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employees can achieve the very best of their potential. CMI aims to remain in the UK at the forefront of clinical imaging research worldwide so that we can ultimately improve patient outcomes. The UCL PROMIS
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About us The Bioelectronics group at UCL's Department of Electronic and Electrical Engineering is seeking a postdoctoral researcher to join a flagship EPSRC-funded project led by Dr Yu Wu. This is a
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delta-pair-distribution-function analysis will isolate correlated magnetic and atomic disorder to build a full picture of charge transport in these important materials. The role is a fixed term position
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, bioimage analysis or a related discipline, or equivalent experience.* Strong experience applying machine learning, deep learning and computer vision to imaging data.* Experience developing analysis pipelines
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Improving the clinical success of porous orthopaedic designs – experimental and finite element study
musculoskeletal models and finite element analysis (FEA) models from clinical images and gait analysis data. The student will perform mechanical testing of the implants to validate the FEA models. The successful
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tissues or related 3D biological models.* Experience with microscopy and imaging-based biological analysis.* Strong experimental design, troubleshooting and data interpretation skills.* Ability to work
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in secure environments Background in medical image analysis (CT/MRI preferred) Knowledge of detection, segmentation, and model development methods Interest in multimodal or longitudinal clinical data
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Max Planck Institute for Human Cognitive and Brain Sciences • | Leipzig, Sachsen | Germany | 2 months ago
London (UCL), UK Teaching language English Languages Courses are held in English (100%). Full-time / part-time full-time Programme duration 6 semesters Beginning Winter semester Application periods
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, mechanism and application of DNA-rearranging enzymes, the translational genetics of myotonic dystrophy and related unstable DNA disorders and systems biology including ‘omics analysis and computational
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for understanding cancer and stem cells. My lab has discovered novel patterns of nuclear RNA around mitotic chromosomes (see image below) and we’ve also discovered major global effects of RNA on mitotic