72 parallel-processing-bioinformatics-"DIFFER" Fellowship positions at University of British Columbia in Canada
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of having a sufficiently detailed understanding of gene expression that we can design personalized therapeutics to prevent and treat disease. The Faculties of Medicine and Applied Science have partnered
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on the genetic determinants of severe adverse drug and vaccine reactions. Potential projects focus on severe ADRs to a range of different medications. Current priority ADRs include cisplatin-induced
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bioinformatics team of the BC Cancer’s Department of Molecular Oncology (http://molonc.bccrc.ca). The UBC Department of Obstetrics & Gynaecology has training programs at the undergraduate, graduate and
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differences are appreciated, recognized, and integrated into current structures, planning, and decision-making modes. Within this hiring process we are committed to creating an inclusive and equitable process
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one of Canada’s leading cancer research institutes. Access to state-of-the-art single-cell, sequencing, and bioinformatics infrastructure. Extensive opportunities for career development, networking, and
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differences are appreciated, recognized, and integrated into current structures, planning, and decision-making modes. Within this hiring process we are committed to creating an inclusive and equitable process
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differences are appreciated, recognized, and integrated into current structures, planning, and decision-making modes. Within this hiring process we are committed to creating an inclusive and equitable process
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environments (namely the Surrey Memorial Hospital NICU-partnering with Ronald MacDonald House). There would be opportunities to work closely with experts and students in the fields of human-computer interaction
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. An inclusive work environment presumes an environment where differences are appreciated, recognized, and integrated into current structures, planning, and decision-making modes. Within this hiring process we
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-cell compartment, develops and deteriorates with age, and how these processes can be understood, modeled, and ultimately reversed or rebuilt using bioengineering and synthetic biology approaches