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embryology, cardiac phenotyping, and transcriptomic and proteomic profiling. We seek a PhD or MD/PhD with a first-author publication record, mouse experience, and strong molecular biology skills; background in
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of muscle hypertrophic growth; 2) identifying the glucose transporter(s) activated by resistance training in muscle; and 3) examining the connections between glucometabolic flux and the muscle transcriptome
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of muscle hypertrophic growth; 2) identifying the glucose transporter(s) activated by resistance training in muscle; and 3) examining the connections between glucometabolic flux and the muscle transcriptome
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genomic, transcriptomic, imaging, and functional approaches. Our work aims to leverage the phenotypic plasticity of microglia to identify and modulate microglial functions that can lead to beneficial
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multi-omics platforms (including proteomics, metabolomics, transcriptomics), targeted biomarker arrays, and advanced computational approaches to: Characterize biomarker profiles across kidney tissue
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, and multiplex assays for protein and metabolite profiling. c. Having in-depth knowledge on genomic and transcriptomic techniques such as qPCR, RNA-Seq, and microarray for studying gene expression
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-cell analytics, and spatial transcriptomics. • Faculty also have access to a wide variety of research development resources . IU School of Medicine is committed to being a welcoming campus community and