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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
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of imaging techniques (confocal, super-resolution, two-photon microscopy), cell biological and biochemical tools as well as electrophysiology, and behavioural studies. Opportunity: The post-doctoral
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following is highly desirable: animal surgery, microscopy, in vivo electrophysiology, calcium imaging, chemogenetics, behavioral experimentation, programming languages (Python/Matlab), and data analysis. Lab
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/ ). This position is pivotal to our CIHR-funded research on hippocampal-neocortical interactions essential for memory processes. The selected candidate will spearhead a project employing cutting-edge calcium imaging
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recovery. The focus of the lab is to determine how brain circuits reorganize after a stroke, contributions of these reorganizational process to motor function, molecular signatures that drive recovery and
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stem cell/neural tissue culture, pharmacological drug delivery, cellular, biochemical and molecular techniques, genetic manipulations, cell tracing, fluorescence/confocal imaging, high throughput