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适应性活动驱动网络中疫情传播的主动和被动隔离

Active and inactive quarantine in epidemic spreading on adaptive activity-driven networks.

作者信息

Mancastroppa Marco, Burioni Raffaella, Colizza Vittoria, Vezzani Alessandro

机构信息

Dipartimento di Scienze Matematiche, Fisiche e Informatiche, Università degli Studi di Parma, Parco Area delle Scienze, 7/A 43124 Parma, Italy.

INFN-Istituto Nazionale di Fisica Nucleare, Gruppo Collegato di Parma, Parco Area delle Scienze 7/A, 43124 Parma, Italy.

出版信息

Phys Rev E. 2020 Aug;102(2-1):020301. doi: 10.1103/PhysRevE.102.020301.

Abstract

We consider an epidemic process on adaptive activity-driven temporal networks, with adaptive behavior modeled as a change in activity and attractiveness due to infection. By using a mean-field approach, we derive an analytical estimate of the epidemic threshold for susceptible-infected-susceptible (SIS) and susceptible-infected-recovered (SIR) epidemic models for a general adaptive strategy, which strongly depends on the correlations between activity and attractiveness in the susceptible and infected states. We focus on strong social distancing, implementing two types of quarantine inspired by recent real case studies: an active quarantine, in which the population compensates the loss of links rewiring the ineffective connections towards nonquarantining nodes, and an inactive quarantine, in which the links with quarantined nodes are not rewired. Both strategies feature the same epidemic threshold but they strongly differ in the dynamics of the active phase. We show that the active quarantine is extremely less effective in reducing the impact of the epidemic in the active phase compared to the inactive one and that in the SIR model a late adoption of measures requires inactive quarantine to reach containment.

摘要

我们考虑自适应活动驱动的时间网络上的流行病传播过程,其中自适应行为被建模为由于感染导致的活动和吸引力的变化。通过使用平均场方法,我们针对一般自适应策略推导了易感-感染-易感(SIS)和易感-感染-恢复(SIR)流行病模型的流行阈值的解析估计,该阈值强烈依赖于易感和感染状态下活动与吸引力之间的相关性。我们关注严格的社交距离措施,借鉴近期实际案例研究实施两种类型的隔离:主动隔离,即人群通过将无效连接重新布线到未隔离节点来补偿连接损失;被动隔离,即与隔离节点的连接不进行重新布线。两种策略具有相同的流行阈值,但它们在活跃期的动态变化上有很大差异。我们表明,与被动隔离相比,主动隔离在减轻活跃期流行病影响方面的效果极差,并且在SIR模型中,措施的延迟采用需要被动隔离才能实现疫情控制。

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