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of the world's largest healthcare manufacturing organisations. We seek highly motivated researchers to form a team to bring a new bioprocess optimisation paradigm of autonomous navigation into being. About the
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, proteomics, conditional knockout/knockin mice, in vivo and in vitro disease models, and 3D cell printing. Our studies utilize advanced, non-invasive clinical imaging and functional tests (e.g., OCT, OCT
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. About the role The Kohl lab uses a multidisciplinary strategy, ranging from in vivo calcium imaging and in vivo / ex vivo electrophysiology to behavioural profiling, viral circuit tracing and molecular
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a multidisciplinary strategy, ranging from in vivo calcium imaging and in vivo / ex vivo electrophysiology to behavioural profiling, viral circuit tracing and molecular approaches to investigate
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and imaging experiments. The group's research is organized around three main themes: the mechanistic modeling of pattern formation and morphogenesis; the synthesis and decomposition of developmental
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combination of animal models, fluorescent imaging, and electrophysiology to explore the cellular and organism-level function of these new receptor proteins. You will have the opportunity to use a unique set of
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, or imaging approaches in animal models and human tissue. The successful applicant will be embedded in the larger Neuroscience community at UTSW and OBI, and will benefit from a network of collaborations with
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image analysis Ability to do original and outstanding research in computational biology, and expertise in computational methods, data analysis, software and algorithm development, modeling machine
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and/or scientific computation, scientific software and algorithm development, data analysis and inference, and image analysis Ability to do original and outstanding research in computational biology
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, analysis and/or scientific computation, scientific software and algorithm development, data analysis and inference, and image analysis Ability to do original and outstanding research in computational biology