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mechanisms of hereditary neuromuscular disease. Our primary focus is on diseases caused by mutations in the ion channel TRPV4, which result in Charcot-Marie-Tooth disease type 2C and related forms of spinal
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at Ford Motor Company Research and Advanced Engineering - and the post-doctoral fellow will work directly with a Ford research team developing advanced low cycle fatigue and thermo-mechanical fatigue life
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applications that follow the submission guidelines will be considered. Job Summary The University of Michigan Department of Mechanical Engineering's EMBERlab is seeking a highly motivated and talented individual
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expertise relates to this posting. Applications will be reviewed on a rolling basis until the position is filled. Job Summary The Department of Mechanical Engineering at the University of Michigan, in
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mechanical analysis; preparing S/TEM specimens for microstructural analysis. Performing microstructural analysis via optical and scanning electron microscopy techniques, including electron backscatter
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in our laboratory is focused on understanding the molecular mechanisms underlying aortic aneurysm and valve disease. Utilizing a variety of approaches including stem cell differentiation, gene editing
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pathogenesis. Successful candidates will utilize a combination of mouse genetics, biochemistry, and molecular and chemical biology techniques to gain insight into pathophysiological signaling mechanisms
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faculty position. Required Qualifications* PhD Degree in Engineering, Biology, Physiology, or a related field. Publication record reflective of either disease mechanism-focused studies or regenerative
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cancer. Our laboratory focuses on identifying mechanisms by which key chromatin modifying enzymes and chromatin readers drive transcription of pathways that promote treatment resistance. We use genomic
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mechanisms behind the formation of regulatory loops; developing new 3D genome mapping technologies. Required Qualifications* Ph.D. in Molecular Biology, Human Genetics, Biochemistry, Biological Sciences