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Field
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: Develop and implement advanced AI and computational neuroscience models for brain structure and function. Lead modeling efforts for multimodal brain foundation models. Work with fMRI, structural MRI
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applications, including diabetes, obesity and metabolism. The primary funded project examines changes in the dopaminergic system in the pancreas and brain during diabetes using PET/CT and MRI. Several additional
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disorders, and epilepsy. The primary project is supported by an NIH R01 grant aimed at characterizing circuit-level spatiotemporal alterations in HD using advanced multimodal MRI. The research spans three
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distribution. Both projects will develop the Fontan emulator to be patient-specific, MRI compatible, computer controlled, and quantitatively evaluated using advanced bench-top, CFD/FSI simulation, and MRI-based
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such as flow cytometry, confocal microscopy, MRI/PET imaging and bioinformatics tools. Work with team members across different disciplines such as chemistry, biology, neurosurgery, and engineering. Write up
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data analysis (e.g., MRI preprocessing, statistical modeling, familiarity with tools such as FSL, SPM, AFNI, or similar platforms). Proficiency in statistical programming (e.g., R, Python, MATLAB
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• Perform experiments to evaluate the biodistribution and efficacy/safety of nanoparticle formulations. • Interpret data with advanced methods such as flow cytometry, confocal microscopy, MRI/PET imaging
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University of California, Los Angeles | Los Angeles, California | United States | about 2 months ago
spatiotemporal alterations in HD using advanced multimodal MRI. The research spans three interconnected aims: (1) identifying regional and tract-based multimodal imaging features across HD disease stages; (2
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range of techniques, including cognitive tasks administered in the lab and on smartphones, functional MRI (including densely sampled, precision imaging), and clinical assessment and phenotyping. By
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including R, STATA/SAS; Physiological and neuroimaging assessments/equipment (e.g., COSMED, 31P-MRS, MRI). Physical Demands and Work Environment Physical Demands: Standing, sitting, walking, kneeling