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the genetic basis of complex diseases. Our research sits at the intersection of population genetics, statistical genetics, and evolutionary disease genetics, with a particular emphasis on leveraging
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of the lab is to characterize the role of nuclear pore complex machinery in mediating HIV-1 nuclear entry and subsequent downstream process that leads to productive viral gene integration. The goal
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School of Medicine is seeking highly motivated postdoctoral fellows to join our growing research team. About the Lab Our mission is to uncover the genetic and molecular basis of complex diseases and
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disease is the most common and most often fatal birth defect, yet its etiology is largely unknown; genetic causes show complex inheritance and incomplete penetrance thought to reflect environmental
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characterize the role of nuclear pore complex machinery in mediating HIV-1 nuclear entry and subsequent downstream process that leads to productive viral gene integration. The goal of this position is to work
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chronic illness. CEQL fosters interdisciplinary collaboration, mentorship, and innovation to address complex health challenges through rigorous scientific inquiry, implementation science, and community
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and analyzing complex datasets. Department Contact for Questions Questions regarding the position or application process can be directed to: Prof. Samantha Harvey, Department of Chemistry, Indiana
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motivated 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
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for gene regulatory networks, single-cell multi-omics integration, spatial omics, and variant effect mapping in complex disease. Strong method/tool dev experience required (Python/R, ML/stats
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bioinformatics and biomarker research. This position focuses on the integration and analysis of complex biological data to identify and validate kidney disease biomarkers. Research Focus Our program leverages