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longitudinal cognitive trajectories and the mechanisms underlying dementia risk and progression. The postdoctoral researcher will work closely with Dr. Fonseca and collaborate with a multidisciplinary team of
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. Certifications/Licenses Required Knowledge, Skills, and Abilities o Professional knowledge in mechanical engineering, electrical engineering, civil engineering, architecture, urban planning, regulatory economics
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the mechanisms driving mitochondria to dysfunction and failure in neurodegeneration and aging, using cellular models. Successful candidates will participate in the initiation of the different research projects
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of the Postdoctoral Associate is to work on research project investigating the neural mechanisms of sensory perception, learning, and decision-making. The laboratory uses state-of-the-art behavioral, neurophysiological
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biology, enzymology, crystallographic fragment screening, and structure-guided drug discovery to define novel mechanisms of RT inhibition and develop new approaches for targeting protein–nucleic acid
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decision processes and/or integrate neuroimaging and detailed phenotypic data to investigate mechanisms relevant to addiction and recovery. We are seeking a Postdoctoral Associate to join the Addiction
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. Essential Duties and Responsibilities include the following: Conducts research experiments to understand the role and mechanisms of oncogenic and tumor suppressor enhancers as well as the interplay between
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(TurboID), phosphoproteomics, and mouse models (including bGHTg acromegaly mice and breast cancer xenografts), we aim to uncover fundamental mechanisms of IGF1R antagonism and develop peptide‑based
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molecular mechanisms of the regulation of synaptic transmission in mammalian brain and human neurons derived from human tissue. In addition, the postdoc(s) should have a strong background in neuroscience and
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Associate will be responsible for the design, analysis, interpretation, and presentation of experiments regarding the study of the disease mechanisms of various brain disorders using murine models and iPSC