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biology, focusing on tumor microenvironment signaling, perineural invasion, and mechanisms of therapeutic resistance in prostate cancer. Experimental Execution: Design and execute complex experimental
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journals. Key Duties and Responsibilities: developing, validating, improving and applying mammalian cell-based and other relevant biological models to investigate mechanisms underlying neurodegenerative
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Associate will conduct translational epilepsy research focused on the network mechanisms of ictogenesis in mesial temporal lobe epilepsy (MTLE). The researcher will develop and validate quantitative, event
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mechanisms of insulin resistance, with particular emphasis on the role of the sympathetic nervous system (SNS) in metabolic homeostasis. The work of the lab challenges the conventional paradigm by
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a strong computational background and extensive experience developing high-throughput systems for quantitative analysis of behavior and aging, allowing us to connect neural and molecular mechanisms
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(RBHS). The primary purpose 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
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structural biology (cryoEM), proximity labeling (TurboID), phosphoproteomics, and mouse models (including bGHTg acromegaly mice and breast cancer xenografts), we aim to uncover fundamental mechanisms of IGF1R
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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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will participate in grant-funded research aimed at: · Characterizing collateral RNA cleavage by diverse Cas13 homologs and determining their RNA substrate preferences and mechanisms of activation
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sequence and to model the evolution of body size using bounded evolutionary models. 3) Biomechanical and Hydrodynamic Modeling: Apply computational fluid dynamics to test hydrodynamic hypotheses related