11 medical-image-processing-phd positions at University of British Columbia in Canada
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the fundamentals on the job: the successful candidate is expected to arrive already fluent in medical imaging data (DICOM/PACS), health-research ethics and privacy, and research computing infrastructure, and to
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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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neuroscience and neuroscience techniques including iPSCs generation, differentiation, and maintenance, tissue culture, and confocal imaging. The candidate must have a PhD, and at least 2 years of post-doctoral
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other analysis as required by the Faculty of Medicine Education portfolio. The Education portfolio is the largest and most complex portfolio in the faculty, and includes the distributed medical
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, Current Students in a Master’s Program, Current Students in a PhD Program. Cover letters are mandatory. Please submit it along with your resume. This recruitment is for multiple vacancies At UBC, we believe
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: Design and implement ML, deep learning, and Large Language Models for orthopaedic applications Work with multimodal clinical data, including: Medical imaging (X-ray, CT, MRI) Electronic health records (HER
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mammary epithelial cell systems · Mouse and genetically engineered cancer models · High-content and live-cell imaging · Tumor evolution and therapeutic response modeling Research
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childhood cancer The lab has extensive expertise in: · Human primary mammary epithelial cell systems · Mouse and genetically engineered cancer models · High-content and live-cell imaging
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: · Human primary mammary epithelial cell systems · Mouse and genetically engineered cancer models · High-content and live-cell imaging · Tumor evolution and therapeutic response modeling
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University of British Columbia | Northern British Columbia Fort Nelson, British Columbia | Canada | about 2 months ago
: oversee the management and operation of a state-of-the-art aberration-corrected Nion HERMES 200 scanning transmission electron microscope (STEM) optimized for both atomic level imaging and high energy and