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, astrocytes, oligodendrocytes, and microglia. Develop complex neuroimmune co-culture systems incorporating immune cells into human CNS models. Apply CRISPR/Cas-based genome engineering technologies
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Lunenfeld-Tanenbaum Research Institute | Central Toronto Roselawn, Ontario | Canada | about 8 hours ago
genomics and spatial transcriptomics); advanced live-cell or super-resolution imaging; computational modeling of developmental trajectories; and the engineering of advanced in vitro models (such as stem
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Computer Science within the MDA program, as well as more traditional undergraduate and graduate programs in Computer Science. Given the structure of the MDA program, there is an expectation
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projects and deliverables May supervise undergraduate students working on the AI/ML projects QUALIFICATIONS PhD (or equivalent) in Machine Learning, Computer Science/Engineering, Biomedical Engineering, or
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high-impact journals 4. Experience with at least one of: Live-cell imaging or advanced microscopy; Mouse models or genetically engineered systems; Primary cell culture or organoid systems
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engineered systems; Primary cell culture or organoid systems; Molecular perturbation (CRISPR, RNAi, etc.) Preferred qualifications Background in BRCA1, HMMR, PLK1, or related mitotic regulators Experience in
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-author publications in high-impact journals 4. Experience with at least one of: Live-cell imaging or advanced microscopy; Mouse models or genetically engineered systems; Primary cell culture
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of respect, integrity, compassion, collaboration, and equity. The successful candidate will have demonstrated evidence of ability in teaching and scholarly activity, and will have PhD in Computational Biology