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that enable this pathogen to cause infection, to survive attacks by innate immune cells (macrophages and neutrophils), and to become resistant to antifungal medications. The student will learn and apply various
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systems able to make extremely high time frequency images of roots in situ in the field (https://doi.org/10.1093/jxb/erac427). The entire, multi-person project will interpret the dynamics of root properties
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Ghaiath Hussein (Assistant Professor of Medical Ethics, School of Medicine, secondary supervisor). International protection applicants and beneficiaries are typically seen as victims of persecution or ‘harm
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this project, using extensive primary cell culture, molecular analysis, scRNAseq, non-invasive imaging analysis, along with mechanistic studies using 2D/3D culture models, we will dissect the distinct cellular
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degree (2.1 +/MSc) in mechanical / civil engineering, acoustics, materials, or related; aptitude for experimental measurements and cost-benefit analysis; creativity in sustainable design General
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the piles will be recorded using thermocouples attached to data loggers. A small-scale prototype involving geothermal loops 2 will also be installed within a number of these foundation piles which will be
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knowledge of human brain function and to use this knowledge to help people with psychiatric and neurological disorders. Our research integrates multimodal brain imaging techniques with novel neuromodulation
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that these cells could be deployed to control intracellular S. aureus. The project will employ cutting edge technologies (transcriptomics, in vivo infection models, single cell metabolic analysis) to profile
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critical component analysis, and (iii) development of Automation of ML model and data selection. The applicants should have knowledge of machine learning and optical networks and willing to engage in testbed
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manufacturing using single cell omicsSupervisors: Colin Clarke and Niall BarronAbout the project: The study of cellular biology has been transformed by single cell analysis. Rapid technological advances in areas