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社区网络中人类交通和传染性病毒传播的空间建模与分析。

Spatial Modeling and Analysis of Human Traffic and Infectious Virus Spread in Community Networks.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:2286-2289. doi: 10.1109/EMBC46164.2021.9630798.

Abstract

The use of network models to study the spread of infectious diseases is gaining increasing interests. They allow the flexibility to represent epidemic systems as networks of components with complex and interconnected structures. However, most of previous studies are based on networks of individuals as nodes and their social relationships (e.g., friendship, workplace connections) as links during the virus spread process. Notably, the transmission and spread of infectious viruses are more pertinent to human dynamics (e.g., their movements and interactions with others) in the spatial environment. This paper presents a novel network-based simulation model of human traffic and virus spread in community networks. We represent spatial points of interests (POI) as nodes where human subjects interact and perform activities, while edges connect these POIs to form a community network. Specifically, we derive the spatial network from the geographical information systems (GIS) data to provide a detailed representation of the underlying community network, on which human subjects perform activities and form traffics that impact the process of virus transmission and spread. The proposed framework is evaluated and validated in a community of university campus. Experimental results showed that the proposed simulation model is capable of describing interactive human activities at an individual level, as well as capturing the spread dynamics of infectious diseases. This framework can be extended to a wide variety of infectious diseases and shows strong potentials to aid the design of intervention policies for epidemic control.

摘要

利用网络模型研究传染病的传播正受到越来越多的关注。这些模型能够灵活地将传染病系统表示为具有复杂和相互关联结构的组件网络。然而,大多数先前的研究都是基于个体网络作为节点,以及他们在病毒传播过程中的社会关系(例如,友谊、工作场所联系)作为联系。值得注意的是,传染病的传播和扩散与人类在空间环境中的动态(例如,他们的运动和与他人的互动)更为相关。本文提出了一种新的基于网络的社区网络中人类交通和病毒传播的仿真模型。我们将空间兴趣点(POI)表示为人类主体相互作用和进行活动的节点,而边则将这些 POI 连接起来形成社区网络。具体来说,我们从地理信息系统(GIS)数据中推导出空间网络,以提供基础社区网络的详细表示,人类主体在该网络上进行活动并形成交通,从而影响病毒传播和扩散的过程。在所提出的框架中,我们在大学校园社区中进行了评估和验证。实验结果表明,所提出的仿真模型能够在个体层面上描述交互的人类活动,并捕捉传染病的传播动态。该框架可以扩展到各种传染病,并显示出在帮助设计传染病控制干预政策方面具有很大的潜力。

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