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Title of position: Postdoctoral Associate in Cardiovascular AI and Medical Imaging Department and school: Department of Internal Medicine, Section of Cardiovascular Medicine, Yale School of Medicine
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expertise in in vivo two-photon imaging to study how cortical circuits represent and regulate immune responses. Our group focuses on the “neuroscience of immune responses,” applying circuit-level and systems
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Position Description: We are looking for a postdoctoral associate to join the Bini Lab within the Yale PET Center with focus on preclinical and clinical PET/CT and PET/MR imaging in endocrine
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-driven research group working at the intersection of computational genomics, clinical artificial intelligence, and imaging genetics. This position offers an exciting opportunity to develop novel algorithms
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The Department of Ophthalmology & Visual Science at Yale School of Medicine seeks a retinal research associate to join our retinal imaging research program. This position is designed to provide
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offers a vibrant scientific community and outstanding core facilities to support advanced genome engineering, imaging, and high-throughput sequencing. How to Apply Please submit the following materials
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projects focusing on hPSC differentiation, and modeling neurodegenerative diseases. ● Standardize and optimize advanced molecular and imaging assays ● Analyze complex multi-omic or functional datasets
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include: Understand the extent of existing digital images of text, and how the information locked away in them would advance provenance understanding Acquire additional external data, such as the Getty
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, including spatial transcriptomics In vivo imaging of neural circuit deficits in zebrafish Pharmaco-behavioral profiling to identify pharmacological candidates Key responsibilities Analysis of molecular
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Postdoctoral Associate | Mitochondrial Genomics | Lake Lab — Yale University, Department of Genetics
technologies Develop and apply new tools to study mtDNA mutations, copy number, and dynamics Characterize the cellular and mitochondrial consequences of mtDNA mutations using molecular, imaging, and functional