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with molecular biology, scRNAseq/ATACseq, in vivo 2-photon live imaging, and mouse behavior Experience with coding is an asset (e.g., R, Python, MATLAB). Ability to work independently and as part of a
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-photon live imaging, and mouse behavior Experience with coding is an asset (e.g., R, Python, MATLAB). A strong track record with neuroscience research in peer-reviewed journals. Ability to work
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: Cellular and Molecular Medicine Description: Interested in Neural Stem Cells (NSCs) physiology and function? Want to monitor NSCs activation and division using in vivo live imaging approaches in behaving
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combining chronic in vivo imaging (two-photon microscopy, fiber photometry, GRIN lens imaging) with genetic and molecular approaches to dissect how cell type- and projection-specific plasticity orchestrate
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amyotrophic lateral sclerosis (ALS). Projects will involve gut microbiota manipulation and in vivo multiphoton imaging of the brain using animal models of ALS. The desired candidate will have experience in
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-density electrophysiological recording systems, two-photon imaging, optogenetics, transgenic mouse lines for targeting specific neuronal subtypes, and behavioral rigs. We strongly encourage candidates
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or precision health. Applicants with expertise combining advanced approaches such as stem cell technologies, genomics, optogenetics, neural activity imaging, or neural network analysis and with the use of human
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MSc/PhD Position at the Faculty of Medicine, Memorial University of Newfoundland, St. John’s, Canada
-of-the-art medical laboratories equipped with high-resolution confocal imaging, a Seahorse analyzer for metabolic profiling, flow sorters and cytometers, an electron microscopy suite with advanced tissue
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-intensive care unit, four surgical suites, state-of-the-art interventional neuroradiology, advanced CT, MEG, PET and MR imaging facilities, specialty outpatient clinics, a day hospital, rehabilitation and
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dynamics in models of brain injury and neurodegeneration (amyotrophic lateral sclerosis / ALS and Alzheimer’s disease / AD). Projects will involve in vivo multiphoton imaging of glia, vascular, perivascular