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on signals and complex systems. Gipsa-lab develops projects in the strategic fields of energy, the environment, communication, intelligent systems, life and health technologies, and language engineering
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the heterogeneity of responses at the single-cell level and to identify the mechanisms of radiosensitization induced by these nanoparticles. The project falls within the field of quantitative radiobiology
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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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punctual mobilities within the partners of the project consortium. The PhD task will be dedicated to the 3D printing of nano-structured polymer materials by photo-Polymerization Induced Microphase Separation
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investigates behavioural and cognitive processes involved in major mental functions (perception, attention, memory, language and temporality). It explores the neural basis of these functions, as
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scientists across some 40 research teams. The work carried out within the CBI covers a wide range of disciplines, including genetics, microbiology, cell biology, neurobiology and computational biology. The
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of neurosciences, such as the study of subcellular mechanisms underlying interneuron communication, of the organization of neuronal networks and of their role in behavioral responses and neuropsychiatric diseases
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analysis, based on particle-in-cell (PIC) simulations, in order to (1) compare the effect of different types of broadband sources on the growth and saturation of three-wave coupling instabilities (Raman and
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of ideas and behaviors in the Upper Paleolithic. Statistical Network Analysis for the Techno-Stylistic Study of Paleolithic Portable Art During the Magdalenian period (21–14,000 BP), human communities
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employed to simulate irradiation conditions based on the geometry of the irradiation cell currently used in the PhD project of B. Lathuillière (MATICE PhD student, 2024–2027). GEANT4-DNA and GATE