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. The team specializes in multi-sensor methods, tensor decompositions and component analysis for the joint processing of multimodal data, notably in the context of invasive (intracardiac electrograms) and non
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from the team (multi-omics analyses of pediatric arterioles) identified a dysregulated molecular network involving the extracellular matrix and immune signalling, linking matrix remodelling and the Wnt/β
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remodelling events, thereby generating the mechanical forces required for its motility. This motility also relies on the dynamics of adhesion structures to the extracellular matrix. Genetic evidence
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controlling the long-term fate of naturally occurring radionuclides within this matrix remain poorly understood. In particular, the processes responsible for the progressive decrease in their mobility over time
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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