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spatial transcriptomics. Provide technical and scientific guidance to graduate students and undergraduate researchers in the B-cell team, for both experimental and the computational work. Assist with
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of novel probabilistic deep-learning models that automatically extract mechanistic and statistical knowledge from your in vivo perturbational omics data. This interdisciplinary atmosphere has been a main
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of novel probabilistic deep-learning models that automatically extract mechanistic and statistical knowledge from your in vivo perturbational omics data. This interdisciplinary atmosphere has been a main
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Techniques such as: AAV gene therapy and assessment of various therapeutics on neuromuscular phenotypes; utilizing state-of-the-art methods like single-cell/spatial transcriptomics, proteomics; or advanced
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methods for single-cell data analysis (tools developed by the team : https://github.com/cantinilab ). Single-cell high-throughput sequencing, extracting huge amounts molecular data from a cell, is creating
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, managing and analysing data, and publishing and presenting results. Focus will be on projects involving diagnosis, prognosis, and patient stratification based on bulk, spatial and single cell omics data
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more than 2.3k international students and 10k students of color • 217k+ alumni worldwide • For more interesting facts about OSU visit: https://oregonstate.edu/about Locations: Oregon State has a statewide
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 16 hours ago
/or machine learning/artificial intelligence algorithms. Projects may also include work focused on the analysis of spatial and geographic data and work extrapolating results to different spatial scales
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 5 days ago
tasks, including literature review, designing analysis to meet research objectives, and data analysis and visualization, including spatial and statistical analyses. The datasets are large and complex, so
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phenomena that operate on a cellular scale. Faculty research employs a combination of advanced microscopy, genetic analysis, and molecular characterization to study the temporal and spatial mechanisms