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neuroscience broadly defined (e.g., Psychology, Neuroscience, Computer Science, or a related field) are welcome to apply. Experience with computational modeling is required. Strengths in open science practices
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impacts on property values, tax revenues, and insurance markets; and - Collaborate on the development of an integrated modeling and decision-support framework that links risk, behavioral, and finance
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induced by radiation, focusing on mechanisms of regenerative reprogramming and stromal-epithelial interactions. Complementary approaches will be used, including genetically engineered mouse models
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will lead methodological innovation and applied research in predictive modeling for mental health, drawing on diverse data modalities such as: Electronic Health Records (EHR) Patient-reported outcomes
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induce more protective immune responses in the non-human primate (NHP) model by exploring innovative mRNA constructs for immunogen delivery that can elicit both protective and therapeutic B and T cell
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related field). Strong research background in transcriptional regulation, cell biology, molecular biology, mouse models of cancer, and/or biochemistry. Prior experience in stem cells, Cas9/Crispr gene
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MD or PhD or equivalent degree and has interests in immunotherapy and/or hematopoietic stem cell transplantation using mouse animal models. The research involves understanding the mechanisms underlying
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The research will be studying skeletal muscle biology and function in regulating other tissues, using cellular, molecular, and model animal (transgenic mice) approaches. Specifically, the postdoctoral research
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-initio codes to accelerate the discovery/design of ultra-high-temperature high-entropy ceramics and other disordered systems Advance and implement high throughput models for the discovery/design of ultra
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studies on the molecular and biomechanical mechanisms of cell sheet morphogenesis during dorsal closure in the model system, Drosophila melanogaster (reviewed in Kiehart et al. 2017 Ann. Rev. Cell Dev. Biol