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research infrastructure across genomics, proteomics, imaging, and bioinformatics. How to Apply Please submit a Cover letter and CV in a single PDF Cover letter (maximum 2 pages) describing your research
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models Strong quantitative, imaging, or computational analysis skills BACKGROUND CHECKS/CLEARANCES Employment with the University will require successful completion of background check(s) in accordance
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maintain contributor guides and onboarding documentation to lower the barrier for external contributors. Support code review processes via GitHub Pull Requests following open development principles
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cardiac dysfunction during heart failure. Our research spans from human to animal studies, employing novel imaging and electrophysiologic techniques such as flow cytometry, vesicular analysis, and
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molecular biology techniques, 2D and 3D cell culture models (hydrogels), imaging techniques (TEM, SEM, confocal), protein analysis (immunohistochemistry/immunofluorescence), and handling of rodents. Specific
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interpersonal neural synchronization), EEG, and behavioral coding and will focus on parent-child interaction and socialization of anxious behaviors through child observation. A sub-aim of the study focuses
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reviewing and digging into code, Be a part of a team that’s as excited about your growth and happiness as much as you are about theirs. Education and Experience: Applicants should possess a master's degree
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musculoskeletal research (relevant publications include Khajuria el al . Bone 2020; Khajuria el al . Bone Research 2023; Khajuria el al . JBMR 2023). The lab’s primary focus is to identify roles of non-coding RNAs
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related tasks. Responsibilities: 1) Biomedical data analysis (40%): Statistical analysis of biomedical data by using existing methods and developing custom code scripts. 2) Bioinformatics method development
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related tasks. Responsibilities: 1) Biomedical data analysis (40%): Statistical analysis of biomedical data by using existing methods and developing custom code scripts. 2) Bioinformatics method development