43 scholarship-phd-agent-based-modelling Fellowship positions at University of Michigan
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guidelines. Required Qualifications* PhD in biological sciences or related field with at least 2-3 years of laboratory research experience. The ability to work productively in a team environment and work with
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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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research that together enhance our contribution to society. Required Qualifications* PhD in computer science, engineering, applied mathematics, statistical physics, biology, or a related field. Reasonable
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to society. Required Qualifications* PhD in applied mathematics including mathematical biology, computer science, engineering, statistical physics, biology, or a related field. Reasonable communication skills
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the crosstalk between microbiota and their hosts at the mucosal interface. The Li research group has been focusing on the development of molecular and live cell-based therapeutics, with a major emphasis on
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Qualifications* PhD in biochemistry or related field with at least 2-3 years of relevant laboratory research experience. The ability to work productively in a team environment and work with limited supervision
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Drosophila melanogaster and mammalian cells as our model systems. Our lab has pioneered innovative cell biological approaches, enabling unprecedented visualization of individual clock mRNAs, genes, and
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information from electronic health records Conduct systems biology research and analysis for high dimensional data Required Qualifications* PhD degree or higher in computer science, biomedical informatics
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behaving mice, and advanced modeling + machine learning analyses. Please read more about our research at www.apostolideslab.org . Key questions we want to answer are: How do neural circuits extract
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cell lines, and keep good record for cell line bank Develop and maintain primary tumor and/or immune cell culture or organoids from patients and mouse models Technique: Cell culture including 2D and 3D