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Potential effects of heat waves on the population dynamics of the dengue mosquito Aedes albopictus

机译:热浪对登革热蚊白纹伊蚊种群动态的潜在影响

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摘要

Extreme weather events affect the development and survival of disease pathogens and vectors. Our aim was to investigate the potential effects of heat waves on the population dynamics of Asian tiger mosquito (Aedes albopictus), which is a major vector of dengue and Zika viruses. We modeled the population abundance of blood-fed mosquito adults based on a mechanistic population model of Ae. albopictus with the consideration of diapause. Using simulated heat wave events derived from a 35-year historical dataset, we assessed how the mosquito population responded to different heat wave characteristics, including the onset day, duration, and the average temperature. Two important observations are made: (1) a heat wave event facilitates the population growth in the early development phase but tends to have an overall inhibitive effect; and (2) two primary factors affecting the development are the unusual onset time of a heat wave and a relatively high temperature over an extended period. We also performed a sensitivity analysis using different heat wave definitions, justifying the robustness of the findings. The study suggests that particular attention should be paid to future heat wave events with an abnormal onset time or a lasting high temperature in order to develop effective strategies to prevent and control Ae. albopictus-borne diseases.
机译:极端天气事件影响疾病病原体和媒介的发展和生存。我们的目的是研究热浪对亚洲虎蚊(伊蚊白纹伊蚊)种群动态的潜在影响,这是登革热和寨卡病毒的主要媒介。我们基于Ae的机械种群模型,对以血液喂养的蚊子成虫的种群数量进行了建模。考虑滞育的白化病。使用源自35年历史数据集的模拟热浪事件,我们评估了蚊子种群如何响应不同的热浪特征,包括发作日,持续时间和平均温度。有两个重要发现:(1)热浪事件促进了早期发育阶段的人口增长,但往往具有总体抑制作用; (2)影响发育的两个主要因素是热浪的异常发作时间和长期以来相对较高的温度。我们还使用不同的热波定义进行了敏感性分析,证明了结果的可靠性。该研究表明,应特别注意异常时间或持续高温的未来热浪事件,以制定预防和控制Ae的有效策略。白带传播的疾病。

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