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data sources such as UK Biobank and eventually come up with algorithm useable for the early detection of Alzheimer’s disease (AD) and Parkinson’s disease (PD). Nature of Work: In this project, we will
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signal processing algorithms on FPGA, optimized to significantly improve the resolution of real-time energy measurements made by the ATLAS Liquid Argon Calorimeter system. Use novel high-level synthesis
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. The overall goal of the BIG project is to ensure the existence of healthy, genetically diverse bison, without domestic cattle or subspecies introgression, and with long-term sustainable genetic diversity in
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are not limited to superconducting quantum circuits, circuit QED, quantum error correction, microwave quantum optics, variational quantum algorithms, and the application of machine learning to quantum
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Qualifications: Expertise in C. elegans husbandry, genetics and experimental manipulation - Expertise in florescence microscopy, particularly confocal and live-cell imaging - Expertise in image analysis, including
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, Genetics, Cell Biology, Biophysics or a related field - Competency in computational (R or Python) and statistical analysis - Competency in experimental design and standard molecular biology, imaging
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molecular biology and biochemical technics such as western blot, yeast genetics, qPCR, microscopy, and mammalian cell-based assays. Assist in data interpretation by summarizing and preforming statistical
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Nature Careers | Vancouver South Shaughnessy NW Oakridge NE Kerrisdale SE Arbutus Ridge, British Columbia | Canada | 10 days ago
provide unique translational research opportunities. About the Research Group Our focus is mitochondrial genetic and epigenetic changes, their interaction with nuclear genome, and mitochondrial dysfunction
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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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McGill University | Winnipeg Sargent Park Daniel McIntyre Inkster SE, Manitoba | Canada | about 1 month ago
addresses these fundamental challenges by employing single-molecule fluorescence microscopy to visualize mRNAs in their cellular context. Coupling these techniques with genetic and molecular biology