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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 7 days ago
) is seeking fellows for a postdoctoral research training program in neurodevelopmental disorders. Funded by the National Institute of Child Health and Human Development (NICHD), this program emphasizes
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/ multi-omic data from human subjects and experimental models, that includes cell culture, mice, and fruit flies. The lab is pursing studies to identify novel genetic drivers and disease biomarkers. A major
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, faculty members, researchers, and students are revolutionizing focus areas in advanced manufacturing, bioengineering, computational engineering, energy and the environment, product design, and robotics. In
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understanding of neuronal cell types and circuits in health and pathophysiology. You will be responsible for key aspects of the project, including data collection, analysis, interpretation, and presentation
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to join our research program focused on Epstein-Barr virus (EBV) oncology. The ideal candidate will investigate the complex landscape of virus-host interactions, specifically utilizing mass spectrometry
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involve live pathogen challenge studies. The postdoctoral associate will serve as the primary researcher responsible for planning, executing, and troubleshooting experiments related to epithelial cell
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genomics approaches. Familiarity with computational analysis (e.g., Python, R, Bash) and/or genome-scale data integration. Experience with cell culture and functional genomics (e.g., CRISPR/Cas9), cancer
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computing. Preferred Qualifications Prior experience in bioinformatics or computational biology Experience with one or more of the following: Single-cell or spatial omics analysis DNA Methylation analysis
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using in vivo Perturb-seq. This project is related to a new NIH-funded Program Project Grant aimed at identifying differences and similarities in gene function across vascular cell types and diseases, as
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the normal processes of stem cell self-renewal and differentiation are regulated and how these processes are aberrantly regulated in hematological malignancies. The laboratory currently focuses on studying