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combination of transgenic mice, -omic technologies, and organoid models to develop and refine hypothetical mechanisms through which epithelial progenitor biology is disrupted. The position will explore
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initiatives . In the Pharmacology & Physiology Department, this role will focus on the behavioral and electrophysiological basis of autonomic dysfunction in animal models of opioid induced respiratory
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initiatives . In the Pharmacology & Physiology Department, this role will focus on the behavioral and electrophysiological basis of autonomic dysfunction in animal models of opioid induced respiratory
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Trustworthy AI Systems NSF Research Traineeship , the Digital Trade and Data Governance Hub , the Center for Machine Learning, and the Human-Computer Interaction Lab at UMD, and the Center for Equitable AI and
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Trustworthy AI Systems NSF Research Traineeship , the Digital Trade and Data Governance Hub , the Center for Machine Learning, and the Human-Computer Interaction Lab at UMD, and the Center for Equitable AI and
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proficiency in at least one statistical software (e.g., R, Stata, SAS, Mplus) and desire and ability to learn additional software as needed (note: Dr. Kuiper regularly uses R, Stata, and Mplus simultaneously
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isolates of immune cells and validating the outcomes in using in vitro/in vivo models of disease by performing wet-bench assays. In this context, prior training and experience in handling rodents and
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. This position is supported by a newly NIH funded grant to study DNA repair by using cell and molecular approaches and animal models. The postdoc will design, organize and conduct specialized and advanced
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tumor and patient-derived xenograft models. And the Lee lab uses various cellular and molecular biology techniques. This position will primarily conduct cancer research focused on metabolic alteration in
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tumor and patient-derived xenograft models. And the Lee lab uses various cellular and molecular biology techniques. This position will primarily conduct cancer research focused on metabolic alteration in