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Field
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models of sporadic low-grade glioma and Neurofibromatosis Type 1 (NF1)-related optic pathway glioma to accomplish these goals. We are additionally interested in how environmental exposures affect the non
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analysis, RNAscope and proximity ligation assays. Operates and maintains experimental equipment; assists in writing protocols for IRB and IACUC. Genotypes distinct knockin and knockout animal model systems
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and lead and support advanced research on West Nile virus (WNV) dynamics, with a primary focus on computational infectious disease modeling and quantitative analyses of field data. They will contribute
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design, fabrication, and/or measurement Proficiency in low-noise cryogenic measurement techniques at millikelvin to few-kelvin temperatures Ability to model Argonne's core values of impact, safety, respect
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The University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 24 days ago
at Chapel Hill, for a self-motivated scientist to study the role of laminin-binding integrins in lung development, alveolar homeostasis, and alveolar repair. We utilize lung-specific transgenic mouse models
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therapies, and disease models, including mutant mice and iPSC-derived neurons to further understand neurodegenerative processes. These projects are funded by multiple grants from the NIH. This opportunity
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the development of AI models for robotic control and the demonstration of these methods via simulation and experiment. Beyond the listed projects, the candidate may contribute to other large-team scientific
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analysis and Multiphysics Computational modeling of metal alloys using an Integrated Computational Materials Engineering (ICME) approach. Responsibilities: 60% Perform research on the microstructural
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& Responsibilities Plan, design and conduct advanced, multi-disciplinary research involving the use of mouse models, human tissue and blood samples. Use biochemical, cellular, molecular, and pharmacological approaches
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understanding of placental development through the integration of computational modeling and clinical imaging data within the Biomedical Flows Simulation and Multiscale Modeling (BioSiMM) Lab. Core