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. Multidisciplinary approaches including clinical neuroimaging and basic biomedical bench techniques will be used in human subjects and animal models, respectively. Qualification: The applicant will be working in a
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(ES) cells, patient-derived induced pluripotent stem (iPS) cells, mouse genetic models, and animal models of cardiomyopathy, heart failure and vascular disease. During past years, the lab has published
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translational focus, there will be opportunities to direct their research to direct patient applications and treatments. Candidates should have experience in in-vitro and mouse models (xenograft, GEMM, etc
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seizure models and cell cultures, primarily utilizing molecular and cell biology techniques. The Obeid lab investigates the mechanisms of seizure emergence and their effects on cognitive and behavioral
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Qualifications Experience with machine learning and AI models. Ability to communicate clearly with colleagues, Data presentations Scientific publication experience Special Instructions Priority Application Review
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genetic models, and animal models of cardiomyopathy, heart failure and vascular disease. During past years, the lab has published in Nature Cell Biology, Developmental Cell, Development, Genome Biology
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immunological concepts, and have a demonstrated record of publications. Experience with mouse models and proficiency in flow cytometry are preferred but not required. Successful candidates will work closely with
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to: Western blotting, PCR, qPCR, ELISA, immunoprecipitation, cell culture, and in vivo animal models. Design, execute, and analyze biochemical assays to investigate signaling pathways and gene expression
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postdoctoral associate to work on HIV-1 related projects with minimal supervision. The primary goal of the lab is to characterize the role of nuclear pore complex machinery in mediating HIV-1 nuclear entry and
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Lab at Indiana University School of Optometry is looking to fill a Postdoctoral Fellow position. The Lim Lab uses in vivo and ex vivo multiphoton imaging of mouse models to investigate dynamic gene