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the REFFRACTEUR European Doctoral Network. The 36-month doctoral programme will be organised as follows: Months 1–9 (9 months): the doctoral candidate will work primarily at the IMERYS research site in Lyon, France
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this thesis is part of the European doctoral network REFFACTEUR, the 36-month period will be divided as follows: - Months 1 to 9 (9 months): the PhD student will first work mainly in Saint-Aulaye
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for Systems Analysis and Architecture (LAAS) within the MechaBioFluidics team, which has extensive expertise in microfluidics and microfabrication (a technology platform of the national ReNaTech network), in
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built by sea urchins, called stereom, is an impressive example of complexity and self-organization. This structure is a micro-porous meshwork made of calcite, which bears a particular saddle-shape
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, and the formation of a perfusable endothelial network. The central hypothesis is that the physical properties of the extracellular matrix—including stiffness, porosity, architecture, molecular transport
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activate spinal networks. This PhD project aims to investigate the underlying mechanisms of rSynES-induced recovery using a mouse model of cervical SCI, through longitudinal assessment of molecular and
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this PhD project is part of the REFFRACTEUR European Doctoral Network, the 36-month doctoral programme will be organised as follows: Months 1–9 (9 months): the doctoral candidate will work at SAFRAN's
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, network-based analysis, unsupervised learning and interpretable AI. The project leaves room for methodological exploration while remaining closely connected to biological interpretation, experimental
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Analysis and Architecture (LAAS) within the MechaBioFluidics team, which has extensive expertise in microfluidics and microfabrication (a technology platform of the national ReNaTech network), both located
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structure and hydrogen migration pathways. Integrated Approach and Modeling Framework The project is based on a multiscale observation strategy that combines dense nodal seismic networks, distributed acoustic