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Field
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research projects focused on cellular immunology and host responses to infection. · Develop and optimize advanced mammalian cell culture systems, including complex 2D and 3D cellular models. · Perform
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PhD in Advanced Testing, Modelling, and Simulation of Composite Materials under High Velocity Impact
impacts. The candidate will develop and validate computational models capable of predicting penetration, damage evolution, and energy absorption, while exploring novel lightweight material configurations
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or energy-efficient mission execution. Similarly, advanced control algorithms depend on reliable sensor integration and accurate dynamic models of the vehicle and propulsion system. The PhD project will
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. Extensive experience with mouse models is desirable, including preparation of pre-operative brain tumor cell suspensions, stereotactic orthotopic xenograft implantation of brain tumors in mice, and use
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collaborative research projects focused on cellular immunology and host responses to infection. · Develop and optimize advanced mammalian cell culture systems, including complex 2D and 3D cellular models
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of novel CAR-T cell therapies targeting pediatric central nervous system tumors, with a specific focus on rhabdoid tumors (AT/RT). The candidate will work under close supervision within a multidisciplinary
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suboptimal thermal performance and energy inefficiencies. This programme focuses on the development of multiscale models that will improve our understanding of how microstructural changes in materials and
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conditions, by bridging disciplines, from artificial intelligence, microelectronics, neuroengineering and nanoscience, to single-cell, imaging and molecular analysis, functional genomics and cell biology in
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cohort of patients with MASLD. Investigate MNP toxicity, accumulation and clearance using patient-derived organoid models. Develop and validate the first tissue-based biological reference materials for MNP
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therapeutic targets and strategies to improve clinical outcomes. The successful candidate will develop skills in 3D cell culture models, multi-omics and more. We are seeking a highly motivated candidate with a