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to establish foundational models to predict the effects of potential drug candidates on cardiovascular diseases. By combining genome engineering, functional genomics, and tissue models, we aim to advance
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to study alveolar barrier function, tissue inflammation and matrix remodeling events. This post will provide the opportunity to acquire cutting-edge immunology, genomics, and single cell RNA-seq techniques
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Position Summary The Mavers Lab is seeking a Postdoctoral Research Associate to investigate the role of human and murine invariant natural killer T cells in GVHD/GVT, which have particular promise
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Position Summary Research is aimed at understanding the pathogenesis of blood cancers, with a focus on myeloproliferative neoplasms. Experimental approaches involve mouse modeling, in vitro work in
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researcher to work on Cellular Regulation and Mechanisms of Protein Arginylation Modification. Our research is aiming to elucidate the biological functions of arginylation, discover the protein substrates
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offers the opportunity to work on translational models, cutting-edge omics technologies, and contribute to high-impact publications in a collaborative research environment. Job Description Primary Duties
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investigating the pathophysiological underpinnings of Chiari malformation. The successful candidate will work with Dr. Jennifer Strahle (Professor of Neurosurgery) and Dr. Arash Nazeri (Assistant Professor
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hematopoietic stem and multipotent progenitor populations to modulate lineage output for therapeutic purpose in diseases and aging context. This project will involve primary mouse and human stem cell sorting
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processing of social information in patients with psychiatric conditions remain largely unclear. We use a suite of cutting-edge techniques, including in vivo multi-photon imaging, fiber photometry, and custom
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system. This role would advance three, ongoing NIH/NIA R01 funded grants that investigate the long-term impact of AD brain pathology on driving behavior and driving cessation among persons with and without