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encephalitis, and related neurological disorders. The project combines human induced pluripotent stem cell (hiPSC) technology, brain organoids, genome engineering, advanced imaging, systems immunology, and high
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may contribute to projects involving: multi-omics analyses (single-cell, cell-free RNA/DNA, methylation, proteomics); biomarker discovery for pregnancy complications and neonatal outcomes; computational
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Dalhousie University | Halifax Mid Harbour Nova Scotia Provincial Government, Nova Scotia | Canada | about 1 hour ago
community, that celebrated 200 years of academic excellence in 2018. Job Summary The UNITE project will mobilize an unprecedented team of multidisciplinary scientists, decision-makers, youth and community
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. The Sun Lab uses multidisciplinary approaches, spanning microbial genetics, cell biology, immunology, high-throughput screening, omics, and in vivo models, to study host immunity to pathogens (such as
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to projects involving: multi-omics analyses (single-cell, cell-free RNA/DNA, methylation, proteomics); biomarker discovery for pregnancy complications and neonatal outcomes; computational biology, machine
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and the Biomedical Research Centre (BRC). For more information about the School of Biomedical Engineering, please visit https://www.bme.ubc.ca/ . The position will require the performance of a variety
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out experiments using established protocols, including work with immortalized cell lines and induced pluripotent stem cell (iPSC) models. Experimental approaches will span high-content imaging CRISPR
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will help lead efforts to design and manage online surveys, data collection, analysis, and coordinate with partner organizations. The incumbent will be working with Montreal Mobility survey data
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Dalhousie University | Halifax Mid Harbour Nova Scotia Provincial Government, Nova Scotia | Canada | about 1 hour ago
community-facing knowledge mobilization, with opportunities to lead manuscripts and other scholarly outputs. Maintain research documentation and progress tracking and work with Dr. Dryden to identify and
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at the molecular and tissue level, and how its disruption contributes to hereditary cancers and pediatric malignancies (https://bcchr.ca/maxwell-lab ). Key areas include: Mechanisms of cell division fidelity