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learning, and computational modelling. The doctoral candidate will investigate how pressure differences can be calculated directly from magnetic resonance imaging (MRI) and ultrasound data, reducing the need
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At least 5 years of demonstrable experience in: Knowledge of microscopy and the operation of various types of equipment from different manufacturers, including epifluorescence and confocal microscopes
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Description The goal of this project is to explore the effects of mechanical forces on the cell nucleus during epithelial-mesenchymal transition (EMT), a critical cellular process that occurs in both
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developed mouse models and human tissue processing pipelines. The candidate will learn and use cutting edge immunological methods (high parameter flow cytometry, multiplex imaging, single cell and spatial
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clinical operations. This individual is responsible for ensuring the efficient processing and reporting of imaging studies, collaborating with healthcare providers, and contributing to the safe and effective
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systematic survey of CARE-PF sites to define site-specific technical needs and constraints (e.g., differences in PACS systems, data governance, and local approval processes), and develops the technical plan
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/STEM image processing and simulation using open-source Python packages such as hyperspy, pyxem, atomic simulation environment (ASE) and abTEM as well as user experience with the Protochips specialist
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closely with PhD students, postdoctoral researchers, and other members of the scientific teams. A major component of the work in Dr. Jobin’s laboratory will involve intravital imaging of the immune system
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JOB DUTIES Description There’s nothing more exciting and rewarding than being able to make a significant, positive difference in someone’s life. At UCLA Health, you’ll experience this joy every day
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with optically pumped magnetometers (OPM-MEG). The centre has strong links to the Cardiff University Brain Research Imaging Centre (CUBRIC), one of the largest and most technologically advanced imaging