11 communication-network Postdoctoral positions at University of Minnesota in United States
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gap between how artificial and real networks learn. The Department of Neuroscience at the University of Minnesota is home to a strong and collaborative community studying motor learning and motivational
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communication skills, demonstrated through peer-reviewed publications and conference presentations • Demonstrated productivity through first-author publications Preferred Qualifications: • Skilled in molecular
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between neuromodulation and fMRI. The postdoc will work on the network level perturbation of neurocircuits using high-definition neuromodulation. This postdoc will lead scientific discovery in developing
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musculoskeletal biology; all of these groups offer regular seminars, journal clubs and social/networking events. Responsibilities: • Planning, execution, analysis, documentation and communication of novel research
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Contribute to the prevention and treatment of brain-based disorders Engage underrepresented communities in all aspects of academic medicine and research To learn more about CDNI and current research studies
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, implement, and evaluate computational models that assimilate 2-photon data (60%) Use a computer programming language to create novel neural network simulations (models) that include realistic simulations
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generation • Experience with RNA-seq data analysis • Strong written and verbal communication skills, demonstrated through peer-reviewed publications and conference presentations Preferred Qualifications
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-cell and omics approaches, our methods allow for in-depth exploration of intracellular signaling networks and physical interaction networks in health and diseases. Using these methods, we aim
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-foundation-launches-collaboration-on-ecological-neuroscience/ ). Collaborative Network You will engage with a global team of scientists, including but not limited to: • Jan Zimmermann (University of Minnesota
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Dystrophy Cardiomyopathy. J. Am. Coll. Cardiol. 2020 75(10):1159-1174 and Singh BN et al., A conserved HH-Gli1-Mycn network regulates heart regeneration from newt to human. Nature Communication. 2018 9(1