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seeking a post-doctoral fellow for a two-to-three-year position studying causal inference, available to start immediately. The focus of this position will be the development and implementation of novel
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on this position will be the development and implementation of novel statistical and computational methods with applications to system biology problems and spatial transcriptomics datasets. The work will involve
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microRNA signaling in fetal growth restriction, and (2) pioneering in utero gene editing approaches to correct genetic disease before birth. Current projects include the development of CRISPR-Cas9–based base
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conduct research focused on biochemical, cellular, and molecular mechanisms underlying human placental angiogenesis and development, with a primary focus on severe, early-onset fetal growth restriction
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an operational level · Independent judgement and self-directed work capabilities · Dedication to professional development and life-long learning · Ability to prioritize and handle multiple and
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microRNA signaling in fetal growth restriction, and (2) pioneering in utero gene editing approaches to correct genetic disease before birth. Current projects include the development of CRISPR-Cas9–based base
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Campus. The appointment will be for a two to three-year period. The Shellman Lab values innovation, collaboration, and mentorship, and is committed to supporting the professional development of its
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arthritis (RA). The projects will build upon recent publications demonstrating how a unique bacterium targeted by autoantibodies from individuals with RA can stimulate the development of autoimmunity and
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animals and extensive development and use of cutting-edge flow cytometry, molecular biology and cell biology assays on rare bone marrow-derived hematopoietic populations. Specific duties include: Design
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planned to last 2 years, with the option to extend. In the Burger lab, we are interested in early vertebrate development of the axial and lateral plate mesoderm using zebrafish and mice as models, as