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and/or scientific computation, scientific software and algorithm development, data analysis and inference, and image analysis Ability to do original and outstanding research in computational biology
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. Interest in clinical algorithm development and dexterity with biostatistical coding in R or Python is a plus. The primary goal of this aspect of the CH CARE Study is to combine serially obtained somatic and
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opportunities in many Pediatric sub-specialties, not exclusive to Hematology and Oncology. Key Responsibilities Research Design & Execution: Develop and lead clinical informatics research projects focused
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: * Develop and apply cell culture models of retinal fibrosis and retinal degenerative diseases. * Utilize molecular biology, biochemistry, and imaging techniques to study disease mechanisms and therapeutic
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-cell development and lymphoid leukemogenesis and the application of these mechanistic insights to the development of novel anti-cancer immunotherapy approaches, methods to improve T-cell recovery
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your application is about more than just presenting an exciting research idea. You should discuss: • Details of your track record and research trajectory • Development ambitions for your research
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research groups of 40 researchers in a cluster of high-end nanophotonics and quantum laboratories and nano- prototyping and characterization cleanroom, developing new photonic technologies with an outlook
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, clinical computational oncology), and health policy (BIDMC’s Health Policy Section at the Smith Center for Outcomes Research), providing an exceptional environment for postdoctoral fellows to develop and
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well as developing new targeted therapies for hematological malignant diseases and cancers. Our research involves experiments with various biochemistry and molecular techniques, genomic approaches, and genetic and
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the laboratory of Dr. Qiang Zhu (https://zhulab.vai.org/) at Van Andel Institute (VAI). The research group combines multidisciplinary technologies to study disease mechanisms and develop innovative therapeutic