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decode the underlying mechanisms of T cell activation and reconstruct a comprehensive map between regulatory T cells and target antigens in MS. You will explore cellular interactions in tissue, model
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access to the university supercomputing services to support this work. They may also be required to produce maps and perform simple spatial analysis for other members of the project. They will be involved
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analyses to map the opportunities and threats of food system transitions for climate and societal resilience. The work is supported by the British Academy and is part of a multi-disciplinary research team
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-technological user-product journey maps to validate findings and coordinating focus groups with key stakeholders and observational studies to iteratively evaluate and compare. Co-creating digitally enabled
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required to produce maps and perform simple spatial analysis for other members of the project. They will be involved in publications, with opportunities as both a first and co-author, and will also engage in
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model predictions using gene editing and mapping populations. The ideal candidate: Candidates should have a PhD in Genetics, Genomics, Molecular Biology, Plant Biology, or related discipline and have
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secondary datasets). Apply advanced analytical techniques (e.g., econometrics models; AI tools; MCDA; cognitive mapping) to generate robust, actionable insights. Design innovative financing channels and
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access to the university supercomputing services to support this work. They may also be required to produce maps and perform simple spatial analysis for other members of the project. They will be involved
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of this pathology. Platelet activation is a highly dynamic process underpinned by complex signalling events, culminating in thrombus formation. Our project will map key signalling events that govern platelet and
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design, statistical sampling and analysis of large, multi-taxa biodiversity datasets. Expertise in landscape-level biodiversity and production analyses using R, QGIS, Google Earth Engine. Extensive