36 molecular-modeling-or-molecular-dynamic-simulation Fellowship positions at University of Michigan in United States
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, highly motivated individual for postdoctoral fellow position. The successful candidate is expected to thrive in a fast-paced dynamic environment. In this role, the candidate will work as part of a team
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novel inhibitory/degrader drugs in preclinical models. The individual should be familiar with routine molecular biology techniques and have an educational background in biomedical sciences or related
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molecular analyses to animal models to human applications. More information about the Kaczorowski lab can be found at http://kaczorowski.lab.medicine.umich.edu Mission Statement Michigan Medicine improves
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ranges from reprogramming intracellular signaling of cells to modeling whole joint mechanics to understand and modify these systems at their respective length scales. Our research focuses on engineering
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interdisciplinary lab focuses on investigating genetic and epigenetic changes in traumatic brain injury. The successful candidate will work on animal models of brain injuries and apply cutting-edge spatial multi-omic
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& Bioinformatics, is seeking candidates for a postdoctoral research fellow position. This is primarily for an NIH-funded project developing multimodal variational autoencoder models and probabilistic trajectory
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, with specialists working in hydrodynamics; marine and offshore structures; dynamics, control and marine system integration; robotics and autonomy; yacht design; design, production, and management; marine
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approaches, our goal is to elucidate the molecular mechanisms underlying RAN translation and its contribution to neurodegeneration. Mission Statement Michigan Medicine improves the health of patients
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human brain tissue to determine radiotracer binding affinity, selectivity, and tissue distribution. Perform in vivo PET imaging studies in small animal models (e.g., rodents/nonhuman primates) to evaluate
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join our interdisciplinary team focused on genetic cardiomyopathy, particularly hypertrophic and arrhythmogenic cardiomyopathy subtypes. We utilize both iPSC-derived cardiomyocyte and mouse models. We