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Optimizing targeted vaccination across cyber-physical networks: an empirically based mathematical simulation study

机译:在网络 - 物理网络上优化目标疫苗接种:基于凭证的数学模拟研究

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摘要

Targeted vaccination, whether to minimize the forward transmission of infectious diseases or their clinical impact, is one of the 'holy grails' of modern infectious disease outbreak response, yet it is difficult to achieve in practice due to the challenge of identifying optimal targets in real time. If interruption of disease transmission is the goal, targeting requires knowledge of underlying person-to-person contact networks. Digital communication networks may reflect not only virtual but also physical interactions that could result in disease transmission, but the precise overlap between these cyber and physical networks has never been empirically explored in real-life settings. Here, we study the digital communication activity of more than 500 individuals along with their person-to-person contacts at a 5-min temporal resolution. We then simulate different disease transmission scenarios on the person-to-person physical contact network to determine whether cyber communication networks can be harnessed to advance the goal of targeted vaccination for a disease spreading on the network of physical proximity. We show that individuals selected on the basis of their closeness centrality within cyber networks (what we call 'cyber-directed vaccination') can enhance vaccination campaigns against diseases with short-range (but not full-range) modes of transmission.
机译:有针对性的疫苗接种,是否最大限度地减少传染病的前进传播或他们的临床影响,是现代传染病爆发反应的“圣杯圣杯”之一,但由于识别真实的最佳目标的挑战,难以在实践中实现时间。如果疾病传输的中断是目标,目标需要了解潜在的人与人的联系网络。数字通信网络可能不仅反映了可能导致疾病传输的虚拟,而且体现的物理相互作用,但这些网络和物理网络之间的精确重叠从未经验在现实生活中进行过验证。在这里,我们以5分钟的时间分辨率研究超过500人的数字通信活动以及他们的人与人的联系人。然后,我们在人对物理联系网络上模拟不同的疾病传输场景,以确定网络通信网络是否可以利用以推动目标疫苗接种的目标,以便在物理接近网络上传播疾病。我们展示了在网络网络中选择的近期中心选择的个人(我们称之为网络的疫苗接种')可以增强疫苗接种运动,避免具有短程(但不是全系列)传输模式的疾病。

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