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将鸟类和蚊子数据关联起来评估人类西尼罗河病毒的时空风险。

Linking Bird and Mosquito Data to Assess Spatiotemporal West Nile Virus Risk in Humans.

机构信息

School of Epidemiology and Public Health, University of Ottawa, Room 217A, 600 Peter Morand Crescent, Ottawa, ON, K1G 5Z3, Canada.

GDG Environnement, Trois-Rivières, QC, Canada.

出版信息

Ecohealth. 2019 Mar;16(1):70-81. doi: 10.1007/s10393-019-01393-8. Epub 2019 Jan 23.

Abstract

West Nile virus (WNV; family Flaviviridae) causes a disease in humans that may develop into a deadly neuroinvasive disease. In North America, several peridomestic bird species can develop sufficient viremia to infect blood-feeding mosquito vectors without succumbing to the virus. Mosquito species from the genus Culex, Aedes and Ochlerotatus display variable host preferences, ranging between birds and mammals, including humans, and may bridge transmission among avian hosts and contribute to spill-over transmission to humans. In this study, we aimed to test the effect of density of three mosquito species and two avian species on WNV mosquito infection rates and investigated the link between spatiotemporal clusters of high mosquito infection rates and clusters of human WNV cases. We based our study around the city of Ottawa, Canada, between the year 2007 and 2014. We found a large effect size of density of two mosquito species on mosquito infection rates. We also found spatiotemporal overlap between a cluster of high mosquito infection rates and a cluster of human WNV cases. Our study is innovative because it suggests a role of avian and mosquito densities on mosquito infection rates and, in turn, on hotspots of human WNV cases.

摘要

西尼罗河病毒(WNV;黄病毒科)可导致人类疾病,严重时可发展为致命的神经侵袭性疾病。在北美洲,有几种家禽鸟类可产生足以使吸血蚊媒感染的高病毒血症,但自身不会因此死亡。库蚊属、伊蚊属和按蚊属的蚊种宿主偏好存在差异,从鸟类到哺乳动物(包括人类)不等,可能在禽类宿主之间传播病毒,并导致病毒溢出感染人类。在这项研究中,我们旨在测试三种蚊子和两种鸟类的密度对 WNV 蚊感染率的影响,并探讨高蚊感染率时空聚集与人类 WNV 病例聚集之间的联系。我们以加拿大渥太华市为研究地点,时间跨度为 2007 年至 2014 年。我们发现两种蚊子的密度对蚊感染率有很大的影响。我们还发现高蚊感染率聚集区与人类 WNV 病例聚集区之间存在时空重叠。我们的研究具有创新性,因为它表明鸟类和蚊子密度对蚊感染率,进而对人类 WNV 病例热点有一定作用。

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