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testing. We work with myoblast cell culture in 2D and myobundle culture in 3D. Biochemical (qPCR, western blot) and histological techniques are also employed. As a clinician scientist, Dr. Covert’s goal is
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infection influences B cell differentiation in situ as part of a recently awarded U54 grant focused on EBV infection in tonsillar tissue explant. For more information about the Luftig lab visit https
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data sets using cell ranger pipeline and additional analysis tools is desired. Must have writing experience; manuscript, grant and/or abstracts for scientific meetings Preferred Qualifications: Must be
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mobile health technology-based strategies. Minimum Requirements: The candidate must have a doctoral degree (PhD) in clinical psychology with prior research and clinical experience in psycho-oncology
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MD or PhD or equivalent degree and has interests in immunotherapy and/or hematopoietic stem cell transplantation using mouse animal models. The research involves understanding the mechanisms underlying
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of these pathways. Your studies will utilize a variety of research methodologies such as human iPS cell culture and differentiation, generation of in vitro disease models, gene and protein expression analyses and
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Responsibilities will include developing next-generation genome engineering technologies for gene and cell therapy applications as well as functional genomics. In particular, you will focus on delivery methods
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circuits that regulate motivational and emotional states. The lab uses many state-of-the-art techniques, including deep-brain calcium imaging (2-photon in vivo microscopy) with single-cell resolution and
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-throughput genomic screening approaches, primary cell culture systems, and animal models of influenza disease. For more information visit https://mgm.duke.edu/faculty-and-research/primary-faculty/nicholas