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measurement techniques such as Particle Image Velocimetry, InfraRed Thermography and Background Oriented Schlieren for the study of critical aerodynamic phenomena such as flow separation, transition
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unprecedented precision. - Procedures on rodents, such as: stereotactic brain surgery, cochlear injections, tissue sampling, tagging, etc. - Immunohistochemistry - Confocal imaging - Image analysis and 3D
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), Shom (Service of Hydrography and Oceanography of the French Navy), and CNRS-LMA. The project is running until the end of December 2028. The goal of the proposed work is to perform 3D numerical modeling
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imaging in 2D or 3D cell culture models; electrophysiology and 3D neuronal culture. Experience in data analysis and/or statistical methods is helpful. Equipment Utilized Biosafety cabinets, liquid nitrogen
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strands. • Bespoke modelling of tumour metabolic function using 3D and 4D imaging data • Cancer patient risk prediction using machine learning (with experience in particular in radiomics and transcriptomics
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Molecular Physiology is an open, collaborative, and stimulating research environment with broad expertise including cellular biophysics, specialized imaging, computational modeling, aging, and proteomics
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-based composites using melt electrowriting printing, support for PhD students working with 3D extrusion-based and 3D liquid-in-liquid printing, testing of MOFs for dissolved CO2 capture, investigation
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deliver a prototype of a 3D-printed or casted bioactive stent with proven tissue compatibility and mechanical stability, paving the way for improved cardiovascular implants. The Opus LAP project includes
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of world-renowned researchers and educators have access to a state-of-the art core facilities and expertise, including for high-throughput screening, multimodality in vivo imaging, proteomics, integrative
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spatial resolution and implement quantitative phase imaging to enable 3D imaging and calibration-free mass concentration mapping. The fellowship holder will then have the opportunity to investigate