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such as high-content live-cell imaging (SPOT) and single-cell multiomics. You will work closely with clinical collaborators and computational partners to generate mechanistic insights, with opportunities
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, biophysical and computational approaches to major questions in cell & developmental biology, genetics, microbiology, human health and infectious disease processes. High quality laboratory & office space will be
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where we reassemble physiological processes at the molecular, cellular, tissue and systems level of organisation. In so doing we provide a bridge to translational medicine, and interface between physical
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on the development and pre-clinical assessment of both molecular and cellular immunotherapy products, using in vitro and in vivo platforms. You will process clinical samples, operate specialist laboratory equipment
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those with expertise in cardiac MRI acquisition. While experience in machine learning is not essential for this pathway, a strong technical understanding of imaging and post-processing is helpful. You
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: 1089, bioRxiv (2025)) by carrying out protein biochemical, cell biological, and live cell fluorescence imaging experiments. Associated structural analysis of the proteins by cryo-electron microscopy will
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candidate will hold a PhD in physics, biophysics, physical chemistry, engineering, or a related area, or have submitted a PhD thesis prior to taking up the appointment. The research requires strong interest
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biological questions about how cytoskeletal proteins are used by disease-relevant organisms. We have access to excellent facilities such as the Central Oxford Structural and Molecular Imaging centre (COSMIC
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it relates to the laser process parameters. Specifically, you will carry out high resolution Raman imaging on laser written polymer networks with liquid crystal resins. Additionally, you will develop
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term until 30 September 2026 About us: At the Department of Physiology Anatomy & Genetics (DPAG) we undertake discovery science where we reassemble physiological processes at the molecular, cellular