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A Metric of Influential Spreading during Contagion Dynamics through the Air Transportation Network

机译:通过航空运输网络在传染系统中影响传播的指标

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摘要

The spread of infectious diseases at the global scale is mediated by long-range human travel. Our ability to predict the impact of an outbreak on human health requires understanding the spatiotemporal signature of early-time spreading from a specific location. Here, we show that network topology, geography, traffic structure and individual mobility patterns are all essential for accurate predictions of disease spreading. Specifically, we study contagion dynamics through the air transportation network by means of a stochastic agent-tracking model that accounts for the spatial distribution of airports, detailed air traffic and the correlated nature of mobility patterns and waiting-time distributions of individual agents. From the simulation results and the empirical air-travel data, we formulate a metric of influential spreading––the geographic spreading centrality––which accounts for spatial organization and the hierarchical structure of the network traffic, and provides an accurate measure of the early-time spreading power of individual nodes.
机译:传染病在全球范围内的传播是由远距离人类旅行所介导的。我们预测疫情对人类健康的影响的能力要求了解特定位置的早期传播的时空特征。在这里,我们表明网络拓扑,地理位置,流量结构和个人移动性模式对于准确预测疾病的传播都是必不可少的。具体来说,我们通过随机代理人跟踪模型研究通过航空运输网络的传染动力学,该模型说明了机场的空间分布,详细的空中交通以及各个代理人的出行方式和等待时间分布的相关性质。根据模拟结果和经验性航空旅行数据,我们制定了影响力扩展的度量标准-地理分布的中心性-解释了网络流量的空间组织和层次结构,并提供了对各个节点的时间扩展能力。

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