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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Oldenburg Oldenburg, Niedersachsen | Germany | 11 days ago
mechanisms that sustain or destabilize these interactions remain poorly understood. In PhagoPhoRe, we combine cutting-edge approaches in physiology, molecular biology, imaging, and multi-omics to investigate
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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Oldenburg Oldenburg, Niedersachsen | Germany | 11 days ago
nutrient cycles, yet the mechanisms that sustain or destabilize these interactions remain poorly understood. In PhagoPhoRe, we combine cutting-edge approaches in physiology, molecular biology, imaging, and
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AI design of ultrathin lenses for compact imaging devices The Faculty of Engineering at the University of Nottingham is seeking an enthusiastic, self-motivated student who enjoys working as part of
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AI design of ultrathin lenses for compact imaging devices The Faculty of Engineering at the University of Nottingham is seeking an enthusiastic, self-motivated student who enjoys working as part of
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quality that is not visible in blood or clinical characteristics. By combining the results of AI-driven image analysis of histological samples conducted in this PhD project with biomarker data and outcome
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equipment, particularly in imaging and electron microscopy, image analysis, and bioinformatics. The team is composed of five people. The thesis will be carried out as part of a collaborative ANR project
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on fluorescence lifetime imaging (FLIM). Other advanced microscopy techniques such as single-particle tracking may also be applied. The project is to be carried out at the Madrid Institute for Advanced Studies in
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to neurodegenerative disorders. Your PhD project specifically will focus on developing and applying a versatile high-throughput fluorescence imaging platform. In this function you will: optically design a microscope
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- 4.0 °C. Use the results to from (3) to form prototype estimates of the buffer pool sizes required to insure against future fire risk in carbon projects, tailored to regions. Person specification We
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Participating in developing a novel imaging technique, low-energy electron holography, which will be applied for atomic-resolution imaging of 2D crystals, such as graphene, and nanocrystalline samples such as