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development in Neurodevelopmental disorders associated with altered chromatin regulation. The candidate will participate in multiple NIH-funded projects that explore disease mechanisms in rodent and human
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research in our laboratory is focused on understanding the molecular mechanisms underlying aortic aneurysm and valve disease. Utilizing a variety of approaches including stem cell biology, gene editing
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large physical modeling basin which serves as a vital resource. Required Qualifications* A doctoral degree in Mechanical, Aerospace, Naval Architecture & Marine Engineering, Scientific Computation
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immediately. Responsibilities* Design and develop microphysiological systems (MPS) for tendon research Perform cell culture and molecular biology experiments Conduct mechanical testing and characterization
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, uncovering novel cellular mechanisms. We employ state-of-the-art techniques in fly neurogenetics, proteomics, molecular biology, RNA biology, multi-omics, and quantitative imaging to investigate circadian
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% - Ultrasound Data Collection and Data Analysis 30%-Conference Abstract and Manuscript Preparation Required Qualifications* PhD in Mechanical Engineering, Electrical Engineering, Computer Science, or related
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postdoctors to work on ongoing bioinorganic chemistry and biochemistry projects on the enzymatic and bioinorganic mechanism of microbial carbon dioxide fixation, heme metabolism, or on methane making/breaking
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how exercise protects the heart against heart failure. A growing interest surrounds common mechanisms affecting both the heart and the brain, and how the organs signal to each other in health and
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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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contributions to musculoskeletal mechanobiology and regeneration program, specifically focused on using in vivo optogenetic and transgenic tools to understand developmental processes, mechanical adaptation