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Towards a mathematical theory of complex socio-economical systems by functional subsystems representation
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3
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36048964200
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Complex multicellular systems and immune competition: New paradigms looking for a mathematical theory
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From methods of the mathematical kinetic theory for active particles to modelling virus mutations
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M. Delitala, Pucci, and C. Salvatori From methods of the mathematical kinetic theory for active particles to modelling virus mutations Math. Models Methods Appl. Sci. 21 2011 843 870
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Mathematical modelling for keloid formation triggered by virus: Malignant effects and immune system competition
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C. Bianca Mathematical modelling for keloid formation triggered by virus: malignant effects and immune system competition Math. Models Methods Appl. Sci. 21 2011 389 419
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6
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79952186660
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Toward a mathematical theory of living systems focusing on developmental biology and evolution: A review and perspectives
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N. Bellomo, and B. Carbonaro Toward a mathematical theory of living systems focusing on developmental biology and evolution: a review and perspectives Phys. Life Rev. 8 2011 1 18
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Phys. Life Rev.
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Bellomo, N.1
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7
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44349090310
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On the existence of limit cycles in opinion formation processes under time periodic influence of persuaders
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79955521845
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Individually-based Markov processes modeling nonlinear systems in mathematical biology
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M. Lachowicz Individually-based Markov processes modeling nonlinear systems in mathematical biology Nonlinear Anal. Real World Appl. 12 2011 2396 2407
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On the initial value problem of a class of models of the kinetic theory for active particles
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77955917869
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Modeling the hidinglearning dynamics in large living systems
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N. Bellomo Modeling the hidinglearning dynamics in large living systems Appl. Math. Lett. 23 2010 907 911
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On the modeling of nonlinear interactions in large complex systems
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N. Bellomo, C. Bianca, and M.S. Mongiovi On the modeling of nonlinear interactions in large complex systems Appl. Math. Lett. 23 2010 1372 1377
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12
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0003054549
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Solution of a new class of nonlinear kinetic models of population dynamics
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L. Arlotti, and N. Bellomo Solution of a new class of nonlinear kinetic models of population dynamics Appl. Math. Lett. 9 1996 65 70
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Arlotti, L.1
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13
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0001794315
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Bifurcation analysis for a nonlinear system of integro-differential equations modelling tumorimmune cells competition
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N. Bellomo, B. Firmani, and L. Guerri Bifurcation analysis for a nonlinear system of integro-differential equations modelling tumorimmune cells competition Appl. Math. Lett. 12 1999 39 44
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Bellomo, N.1
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16
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39549102191
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Interaction ruling animal collective behaviour depends on topological rather than metric distance: Evidence from a field study
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M. Ballerini, N. Cabibbo, R. Candelier, A. Cavagna, E. Cisbani, I. Giardina, V. Lecomte, A. Orlandi, G. Parisi, A. Procaccini, M. Viale, and V. Zdravkovic Interaction ruling animal collective behaviour depends on topological rather than metric distance: evidence from a field study Proc. Nat. Academy Sciences 105 2008 1232 1237
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17
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77957174152
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From empirical to inter-individual interactions unveiling the rules of collective animal behavior
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A. Cavagna, A. Cimarelli, I. Giardina, G. Parisi, R. Santagati, F. Stefanini, and R. Tavarone From empirical to inter-individual interactions unveiling the rules of collective animal behavior Math. Models Methods Appl. Sci. 20 2010 1491 1510
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18
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79959787582
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On the modeling of collective learning dynamics
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S. De Lillo, and N. Bellomo On the modeling of collective learning dynamics Appl. Math. Lett. 24 2011 1861 1866
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Multiscale flow simulations using particles
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Cluster formation in opinion dynamics: A qualitative analysis
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On a class of dynamical systems with emerging cluster structure
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M.L. Bertotti On a class of dynamical systems with emerging cluster structure J. Differential Equations 249 2010 2757 2770
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Bertotti, M.L.1
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77954174968
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Multiscale biological tissue models and flux-limited chemotaxis from binary mixtures of multicellular growing systems
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N. Bellomo, A. Bellouquid, J. Nieto, and J. Soler Multiscale biological tissue models and flux-limited chemotaxis from binary mixtures of multicellular growing systems Math. Models Methods Appl. Sci. 20 2010 1179 1207
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From kinetic models of multicellular growing systems to macroscopic biological tissue models
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