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molecular approaches, genetically modified animal models, advanced confocal imaging, flow cytometry, innovative culture models such as organoids, and working with clinical samples. The main responsibility
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development and policy translation. The underlying methodology is grounded in LHS principles and diagnosis-specific rehabilitation continuum (DRC)1 models and frameworks such as the Multilevel Limb Loss and
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how policymakers use research evidence. This includes evaluating dissemination and impact or research translation models, such as the Research-to-Policy Collaboration model. The Scholar would be
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independent work may use, extend, or contribute to NCEMS Working Group data products, analytical tools, computational models, and methodological innovations. The scholar will also collaborate with NCEMS Working
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mechanisms of cardiac arrhythmias. Our research integrates genetically engineered mouse models, cardiac electrophysiology, ion channel biology, and translational cardiovascular research to investigate how
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has the potential to include (1) contributing to an NSF-funded research aimed at understanding disease dynamics in wildlife trade using amphibians as a model system, (2) leading research to investigate
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computational approaches to problems in molecular and cellular biology. Research may involve large-scale public datasets, biological data harmonization, representation learning, predictive modeling, foundation
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University (ncems.psu.edu ) seeks an outstanding scientist to fill a Postdoctoral Scholar position in Physics, Statistical Mechanics, and Quantitative Modeling housed within the Huck Institutes of Life
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analyses, including, but not limited to, structural equation modeling, multilevel modeling, longitudinal analysis, and other advanced statistical approaches relevant to population health and health
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for predictive modeling, high-dimensional optimization, uncertainty quantification, forward and inverse design, including the development of Digital Twin components, under the supervision of Prof. Douglas H