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-content imaging, and computational modelling, we will systematically compare how 320 small molecules reshape metabolism in both 2D and 3D environments. The resulting dataset will reveal which drug-induced
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pour l'imagerie, le suivi de particules et des approches inspirées par la quantum imaging. La thèse visera à : - Développer une nouvelle génération de microscopes TimeLoc pour la localisation 3D à haute
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dimensionality enhancement. The project focuses on musculoskeletal (MSK) imaging of the lower limbs, with the aim of bridging the gap between research imaging (e.g. 3D/4D CT, fluoroscopy) and routine clinical
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imaging configurations that minimize acquisition time and maximize measurement quality, (b) estimating measurement uncertainty due to camera defects, (c) accelerating 3D tomographic reconstruction from
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imaging techniques. We offer a 3-year initial contract with the possibility of a 3-year extension with a salary at the TV-L E14 level. Details at https://www.uni-kiel.de/personal/de/stellen/extern/wiss
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measurements: transepithelial resistance, muscle contraction Inflammation level measurements: RT-qPCR, ELISA, bioplex Immunocytochemistry, imaging and 3D reconstruction Flow cyrtometry Single-cell transcriptomic
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Inria, the French national research institute for the digital sciences | Villers les Nancy, Lorraine | France | about 16 hours ago
of the proposed research subject : A state of the art, bibliography and scientific references are available at the following URL: https://vincentgaudilliere.github.io/files
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implementation of elastomer adhesives Optimization of formulation for 3D printing and 2D printing Contribute to ongoing ionic liquid formation projects Design and prototype and scalable processing Collaborate with
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critical insights into the sex differences in ageing of blood vessels in bone and its functional consequences. We have developed numerous methods, including advanced 3D imaging, cell-specific inducible mouse