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the Universities of Exeter, Bristol and Cardiff will provide expertise in molecular neuroscience, glial biology, bioinformatics, and disease modelling. This interdisciplinary project offers an exciting opportunity
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such risks arise and developing strategies to optimise phage therapy for co-infections, helping unlock its full potential as a next-generation antimicrobial treatment. These studentships are funded through GW4
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major threat to human health, which is for a large part driven by plasmids (mobile pieces of DNA) that facilitate AMR gene spread between bacteria. In this project you will develop new tools based
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generate biologically interpretable models of zoonotic emergence and ultimately aid in developing new tools for human pathogen surveillance. This project offers training in bioinformatics, data science and
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will contribute to a deeper understanding of moral injury as a significant, yet overlooked, risk factor in EDs and support the development of more nuanced, trauma-informed care pathways grounded in
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develop skills highly valued in FemTech and diet and health industries. These studentships are funded through GW4 BioMed3 MRC Doctoral Landscape Programme and consist of UK tuition fees, as well as a
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and machine learning methodology to help deal with key challenges in developing such models in large-scale observational electronic healthcare record data. These models will be applied to important real
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statistical approaches to characterise disease trajectories, develop risk prediction models, and identify factors associated with differential treatment outcomes. The findings will improve understanding of long
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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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disorder with debilitating effects on a patient's quality of life. Because current medications do not work well, we need to study its molecular cause to develop new therapeutics. Recent research identified a