Optimizing Hybrid Spreading in Metapopulations
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Ingemar J. Cox | Shi Zhou | Benjamin M. Chain | Changwang Zhang | I. Cox | B. Chain | Changwang Zhang | Shi Zhou
[1] Shi Zhou,et al. Hybrid Epidemics—A Case Study on Computer Worm Conficker , 2014, PloS one.
[2] Shi Zhou,et al. Hybrid spreading of the Internet worm Conficker , 2014, ArXiv.
[3] Joel C. Miller,et al. Epidemics on Networks with Large Initial Conditions or Changing Structure , 2012, PloS one.
[4] V. Colizza,et al. Metapopulation epidemic models with heterogeneous mixing and travel behaviour , 2014, Theoretical Biology and Medical Modelling.
[5] Yi Wang,et al. Global analysis of multiple routes of disease transmission on heterogeneous networks , 2013 .
[6] Romualdo Pastor-Satorras,et al. Effects of local population structure in a reaction-diffusion model of a contact process on metapopulation networks. , 2013, Physical review. E, Statistical, nonlinear, and soft matter physics.
[7] Jie Chang,et al. The Role of Community Mixing Styles in Shaping Epidemic Behaviors in Weighted Networks , 2013, PloS one.
[8] Junling Ma,et al. Effective degree household network disease model , 2013, Journal of mathematical biology.
[9] Guofei Gu,et al. A Large-Scale Empirical Study of Conficker , 2012, IEEE Transactions on Information Forensics and Security.
[10] Frank Ball,et al. An Sir Epidemic Model on a Population with Random Network and Household Structure, and Several Types of Individuals , 2012, Advances in Applied Probability.
[11] Thomas House,et al. Modelling epidemics on networks , 2011, 1111.4875.
[12] Ernesto Estrada,et al. Epidemic spreading in networks with nonrandom long-range interactions. , 2011, Physical review. E, Statistical, nonlinear, and soft matter physics.
[13] Joel C Miller,et al. Edge-based compartmental modelling for infectious disease spread , 2011, Journal of The Royal Society Interface.
[14] Joel C. Miller,et al. Supplementary Text S1 , 2014 .
[15] Claudio Castellano,et al. Thresholds for epidemic spreading in networks , 2010, Physical review letters.
[16] Mark Newman,et al. Networks: An Introduction , 2010 .
[17] L. Danon,et al. Individual identity and movement networks for disease metapopulations , 2010, Proceedings of the National Academy of Sciences.
[18] M. Keeling,et al. Impact of spatial clustering on disease transmission and optimal control , 2009, Proceedings of the National Academy of Sciences.
[19] Joel C. Miller. Spread of infectious disease through clustered populations , 2008, Journal of The Royal Society Interface.
[20] M. Keeling,et al. Deterministic epidemic models with explicit household structure. , 2008, Mathematical biosciences.
[21] Joel C. Miller. Bounding the Size and Probability of Epidemics on Networks , 2008, Journal of Applied Probability.
[22] Frank Ball,et al. Network epidemic models with two levels of mixing. , 2008, Mathematical biosciences.
[23] Alessandro Vespignani,et al. Invasion threshold in heterogeneous metapopulation networks. , 2007, Physical review letters.
[24] Joel C. Miller,et al. Epidemic size and probability in populations with heterogeneous infectivity and susceptibility. , 2007, Physical review. E, Statistical, nonlinear, and soft matter physics.
[25] J. Robins,et al. Second look at the spread of epidemics on networks. , 2006, Physical review. E, Statistical, nonlinear, and soft matter physics.
[26] Alexei Vazquez,et al. Epidemic outbreaks on structured populations. , 2006, Journal of theoretical biology.
[27] Rowland R Kao,et al. The effect of contact heterogeneity and multiple routes of transmission on final epidemic size. , 2006, Mathematical biosciences.
[28] Donald F. Towsley,et al. On the performance of Internet worm scanning strategies , 2006, Perform. Evaluation.
[29] Alan M. Frieze,et al. Random graphs , 2006, SODA '06.
[30] M. Hastings. Systematic series expansions for processes on networks. , 2005, Physical review letters.
[31] M. Keeling,et al. Networks and epidemic models , 2005, Journal of The Royal Society Interface.
[32] D. Watts,et al. Multiscale, resurgent epidemics in a hierarchical metapopulation model. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[33] R. Pastor-Satorras,et al. Generation of uncorrelated random scale-free networks. , 2004, Physical review. E, Statistical, nonlinear, and soft matter physics.
[34] David Moore,et al. Code-Red: a case study on the spread and victims of an internet worm , 2002, IMW '02.
[35] M. Newman. Spread of epidemic disease on networks. , 2002, Physical review. E, Statistical, nonlinear, and soft matter physics.
[36] Alessandro Vespignani,et al. Epidemic spreading in scale-free networks. , 2000, Physical review letters.
[37] M. Newman,et al. Random graphs with arbitrary degree distributions and their applications. , 2000, Physical review. E, Statistical, nonlinear, and soft matter physics.
[38] Herbert W. Hethcote,et al. The Mathematics of Infectious Diseases , 2000, SIAM Rev..
[39] F. Ball,et al. Epidemics with two levels of mixing , 1997 .
[40] Roy M. Anderson,et al. Discussion: The Kermack-McKendrick epidemic threshold theorem , 1991, Bulletin of mathematical biology.
[41] L. Morris,et al. Epidemiology of variola minor in Brazil based on a study of 33 outbreaks. , 1972, Bulletin of the World Health Organization.