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important drivers of developmental learning, communication, and engagement. Traditional methods for evaluating these interactions require extensive human observation and coding, limiting scalability and
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, learning, well-being, social experiences, and decision-making. HARP is developing a longitudinal multimodal research resource to study human-AI interaction and its impacts using student-informed, privacy
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scientific discoveries to improve human health locally and around the globe. Composed of more than 2,600 faculty physicians and researchers, nearly 2,000 students, and more than 6,200 staff, the Duke
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scientific discoveries to improve human health locally and around the globe. Composed of more than 2,600 faculty physicians and researchers, nearly 2,000 students, and more than 6,200 staff, the Duke
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research team dedicated to advancing our understanding of migraine, pain mechanisms, neuroimmune interactions, and nervous system function. Your expertise, curiosity, and commitment to scientific discovery
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scientific discoveries to improve human health locally and around the globe. Composed of more than 2,600 faculty physicians and researchers, nearly 2,000 students, and more than 6,200 staff, the Duke
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dynamic academic medical center environment. Be Bold. As a Postdoctoral Associate, you will lead innovative research focused on the interaction between sleep and epilepsy, leveraging advanced
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translation of fundamental scientific discoveries to improve human health locally and around the globe. Composed of more than 2,600 faculty physicians and researchers, nearly 2,000 students, and more than 6,200
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scientific discoveries to improve human health locally and around the globe. Composed of more than 2,600 faculty physicians and researchers, nearly 2,000 students, and more than 6,200 staff, the Duke
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focusing the complex interactions between human host factors (genetic traits, health status, etc.) and environmental exposures (especially air pollution) in order to understand how risk factors affect human