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transmitters, DPD algorithms, and analog/mixed-signal challenges. For more details about the DISRUPT project, please visit: https://elca.tudelft.nl/Research/project.php?id=243 https://www.linkedin.com/posts/tu
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Curie PhD network centred on mechanobiology, i.e. the study of how physical forces and mechanical cues shape cell physiology. Evidence indicates that key mechanisms of neurodegeneration and cancer
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, you will generate and study human induced pluripotent stem cell (hiPSC)-derived cardiomyocytes and engineered cardiac tissues (ECTs). You will develop patient-specific cardiac models to identify
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nanoparticles, cell survival and radioresistance. The MS-RADAM research programme combines state-of-the-artc omputational multiscale modelling (using DFT/TDDFT methods, collision theory, molecular dynamics
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of equipment – which of course includes AI. Meanwhile we are pushing the limits of applied mathematics, for example mapping out disease processes using single cell data, and using mathematics to simulate
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genetics projects. Your first project will involve investigating the molecular mechanisms underlying the cell type specificity of Charcot-Marie-Tooth (CMT) disease caused by mutations in tRNA synthetases
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of roots, nodules, and tubers, using reference genotypes and by manipulating abiotic factors (e.g. temperature, water, N). You will conduct molecular and cellular analyses using histology, microscopy, single
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Breeding (WU-PBR) with collaboration from Maastricht University chair of Plant Functional Genomics (UM-PFG), Wageningen Plant Research (WPR), and the Wageningen University Laboratory of Cell and
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: principal investigator dr. Lennart de Nooijer) at the Royal Netherlands Institute of Sea Research (NIOZ) is looking for a highly motivated PhD student with a background in cell biology/ (bio)geochemistry
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. The project aims to (1) differentiate the mechanical response of the head and brain between focal and diffuse loads, (2) determine the molecular and cellular changes in animal models of rTBI and how rTBI