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Field
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group led by Dr. David Klinges in the Department of Ecology, Evolution & Natural Resources. Our work combines computational modeling, field studies, and laboratory experiments to understand how
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include (but are not limited to) developing/applying new approaches to improve range shift projections under climate change, regionally modelling organism-environment interactions across species ranges
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; design and optimize synthetic strategies for complex peptides, peptide libraries, and small proteins; develop scalable production methods using solid-phase peptide synthesis and native chemical ligation
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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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professionals and technicians in laboratory technicians, instrumentation, etc. to develop the skills necessary to perform the required research functions. Assists with eIACUC and IBC protocol renewals and
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mentorship and a clear path toward scientific independence, including opportunities to develop first-author publications and pursue independent funding to embark on an academic career in the area of
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include but is not limited to 1) developing, validating, improving and applying cell-based and other preclinical models to understand the functions of lipids, lipoproteins and related factors in influencing
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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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play a key role in ongoing clinical trial on exercise research and developing studies investigating the interplay between longitudinal cognitive outcomes, neuroimaging and vascular risk factors using US
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of digital technologies, and policy guidance. Publish high-quality, peer-reviewed articles in leading academic journals. Develop and refine innovative research questions for future exploration. Collaborate