91 phd-mathematical-modelling-population-modelling Postdoctoral positions at University of Washington
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exclusion criteria apply. For more information, please visit the University of Washington Labor Relations website . Required Qualifications: Completed PhD in biomedical engineering, electrical engineering
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Position Summary The Crewe lab uses a combination of mouse models, biochemistry, physiology, and cellular imaging, to study the regulation of extracellular vesicle (EV) production and how EVs signal
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across model systems and human cohorts. Mentor junior lab members, including graduate students and research staff, and contribute to fostering a supportive and rigorous scientific environment. Present
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population of 80,000 students, faculty and staff, including 25% first-generation college students, over 25% Pell Grant students, and faculty from over 70 countries. The UW is a recipient of a National Science
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, the candidate will have the opportunity to engage in research using advanced immunologic techniques, including mouse and xenograft models, transgene delivery and/or gene editing, immunologic assays, and single
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are expected to have experience with basic molecular/cell biology techniques, as well as with stem cell and/or animal models of disease. Postdocs in the Arnold lab will be encouraged to develop new technical
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diffraction and gas sorption analysis. Contribute to the mentorship of graduate and undergraduate students in the lab, modeling ethical and safe research practices. Publish peer-reviewed journal articles and
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EV in vivo tracking studies, spatial transcriptomics, imaging mass-cytometry, micro-CT imaging and experimental fetal lung models to address key questions in lung development and repair. This position
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other disease models that are valuable in studying the etiology and treatment for these devastating diseases. We combine in vivo, ex vivo, and in vitro methods to study the pathogenic mechanisms in a
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neuropathological severity. The Postdoctoral Research Associate will be mentored by Dr. Carlos Cruchaga and will focus on the identification and modification of circRNAs in in vitro models of Neurodegenerative