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approach combines deep phenotyping approach and multimodal imaging in the EXPLORE task5. We collected data from 16 participants who participated in one behavioral session, two 7T fMRI sessions, and two MEG
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-phenotyping of individuals with autism and controls including brain imaging (EEG and MRI) and a battery of cognitive tests. Our group is currently developing new methods for analyzing whole genome and brain
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following expertise: Early fly and mouse development Quantitative imaging and image analysis Statistical physics and data analysis Microscope design and control Genomic and genetic tool design Candidates
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operation. A prototype at ENSICAEN demonstrated feasibility, achieving a stable 800 °C with under 200 W. Building on this proof of concept, the project proposes a research program to confirm the potential
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perturbations), pharmacological interventions (senolytics and senomorphics), and organoid systems with functional assays, flow cytometry, advanced imaging, and high-dimensional approaches, including single-cell
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expected to be incremental. This calls for a completely different paradigm for accurately simulating turbulent flows at extreme Reynolds numbers – either using classical hardware or upcoming quantum