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neurodevelopmental disorders. The successful candidate will develop and apply experimental and computational approaches to understand gene regulation and disease mechanisms in neural development and to evaluate
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Computational Translation at Yale (IMPACT-Y) study. This large-scale, longitudinal project is designed to advance computational psychiatry by integrating mechanistically informed behavioral tasks with theory
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program, our laboratory addresses three central questions: ● Why do breast cancer therapies stop working? ● How can the patients developing resistance, and the biology driving it, be identified from a
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cellular biology approaches. The Park Lab develops human stem cell-based neural models to investigate molecular and cellular mechanisms regulating neurodevelopment and neural function, and to understand how
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. We conduct translational research aimed at understanding mechanisms of neurodegeneration in in multiple sclerosis (MS) and other inflammatory and neurodegenerative CNS disorders, with a strong emphasis
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their emotional intelligence. Our work focuses on: (1) the development and impact of social and emotional skills among diverse populations, including education settings and organizations, and (2) the mechanisms by
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and cellular mechanisms underlying these disorders using cell-based assays, blood vessel organoids, and zebrafish and mouse models, working alongside neurosurgeons, computational scientists, and
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Overview The laboratory of Dr. Ronald Breaker at Yale University invites applications for a Postdoctoral Associate position to participate in a newly funded research program supported by the John
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mammals, with the goal of revealing new mechanisms of gene regulation and cellular signaling. Position Overview The successful candidate will develop and apply advanced computational methods to identify
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Quantum Information Science and Engineering Theory Postdoctoral Associate Yale University: School of Engineering and Applied Science: Applied Physics: Yale Quantum Institute Location New Haven, CT