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Pierre Baudot Théorie de l'information - Adaptation - Topologie – Thermodynamique de la perception.
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René Doursat |
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Francesco d'Ovidio |
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Nonequilibrium statistical mechanics ( Active matter, collective motion, flockng, nonequilibrium wetting, directed percolation, long range interactions) - Dynamical system theory ( Lyapunov exponents, Lyapunov vectors, synchronization, stable chaos, spatiotemporal chaos, structural stability, hyperbolicity). |
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Bio-related: Genetic regulation - Cellular organization - DNA/chromatin modeling - -omics (Genomics,Transcriptomics,proteomics,…) - Condensed matter theory - Inference problems in statistical physics - Network analysis (topology, geometry) - Dynamical behaviors of complex systems. Statistical physics: Out-of equilibrium systems - Fluctuation theory - Thermodynamic description of small system and rare events. |
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Taras Kowaliw Evolutionary computation, artificial development, computer vision, visualization and electronic art. |
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Telmo Menezes Complex network analysis and simulation - Social networks - Evolutionary search for multi-agent models, Genetic programming applied to programmable networks - Bio-inspired algorithms. |
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Bivas Mitra Peer-to-Peer networks, Blog networks, Complex networks, Statistical mechanics, Networks modeling, Optical networks, Wireless Internet. |
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Romain Reuillon High performance computing - Grid computing - Scientific workflows - Model exploration - Distributed stochastic simulations - Paralell pseudo-random number generation - Coffee maker. |
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Jean-Baptiste Rouquier Complex networks: communities, structure, dynamics. Links between networks arising in various domains. Large datasets. Cellular automata: as a model of complex systems. Perturbation, asynchronism, robustness. |
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Camilo Melani |
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David Chavalarias |
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Srdjan Ostojic
Neuroscience théoriques - Spiking Neurons - Dynamiques Stochastic-ques.
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Andrea Perna Morphogenesis, Collective behavior, Spatial patterns, Spatial networks. |
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Fernando Peruani Biophysique – Active Matter – Complex Networks. |
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Fabien Tarissan Informatique théorique, méthodes formelles, théorie des langages de programmation. Systèmes complexes, graphes dynamiques, modélisations des systèmes biologiques. Recherche opérationnelle, programmation mathématique, problèmes inverses. |
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