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. Job Description: The postdoctoral researcher will contribute to an interdisciplinary project focused on developing and validating physiologically based pharmacokinetic (PBPK) and model‑based meta
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, vegetation, and water table position on energy transmission. Co-develop and apply process-based numerical models of dune morphological change informed by collected datasets. Coordinate field campaigns
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clinical features using machine learning and foundational modeling approaches. This work supports disease modeling across chronic kidney disease, acute kidney injury, cancer, and neurological conditions. A
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the absence of antiretroviral therapy (ART). Using nonhuman primates as a preclinical model of HIV/AIDS, we have shown that a single dose of adeno-associated virus (AAV) vectors at birth can result in stable
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symptoms across the healthcare system, by integrating neuroimaging, psychophysiology, and computational modeling. Our work spans from basic science to clinical/translational neuroscience with humans, and our
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collaboration with the UF Artificial Intelligence initiative. The successful candidate will have the opportunity to work on cutting-edge projects aimed at building large-scale models for neuroimaging and
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function following cervical spinal cord injury (SCI). The position involves conducting preclinical studies using rodent models to explore neuroplasticity-based therapies—such as therapeutic acute
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-Grant system. Candidates must also have a commitment to UF core values . Preferred: General understanding of Lake Okeechobee, Florida ecosystems specific to wetlands. Hydrologic modeling and geospatial
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, evo-devo, neurophysiology, and behavior projects ongoing. Work will primarily be related to the genetics and physiology of opsin-expressing sensory cells in the lab’s model system, Nematostella
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biology, such as cell culture, gene editing, IP, WB, flow cytometry, in vivo models, etc. Epigenetics/Genomics approaches: ChIP, ChIP-seq, ATAC-seq, RNA-seq, CRISPR Screening, etc. Basic bioinformatic