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learning to improve detection using multiphase CT imaging and longitudinal biomarker data in routine practice. You will work with multidisciplinary clinical and AI teams on applied research, developing and
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, robotics, motion-control, fluidics, environmental-control and imaging-interface components. Developing custom prototype components using methods such as CAD, 3D printing, machining, fabrication and rapid
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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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models and in vivo murine models. The work will also involve image analysis software and others About You The role is suitable for a Postdoctoral Research Associate who is motivated and committed
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learning to improve detection using multiphase CT imaging and longitudinal biomarker data in routine practice. You will work with multidisciplinary clinical and AI teams on applied research, developing and
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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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Max Planck Institute for Human Cognitive and Brain Sciences • | Leipzig, Sachsen | Germany | about 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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vitally important 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
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cancer stem cell biology cancer imaging chemoresistance in cancer cancer and ageing regulation of cancer cell death processes genetics, genomics and systems medicine immunotherapy for cancer cancer
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-edge instrumentation, such as the JEOL CRYO ARM 300 electron microscope and the Leica THUNDER Imager EM cryo-CLEM microscope. This technology allows us to target events that happen deep in the cell so we