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                multidisciplinary approach that integrates biochemistry, single-cell genomics, cell biology, and neuronal circuit function. Specifically, we are seeking assistance for projects using mouse models to explore the role 
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                Scheduled Hours 40 Position Summary Dr. Wang’s lab uses in vivo mouse and in vitro cell models to investigate signaling networks underlying ocular tissue development and the mechanisms of ocular 
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                primate, rodent medicine, surgery, model development, and laboratory diagnostics. For this position, we are seeking an applicant with an interest in laboratory animal medicine in a large, private, research 
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                , advanced imaging) to uncover the cellular and molecular programs that drive tissue regeneration. The fellow will have the opportunity to work with small animal models and clinical specimens, translating 
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                comfortable with handling experimental and transgenic mouse models. The Lim Lab fosters a culture of respect, honesty, and hard work and is committed to translating preclinical findings into clinical trials 
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                modeling to discover patterns and assess and investigate potentials issues with large data sets. Compile and develop quarterly reports, dashboards, and ad hoc analyses. Meet with campus colleagues to learn 
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                studies using mouse models to assess the effect of immunomodulatory agents on CAR T cell expansion, toxicity and anti-tumor activity and their mechanism of action. Prior research experience is welcome but 
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                models and in vitro cell culture and organoid systems. Our aim is to determine the consequences of centrosome-cilia defects in the development of human ciliopathy syndromes, with specific focus on renal 
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                will investigate how neutrophils and platelets drive thromboinflammation, using confocal intravital microscopy, Luminex multiplex assays, gene knockdown and editing systems, animal disease models, and 
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                Scheduled Hours 40 Position Summary The Szeto Lab will primarily use in vivo mouse models, in vitro primary cell culture and flow cytometry to uncover new pathways regulating type-2 immune cell