Epidemic outbreaks in complex heterogeneous networks

被引:928
|
作者
Moreno, Y
Pastor-Satorras, R
Vespignani, A
机构
[1] Abdus Salam Ctr Theoret Phys, I-34100 Trieste, Italy
[2] Univ Politecn Cataluna, Dept Fis & Engn Nucl, ES-08034 Barcelona, Spain
来源
EUROPEAN PHYSICAL JOURNAL B | 2002年 / 26卷 / 04期
关键词
D O I
10.1140/epjb/e20020122
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
We present a detailed analytical and numerical study for the spreading of infections with acquired immunity in complex population networks. We show that the large connectivity fluctuations usually found in these networks strengthen considerably the incidence of epidemic outbreaks. Scale-free networks, which are characterized by diverging connectivity fluctuations in the limit of a very large number of nodes, exhibit the lack of an epidemic threshold and always show a finite fraction of infected individuals. This particular weakness, observed also in models without immunity, defines a new epidemiological framework characterized by a highly heterogeneous response of the system to the introduction of infected individuals with different connectivity. The understanding of epidemics in complex networks might deliver new insights in the spread of information and diseases in biological and technological networks that often appear to be characterized by complex heterogeneous architectures.
引用
收藏
页码:521 / 529
页数:9
相关论文
共 50 条
  • [11] Impact of heterogeneous distribution of immunization probability on recurrent epidemic outbreaks
    Chen, Dan-Dan
    Lao, Jia-Sheng
    Gao, Ning-Ning
    Zhao, Ming
    [J]. INTERNATIONAL JOURNAL OF MODERN PHYSICS C, 2019, 30 (11):
  • [12] HETEROGENEOUS POPULATION DYNAMICS AND SCALING LAWS NEAR EPIDEMIC OUTBREAKS
    Widder, Andreas
    Kuehn, Christian
    [J]. MATHEMATICAL BIOSCIENCES AND ENGINEERING, 2016, 13 (05) : 1093 - 1118
  • [13] Nonperturbative heterogeneous mean-field approach to epidemic spreading in complex networks
    Gomez, Sergio
    Gomez-Gardenes, Jesus
    Moreno, Yamir
    Arenas, Alex
    [J]. PHYSICAL REVIEW E, 2011, 84 (03):
  • [14] Spreading dynamics and global stability of a generalized epidemic model on complex heterogeneous networks
    Zhu, Guanghu
    Fu, Xinchu
    Chen, Guanrong
    [J]. APPLIED MATHEMATICAL MODELLING, 2012, 36 (12) : 5808 - 5817
  • [15] Identifying epidemic threshold by temporal profile of outbreaks on networks
    Xu, Yizhan
    Tang, Ming
    Liu, Ying
    Zou, Yong
    Liu, Zonghua
    [J]. CHAOS, 2019, 29 (10)
  • [16] Can the Content of Social Networks Explain Epidemic Outbreaks?
    Maia, Alexandre Gori
    Martinez, Jose Daniel Morales
    Marteleto, Leticia Junqueira
    Rodrigues, Cristina Guimaraes
    Sereno, Luiz Gustavo
    [J]. POPULATION RESEARCH AND POLICY REVIEW, 2023, 42 (01)
  • [17] Towards Exploiting Social Networks for Detecting Epidemic Outbreaks
    Di Martino S.
    Romano S.
    Bertolotto M.
    Kanhabua N.
    Mazzeo A.
    Nejdl W.
    [J]. Global Journal of Flexible Systems Management, 2017, 18 (1) : 61 - 71
  • [18] Epidemic outbreaks in two-scale community networks
    Bonaccorsi, Stefano
    Ottaviano, Stefania
    De Pellegrini, Francesco
    Socievole, Annalisa
    Van Mieghem, Piet
    [J]. PHYSICAL REVIEW E, 2014, 90 (01):
  • [19] Challenges in Detecting Epidemic Outbreaks from Social Networks
    Romano, Sara
    Di Martino, Sergio
    Kanhabua, Nattiya
    Mazzeo, Antonino
    Nejdl, Wolfgang
    [J]. IEEE 30TH INTERNATIONAL CONFERENCE ON ADVANCED INFORMATION NETWORKING AND APPLICATIONS WORKSHOPS (WAINA 2016), 2016, : 69 - 74
  • [20] Can the Content of Social Networks Explain Epidemic Outbreaks?
    Alexandre Gori Maia
    Jose Daniel Morales Martinez
    Leticia Junqueira Marteleto
    Cristina Guimaraes Rodrigues
    Luiz Gustavo Sereno
    [J]. Population Research and Policy Review, 2023, 42