Position Summary Working on projects on cellular and animal models for drug resistance in PDAC and ovarian cancer Required Qualifications Ph.D. or equivalent degree in cell biology, cancer biology or similar
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vitro and in vivo models of congenital heart defects. This individual will complete projects that require expertise in iPSC biology and derivation of terminal cell types, methods of molecular biology
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of working with, and breeding rodent models. Excellent communication skills. An interest in placental and/or fetal brain development and experience of genomics or transcriptomics and bioinformatics would be
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, statistics, computer science, biomechanics, and public policy. We focus on developing evidence-based models of how disease impacts human behavior (driving, sleep, mobility) and of how physiology predicts
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neuroscience, with demonstrated success as a recent Ph.D. graduate with a track record in (1) statistical modeling, (2) tobacco regulatory science, or (3) neurocognition and brain development. The successful
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. This individual will conduct bench and translational cardiovascular research that will utilize in vitro and in vivo models of congenital heart defects. This individual will complete projects that require expertise
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-based regenerative medicine. Recruited candidates will benefit from a competitive salary and benefits package, along with comprehensive training in grant writing, application processes, and career
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and working experience in BSL2, BSL3 and ABSL2 and ABSL3 labs preferred. Research interests include animal models as synergetic platform for preclinical development of therapeutics and molecular biology