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) Deciphering pathogenic coding and non-coding variants linked to congenital heart disease in a cell type-specific manner (Cell 2022), and 4) Combining iPSC-derived cells and single-cell perturb sequencing
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. Participate in grant-funded research and help identify new funding opportunities aligned with lab objectives. Contribute to the development of new collaborations and technology integration for the Spatial
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, multi-color flow cytometry, mouse disease models, human patient samples, 3D bone marrow organoid models, single-cell RNA-Sequencing, and general molecular and cellular biology techniques. Working
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mechanisms and disease outcomes. This work involves a multidisciplinary approach, including next-generation sequencing, bacterial genetics, host genetics and metabolomics. Job Description Primary Duties
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) Deciphering pathogenic coding and non-coding variants linked to congenital heart disease in a cell type-specific manner (Cell 2022), and 4) Combining iPSC-derived cells and single-cell perturb sequencing
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Libraries, Museums, and Archives (CALMA) at the UW Information School. We seek applicants who bring a research agenda aligned with DSISS and are interested in pursuing their own line of research in tandem
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of neuronal loss to better understand why neurons die or axons are damaged to ultimately establish new strategies for the preservation or restoration of neural tissue. We use multiple approaches, but focus
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Position Summary The Cruchaga lab at WashU Medicine is recruiting multiple Postdoctoral Research Associates. The Cruchaga lab generates and analyzes high-throughput multi-omic data to study
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the following objectives: 1. Characterize 3-D Urban Structure and Change: Utilize data from multiple remote-sensing platforms and deep learning algorithms to generate high-resolution maps of 3-D urban structure
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-driven or discovery research goals on multiple biomedical service projects. Will participate in the design and execution of research plans under the direction of the center leadership and will analyze data