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electrophysiology, imaging, and behavioral methods, with rodents as the model system. A major challenge that makes learning difficult is that the world is complex and high dimensional: there are often multiple
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opportunity to be part of an exciting team of leaders in biochemistry, computational biology, and clinical medicine, with ample opportunities for co-authorship on high-impact publications. Application
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and develop high-performing, multidisciplinary teams. Skilled in prioritization, decision-making, and navigating competing demands. Strong analytical and problem-solving capabilities. Technical & Domain
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and collaborative team of computational scientists, software and AI engineers, and neuroscientists, you’ll have access to high-performance workstations, CPU/GPU clusters, and experimental systems
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reports. May assist in the establishment of experimental protocols. Postdoc appointments are tied to a research program advised by the Investigator. Principal Duties and Responsibilities Performs research
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to several pounds (such as a laptop computer or tablet). Persons with disabilities may be able to perform the essential duties of this position with reasonable accommodation. Requests for reasonable
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not a traditional project management role. The work spans institutional priorities that are often still taking shape: a strategic benefits transformation one quarter, a compensation and performance
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zebrafish and mouse models, including microinjections, live imaging, and behavioral studies. Apply molecular biology techniques including PCR, cloning, and genotyping. Perform in vivo imaging and high
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perform experiments using an array of state-of-the-art techniques from systems neuroscience, genetics, and physiology. More information about this lab can be found on his website https://knightlab.ucsf.edu
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high performance compute environments (cloud-based and slurm/lsf clusters) and model deployment platforms (e.g., Kubernetes, AWS SageMaker, Google Vertex AI, HF Inference). Experience with distributed