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大规模疫情爆发期间的弹性管理。

Resilience management during large-scale epidemic outbreaks.

机构信息

U.S. Army Corps of Engineers - Engineer Research and Development Center, Environmental Laboratory, Concord, MA, 01742, USA.

Senseable City Laboratory, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA, 02139, USA.

出版信息

Sci Rep. 2018 Jan 30;8(1):1859. doi: 10.1038/s41598-018-19706-2.

Abstract

Assessing and managing the impact of large-scale epidemics considering only the individual risk and severity of the disease is exceedingly difficult and could be extremely expensive. Economic consequences, infrastructure and service disruption, as well as the recovery speed, are just a few of the many dimensions along which to quantify the effect of an epidemic on society's fabric. Here, we extend the concept of resilience to characterize epidemics in structured populations, by defining the system-wide critical functionality that combines an individual's risk of getting the disease (disease attack rate) and the disruption to the system's functionality (human mobility deterioration). By studying both conceptual and data-driven models, we show that the integrated consideration of individual risks and societal disruptions under resilience assessment framework provides an insightful picture of how an epidemic might impact society. In particular, containment interventions intended for a straightforward reduction of the risk may have net negative impact on the system by slowing down the recovery of basic societal functions. The presented study operationalizes the resilience framework, providing a more nuanced and comprehensive approach for optimizing containment schemes and mitigation policies in the case of epidemic outbreaks.

摘要

仅考虑个体疾病的风险和严重程度来评估和管理大规模疫情极其困难,而且可能代价极高。经济后果、基础设施和服务中断,以及恢复速度,只是量化疫情对社会结构影响的众多维度中的几个方面。在这里,我们通过定义将个体患病风险(疾病发病率)和系统功能障碍(人类流动性恶化)结合起来的系统关键功能,将弹性的概念扩展到结构化人群中的疫情中,以描述疫情。通过研究概念模型和数据驱动模型,我们表明,在弹性评估框架下综合考虑个体风险和社会干扰因素,可以深入了解疫情可能对社会造成的影响。特别是,旨在直接降低风险的遏制干预措施可能会通过减缓基本社会功能的恢复而对系统产生负面影响。本研究实施了弹性框架,为在疫情爆发时优化遏制方案和缓解政策提供了一种更细致和全面的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1135/5789872/f0582917d64f/41598_2018_19706_Fig1_HTML.jpg

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