Heterogeneous behavioral adoption in multiplex networks
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Hui Tian | Wei Wang | Xuzhen Zhu | Shimin Cai | Xiaolong Chen | Xiao-long Chen | Hui Tian | Xuzhen Zhu | Wei Wang | Shimin Cai
[1] R. Pastor-Satorras,et al. Generation of uncorrelated random scale-free networks. , 2004, Physical review. E, Statistical, nonlinear, and soft matter physics.
[2] K-I Goh,et al. Threshold cascades with response heterogeneity in multiplex networks. , 2014, Physical review. E, Statistical, nonlinear, and soft matter physics.
[3] Michael Small,et al. Impact of asymptomatic infection on coupled disease-behavior dynamics in complex networks , 2016, 1608.04049.
[4] Damon Centola,et al. The Spread of Behavior in an Online Social Network Experiment , 2010, Science.
[5] Marián Boguñá,et al. Epidemic spreading on interconnected networks , 2012, Physical review. E, Statistical, nonlinear, and soft matter physics.
[6] H. Stanley,et al. Networks formed from interdependent networks , 2011, Nature Physics.
[7] Attila Szolnoki,et al. Evolution of public cooperation on interdependent networks: The impact of biased utility functions , 2012, ArXiv.
[8] Harry Eugene Stanley,et al. Catastrophic cascade of failures in interdependent networks , 2009, Nature.
[9] Yamir Moreno,et al. Effects of Network Structure, Competition and Memory Time on Social Spreading Phenomena , 2015, Physical Review. X.
[10] Ming Tang,et al. Suppression of epidemic spreading in complex networks by local information based behavioral responses , 2014, Chaos.
[11] Tiago P. Peixoto,et al. Disease Localization in Multilayer Networks , 2015, Physical Review. X.
[12] Ming Tang,et al. Epidemic spreading on complex networks with general degree and weight distributions , 2014, Physical review. E, Statistical, nonlinear, and soft matter physics.
[13] Romualdo Pastor-Satorras,et al. Epidemic thresholds of the Susceptible-Infected-Susceptible model on networks: A comparison of numerical and theoretical results , 2012, Physical review. E, Statistical, nonlinear, and soft matter physics.
[14] Matjaz Perc,et al. Evolutionary mixed games in structured populations: Cooperation and the benefits of heterogeneity , 2016, Physical review. E.
[15] Yamir Moreno,et al. Dynamics of interacting diseases , 2014, 1402.4523.
[16] Lin Wang,et al. Degree mixing in multilayer networks impedes the evolution of cooperation , 2014, Physical review. E, Statistical, nonlinear, and soft matter physics.
[17] Lin Wang,et al. Coupled disease–behavior dynamics on complex networks: A review , 2015, Physics of Life Reviews.
[18] Ming Tang,et al. Large epidemic thresholds emerge in heterogeneous networks of heterogeneous nodes , 2015, Scientific Reports.
[19] Alessandro Vespignani,et al. Epidemic spreading in scale-free networks. , 2000, Physical review letters.
[20] Mark Newman,et al. Networks: An Introduction , 2010 .
[21] Harry Eugene Stanley,et al. Epidemics on Interconnected Networks , 2012, Physical review. E, Statistical, nonlinear, and soft matter physics.
[22] Attila Szolnoki,et al. Optimal interdependence between networks for the evolution of cooperation , 2013, Scientific Reports.
[23] Mason A. Porter,et al. Multilayer networks , 2013, J. Complex Networks.
[24] C. Yang,et al. Crossover phenomena of percolation transition in evolution networks with hybrid attachment , 2016, Chaos.
[25] Wei Wang,et al. Complex contagions with social reinforcement from different layers and neighbors , 2018, Physica A: Statistical Mechanics and its Applications.
[26] Sergio Gómez,et al. On the dynamical interplay between awareness and epidemic spreading in multiplex networks , 2013, Physical review letters.
[27] Ming Tang,et al. Preferential imitation can invalidate targeted subsidy policies on seasonal-influenza diseases , 2017, Appl. Math. Comput..
