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-tracing mouse models, lung injury and tumor-initiation systems, single-nucleus multiome (RNA and ATAC) and spatial profiling, and validation in human early-stage lung adenocarcinoma specimens. The position
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application of unique mouse models for in vivo pathway discovery and validation. Experience or interest in flow cytometric analyses, and basic immunological techniques will be essential and interest in
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and cellular mechanisms underlying these disorders using cell-based assays, blood vessel organoids, and zebrafish and mouse models, working alongside neurosurgeons, computational scientists, and
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approaches to immune-related states and behaviors. The lab uses mouse models, in vivo two-photon structural and functional imaging with calcium indicators, chemogenetics, viral and transgenic tools, behavior
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journals; (c) experience or interests in programming languages such as R or python; (d) willingness to work with HIV+ samples following BSL2+ procedures; (e) willingness to work with mouse models; (f
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. Building on this platform, we combine cell biology, biochemistry, CRISPR-based approaches, organelle isolation, metabolomics and proteomics, mouse genetics, and disease models to discover principles of ER
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execute wet-lab experiments, including some combination of qPCR / RT-qPCR, Western blotting, Flow cytometry, single-cell and bulk transcriptomics, and mouse work (including immune and infection models
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associative learning. Using mouse models, fiber photometry, circuit-specific viral approaches, in vivo recordings, and a variety of behavioral assays, we investigate how infant brains encode maternal and social