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articles * Presenting results at conferences or seminars References: (1) Henningsson, A. et al. Microstructure and stress mapping in 3D at industrially relevant degrees of plastic deformation. Sci. Reports
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Inria, the French national research institute for the digital sciences | Villeneuve la Garenne, le de France | France | 11 days ago
to assess, the testing probe, and the surrounding medium) with distinct electromagnetic properties. We are interested in the modeling of 3D defects, which may either consist in (i) a local, brutal variation
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modeling (Strasbourg) investing the role of sensorimotor beta bursts in predictive processing: align protocols, metadata, and analysis plans; contribute to cross‑species comparative work. * Advance and
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porous media (imbibition, wetting, flow, etc.). The approach will be essentially experimental, combining model debinding tests on various specimens with characterizations. • Determine the main mechanisms
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BioEngineering Experience with fluidics devices, 3D printed devices, 3D cell culture models and bioinformatics/computational biology (e.g., R, Python) is an asset Team player Proficient knowledge in English is
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, French Guiana. - Geophysical data analyses to provide conductivity 3D maps and 2D profiles - Calibration of petrophysical relationships using data from in situ water content probes on the one hand, and
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for biomarkers in 7T images. - Development of artificial intelligence algorithms and models for the processing and analysis of MRI images/spectra, focusing on the detection of tumor tissue and the quantification
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biomaterial sciences (biomimicry, hydrogels, 3D bioprinting...), skeletal physiopathology (developmental diseases, osteoarthritis, age-associated diseases...), developmental biology (cell fate and tissue
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Preferably, prior professional experience as a Postdoctoral Researcher Proficiency in cell culture techniques, ideally including 3D cell culture models (e.g., organoids, spheroids) Experience working with
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Hospital Center of Montpellier, INSERM, and University of Montpellier. CARTIGEN platform specializes in motion modeling, 3D printing, and regenerative medicine approaches. The OsteoStart platform develops