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involve sensor design, including analog front-end design, light source modulation, sensor miniaturization including PCB design, sensor testing via physiology-mimicking phantoms, animal models, healthy
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, single-cell multiomics, tissue engineering, and animal models. Our current research primarily focuses on four key areas: 1) Developing robust, chemically defined differentiation protocols to generate
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are expected to have experience with basic molecular/cell biology techniques, as well as with stem cell and/or animal models of disease. Postdocs in the Arnold lab will be encouraged to develop new technical
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diffraction and gas sorption analysis. Contribute to the mentorship of graduate and undergraduate students in the lab, modeling ethical and safe research practices. Publish peer-reviewed journal articles and
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neuropathological severity. The Postdoctoral Research Associate will be mentored by Dr. Carlos Cruchaga and will focus on the identification and modification of circRNAs in in vitro models of Neurodegenerative
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cells in shaping the matrix following lung injury. The project will utilize a repertoire of relevant murine models of live bacterial and viral infection models as well as sterile lung injury models
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other disease models that are valuable in studying the etiology and treatment for these devastating diseases. We combine in vivo, ex vivo, and in vitro methods to study the pathogenic mechanisms in a
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coarse- grained models of proteins within condensates). These topics share deep conceptual parallels. By advancing concepts in non-equilibrium statistical physics, the group aims to uncover the general
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(PET), functional MRI (fMRI), and electroencephalography (EEG), using advanced quantitative modeling techniques and artificial intelligence methodologies in brain diseases. The candidate will work
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, single-cell multiomics, tissue engineering, and animal models. Our current research primarily focuses on four key areas: 1) Developing robust, chemically defined differentiation protocols to generate