[28] Albert-László Barabási,et al. Error and attack tolerance of complex networks , 2000, Nature.
[29] Z. Wang,et al. The structure and dynamics of multilayer networks , 2014, Physics Reports.
[30] Lin Wang,et al. Characterizing the dynamics underlying global spread of epidemics , 2018, Nature Communications.
[31] Virgil D. Gligor,et al. Analysis of complex contagions in random multiplex networks , 2012, Physical review. E, Statistical, nonlinear, and soft matter physics.
[32] Wei Wang,et al. Social contagions with heterogeneous credibility , 2018, Physica A: Statistical Mechanics and its Applications.
[33] Damon Centola. How Behavior Spreads: The Science of Complex Contagions , 2018, Science.
[34] Y. Moreno,et al. Diffusion Dynamics and Optimal Coupling in Directed Multiplex Networks , 2017, 1708.01951.
[35] Zonghua Liu,et al. Explosive synchronization in adaptive and multilayer networks. , 2014, Physical review letters.
[36] Kwang-Il Goh,et al. Impact of the Topology of Global Macroeconomic Network on the Spreading of Economic Crises , 2011, PloS one.
[37] Hai-Feng Zhang,et al. Effects of awareness diffusion and self-initiated awareness behavior on epidemic spreading - An approach based on multiplex networks , 2015, Communications in Nonlinear Science and Numerical Simulation.
[38] Matjaz Perc,et al. Does strong heterogeneity promote cooperation by group interactions? , 2011, ArXiv.
[39] Marta C. González,et al. Understanding individual human mobility patterns , 2008, Nature.
[40] Dror Y. Kenett,et al. Networks of networks – An introduction , 2015 .
[41] Zhuxi Zhang,et al. Heterogeneous investments promote cooperation in evolutionary public goods games , 2018, Physica A: Statistical Mechanics and its Applications.
[42] Piet Van Mieghem,et al. Epidemic processes in complex networks , 2014, ArXiv.
[43] Lin Wang,et al. Evolutionary games on multilayer networks: a colloquium , 2015, The European Physical Journal B.
[44] Yamir Moreno,et al. Fundamentals of spreading processes in single and multilayer complex networks , 2018, Physics Reports.
[45] Wei Wang,et al. Unification of theoretical approaches for epidemic spreading on complex networks , 2016, Reports on progress in physics. Physical Society.
[46] J. A. Almendral,et al. Explosive transitions in complex networks’ structure and dynamics: Percolation and synchronization , 2016, 1610.01361.
[47] Philippa Pattison,et al. Manufacturing Relations: An Empirical Study of the Organization of Production Across Multiple Networks , 2006, Organ. Sci..
[48] James P. Gleeson,et al. Examples of Dynamical Systems , 2016 .
[49] Shlomo Havlin,et al. Eradicating catastrophic collapse in interdependent networks via reinforced nodes , 2016, Proceedings of the National Academy of Sciences.
[50] Attila Szolnoki,et al. Interdependent network reciprocity in evolutionary games , 2013, Scientific Reports.
[51] Brian Karrer,et al. Message passing approach for general epidemic models. , 2010, Physical review. E, Statistical, nonlinear, and soft matter physics.
[52] K-I Goh,et al. Multiplexity-facilitated cascades in networks. , 2012, Physical review. E, Statistical, nonlinear, and soft matter physics.
[53] Chen Zhao,et al. Analysis of the Chinese Airline Network as multi-layer networks , 2016 .
[54] Ming Tang,et al. Asymmetrically interacting spreading dynamics on complex layered networks , 2014, Scientific Reports.
[55] Ming Tang,et al. Dynamics of social contagions with memory of non-redundant information , 2015, Physical review. E, Statistical, nonlinear, and soft matter physics.
[56] Y. Moreno,et al. Diffusion Dynamics and Optimal Coupling in Multiplex Networks with Directed Layers , 2018, Physical Review X.
[57] Patrick Thiran,et al. Layered complex networks. , 2006, Physical review letters.