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participate in a project aimed at understanding the molecular and cellular mechanisms that control the generation of muscle diversity during development. The project will combine approaches in developmental
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will be assigned to the Institute of Integrative Cell Biology (I2BC) on the CNRS campus in Gif-sur-Yvette. The I2BC is a joint research unit of the CNRS (UMR 9198), the CEA, and Paris-Saclay University
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forces, cell adhesion, and signaling. While the mechanisms of actomyosin contractility have been extensively studied, the role of membrane fluxes (endocytosis, recycling, and exocytosis) in tissue
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-dimensional effects on electrostatic instabilities in Hall thrusters. I. Insights from particle-in-cell simulations and two-point power spectral density reconstruction techniques', Phys. Plasmas, vol. 30, no. 1
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analyses from various 2D/3D cell models. He/She will produce and characterise peptides derived from the extracellular matrix. He/She will analyse the results and contribute to their application. He/she will
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dedicated computing resources (3D visualization workstations, GPU servers). The research will be conducted in close collaboration with Philippe Nghe's team (Laboratory of Structural Cell Biology at École
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of biophysics, non-equilibrium statistical physics, and cancer biology. Its objective is to understand how stochastic fluctuations and cell-cell interactions combine to drive the spontaneous emergence
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, biochemistry and cell biology. The agent will conduct experimental biology activities, including cell biology experiments, biochemical assays, and biochemical and molecular biology techniques. They will analyze
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engineering of controlled cellular microenvironments. The PhD will be conducted in a highly interdisciplinary environment at the interface of soft matter science, biomaterials engineering, microfabrication
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natural environments. It fits with Sustainable Transitions axe of the TIRIS program (https://anr.fr/ProjetIA-22-EXES-0015 ), addressing challenges related to energy transition, resource conservation and