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Field
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research projects aimed at understanding the mechanisms underlying Crohn’s disease and ulcerative colitis and identifying biomarkers to advance towards personalised medicine. Our projects focus on the study
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sediment trapping interact under highly turbid conditions. Existing idealized estuarine models do not adequately capture these feedback mechanisms, particularly when sediment concentrations become
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enhance the reliability of next-generation winding insulation systems, including emerging hairpin and Litz-wire technologies, under representative electrical, thermal, pressure and mechanical stresses
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of the microstructures and thermal-mechanical properties of advanced high-temperature materials. The Junior Researcher works in a team environment with researchers and technical experts in world-class facilities
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the brain white matter. The network aims to strengthen the full translational pathway from disease mechanism and model development to preclinical therapy testing, clinical readiness and patient-informed
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white matter. The network aims to strengthen the full translational pathway, from understanding disease mechanisms and developing disease models to preclinical therapy testing, clinical readiness and
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antimicrobial resistance (AMR), but the biological mechanisms remain poorly understood. This project asks how temperature shapes selection for resistance across different antibiotics, strains, and species
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newly born neurons, combining developmental neuroscience with structural biology imaging. This research will uncover fundamental mechanisms of brain development and provide insight into processes
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disorders will be correlated with pain phenotypes to determine underlying mechanisms that predict susceptibility to pain. These studentships are funded through GW4 BioMed3 MRC Doctoral Landscape Programme and
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architecture of glucose from peripheral red blood traits, we will uncover how these independent mechanisms drive diabetes aetiology and long-term complications, ultimately untangling diabetes heterogeneity