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. Individual will develop and test novel computational models of the neural activity generated by electrical stimulation of the brain. Also, perform data analysis utilizing medical imaging data, computer models
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, and (b) the critical role of structural and functional connectivity using combined tractography and graph theory analyses. Our modeling of mnemonic representations uses the latest tools available to AI
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cultured cells and animal models of skin diseases. Work Performed • Development of new and implementation and modification of existing experimental procedures. • Data preparation for oral presentations
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, or engineering. Our research integrates mathematical modeling, machine learning, and quantitative experiments to understand and control the dynamics of microbial communities in time and space. Ongoing projects
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) and their relationships with neighboring tissues in pathophysiological conditions. We utilize in vivo mouse genetics, live imaging, 3D organoids, genome-wide Cas9/Crispr based functional genetic
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University is looking to hire a postdoctoral researcher to contribute to our studies on the molecular and biomechanical mechanisms of cell sheet morphogenesis during dorsal closure in the model system
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modeling). • Experience working with large-scale datasets and interdisciplinary research. • Demonstrated research productivity in relevant areas (e.g., peer-reviewed publications, working papers
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for a Postdoctoral Scholar. The Scholar will conduct research on Bayesian spatiotemporal modeling methodology under the direction of Professor David Dunson at Duke on developing novel models motivated by
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: Engineering / Biomedical Appl Deadline: none (posted 2025/04/14) Position Description: Apply Position Description Post-Doctoral Research Associate Neuron Modeling for Transcranial Electric and Magnetic
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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