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of Biomedical Engineering & Imaging Sciences at King's College London. You will become part of a multidisciplinary team of physicists, computer scientists, AI engineers, radiochemists, and biologists, with access
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cardiorespiratory CT imaging by seeking a year’s clinical research experience, allowing them time to write grants and apply for further fellowships leading to a higher degree (such as an MD or PhD) or use
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a 8 fs laser setup and generate structural light from it. You will work collaboratively within the team at Imperial College. You will hold a PhD in Physics (or a closely related quantitative
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and evaluation of the developed methods using relevant imaging datasets and downstream computer vision tasks. This appointment is subject to UCL Terms and Conditions of Service for Research and
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aims to transform our understanding of early human brain development through the integration of cutting-edge imaging technologies, experimental neuroscience, computational approaches and clinical
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apply them to cutting-edge single-cell datasets generated within the lab and from public resources. There is significant scope to shape the project around your interests, including live-cell imaging, flow
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research (https://www.kcl.ac.uk/scms ). We study the fundamental molecular, cellular, and physiological processes that underly normal and abnormal cardiovascular and metabolic function and we drive
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, utilising mathematical modelling, phylogenetic comparative methods, conceptual and philosophical synthesis, and a variety of computational approaches to understand the evolution of developmental processes
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perturbation, live and fixed imaging, and mechanical measurement or perturbation as the questions require; Analysing, interpreting, and integrating the resulting data with the lab’s existing multiomic datasets
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Neuroimaging Sciences at King's College London is a world-leading interdisciplinary research facility based at the Denmark Hill campus. Led by Professor Steve Williams, we are pioneers in imaging the brain