48 assistant-professor-electrical-engineering-"https:"-"https:"-"https:" Postdoctoral positions at Duke University
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-conscious methods. HARP is led by Dr. Jana Schaich Borg, Associate Research Professor in the Social Science Research Institute. The core development team includes Dr. Rick Hoyle, Professor of Psychology and
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researchers, you will contribute to groundbreaking studies focused on juvenile dermatomyositis (JDM) and the role of type I interferons in disease development and progression. Your work will help bridge
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the development of new imaging protocols. Minimum Requirements: Ph.D. or equivalent doctorate (e.g. Sc.D., M.D., D.V.M.) in biomedical engineering, electrical or computer engineering, medical physics
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neurologists, neurosurgeons, sleep medicine specialists, engineers, and data scientists, you will have the opportunity to contribute to groundbreaking discoveries while expanding your scientific expertise in a
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to understand how gene regulation and chromatin organization control cell fate, tissue regeneration, aging, and disease. About the Diao Lab The PI, Dr. Yarui Diao, is a tenured Associate Professor of Cell Biology
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effective in leading discussions about project status and current results in audio and video calls and in-person meetings, and communicating the same in formal and informal written reports. The ideal
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will help advance novel imaging technologies, analyze complex medical imaging data, and contribute to research that has the potential to improve patient outcomes worldwide. What You'll Do: Conduct
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contribute to transformative research initiatives including the SenseToKnow program and collaborate with renowned investigators including Dr. Geraldine Dawson and Dr. Guillermo Sapiro. Your work will help
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research in engineering and science related to critical minerals. This position will contribute to building interdisciplinary excellence and research pathways in critical minerals research at Duke University
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therapy, with a particular emphasis on epigenetic regulation, radiation response, and treatment resistance. Our work leverages patient-derived organoids, engineered cellular models, functional genomics, and