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for Robotics and AI, and the UKRI. CRADLE involves providing project-wide flexible, generic, verifiable architectures supporting practical development and deployment of trustworthy autonomous robotics. We
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scientific aims, published as well-documented open source tools for wider adoption. The successful applicant will have a PhD with a significant computational and/or statistical element and will have experience
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atlases along with computational models to characterise the effect of exposures on different tissues in humans and model systems. You will have a PhD with a significant computational and/or statistical
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, and developed over more than seven decades. From sensitive medical trials and high-performance computing to AI tools, global research partnerships, and a user base of over 45,000 staff and students
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of Manchester and Oxford. The CoRE will leverage cutting edge computational approaches, novel experimental models, and experimental medicine studies to uncover how pollutants and infections interact with our
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by the universities of Manchester and Oxford. The CoRE will leverage cutting edge computational approaches, novel experimental models, and experimental medicine studies to uncover how pollutants and
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by the universities of Manchester and Oxford. The CoRE will leverage cutting edge computational approaches, novel experimental models, and experimental medicine studies to uncover how pollutants and
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Couper and work closely alongside the labs of Prof. David Brough and Prof. Omar Pathmanaban based in FBMH. The successful candidate will have (or expect to hold shortly) a PhD with a strong background in
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patient cohorts, geometric deep learning, computational anatomy, cardiovascular modelling, multimodal datasets. What you’ll need Applicants should have a PhD (or nearing completion) in computational imaging
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postgraduate demonstrators. It is envisaged that the post holder will provide support for marking student work as and when required. The successful candidate will hold a relevant PhD in a Biomedical Sciences