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Community Size Effects on Epidemic Spreading in Multiplex Social Networks

机译:社区规模对多重社交网络中流行病传播的影响

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摘要

The dynamical process of epidemic spreading has drawn much attention of the complex network community. In the network paradigm, diseases spread from one person to another through the social ties amongst the population. There are a variety of factors that govern the processes of disease spreading on the networks. A common but not negligible factor is people’s reaction to the outbreak of epidemics. Such reaction can be related information dissemination or self-protection. In this work, we explore the interactions between disease spreading and population response in terms of information diffusion and individuals’ alertness. We model the system by mapping multiplex networks into two-layer networks and incorporating individuals’ risk awareness, on the assumption that their response to the disease spreading depends on the size of the community they belong to. By comparing the final incidence of diseases in multiplex networks, we find that there is considerable mitigation of diseases spreading for full phase of spreading speed when individuals’ protection responses are introduced. Interestingly, the degree of community overlap between the two layers is found to be critical factor that affects the final incidence. We also analyze the consequences of the epidemic incidence in communities with different sizes and the impacts of community overlap between two layers. Specifically, as the diseases information makes individuals alert and take measures to prevent the diseases, the effective protection is more striking in small community. These phenomena can be explained by the multiplexity of the networked system and the competition between two spreading processes.
机译:流行病传播的动态过程引起了复杂网络社区的广泛关注。在网络范式中,疾病通过人口之间的社会纽带从一个人传播到另一个人。有多种因素可控制网络上疾病的传播过程。一个普遍但不可忽略的因素是人们对流行病爆发的反应。这种反应可以是相关的信息传播或自我保护。在这项工作中,我们从信息传播和个人机敏性的角度探讨疾病传播与人口反应之间的相互作用。我们通过将多重网络映射到两层网络并结合个人的风险意识来对系统进行建模,假设他们对疾病传播的反应取决于他们所属社区的规模。通过比较多重网络中疾病的最终发病率,我们发现,引入个人的保护响应后,对于疾病的传播,传播速度的整个阶段都有相当大的缓解。有趣的是,发现两层之间的群落重叠程度是影响最终发病率的关键因素。我们还分析了不同规模社区中流行病的后果以及社区在两层之间重叠的影响。具体而言,由于疾病信息使个人提高警惕并采取措施预防疾病,因此在小社区中,有效的保护措施更加引人注目。这些现象可以通过网络系统的多重性和两个扩展过程之间的竞争来解释。

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  • 期刊名称 other
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  • 年(卷),期 -1(11),3
  • 年度 -1
  • 页码 e0152021
  • 总页数 16
  • 原文格式 PDF
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