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proteostasis, cytoskeletal dynamics, and ferroptotic cell death. This collaborative work combines biochemistry, chemical biology, cell signaling, live-cell imaging, and organotypic brain slice models to dissect
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technologies to study the behavior of tissues at single cell resolution. We offer an inspiring intellectual, collaborative, and multidisciplinary research environment to support your career goals and provide
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, and other relevant cell types. Conduct stereotaxic surgical procedures and targeted injections in mouse models. Support viral vector delivery and molecular, biochemical, histological, and cellular
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sets using cell ranger pipeline and additional analysis tools is desired. Must have writing experience; manuscript, grant and/or abstracts for scientific meetings Must be able to manage multiple and
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-edge technologies, including genetically engineered mouse models, patient-derived models, single-cell and spatial genomics, organoid systems, and preclinical therapeutic studies. Learn more about our
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connectivity supporting long-term memory formation. Perform in vivo patch-clamp recordings with cell-type specific access to characterize the cellular and circuit mechanisms of learning and memory. Develop and
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including: CRISPR-based genetic screening High-throughput microscopy Confocal microscopy Flow cytometry and cell sorting Functional genomic profiling Contribute to in vivo studies using mouse models and
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the mechanisms of, and interventions for, immuno-senescence and aging in lung transplantation using high-throughput multi-‘omic approaches, primary cell culture systems, and animal models of transplantation. Ph.D
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stimulating environment with projects in basic and translational research as well as clinical trial studies. Research: Dissect the key signaling events that regulate tumor cell peripheral nerve invasion (PNI
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seek a highly motivated individual with a background in neuroscience who can leverage techniques including advanced genomics, microphysiological cell culture system, and animal models. The team is highly