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Mesocosm experiments reveal the impact of mosquito control measures on malaria vector life history and population dynamics

机译:Mesocosm实验揭示了蚊子控制措施对疟疾载体历史和人口动态的影响

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The impact of control measures on mosquito vector fitness and demography is usually estimated from bioassays or indirect variables in the field. Whilst indicative, neither approach is sufficient to quantify the potentially complex response of mosquito populations to combined interventions. Here, large replicated mesocosms were used to measure the population-level response of the malaria vector Anopheles arabiensis to long-lasting insecticidal nets (LLINs) when used in isolation, or combined with insecticidal eave louvers (EL), or treatment of cattle with the endectocide Ivermectin (IM). State-space models (SSM) were fit to these experimental data, revealing that LLIN introduction reduced adult mosquito survival by 91% but allowed population persistence. ELs provided no additional benefit, but IM reduced mosquito fecundity by 59% and nearly eliminated all populations when combined with LLINs. This highlights the value of IM for integrated vector control, and mesocosm population experiments combined with SSM for identifying optimal combinations for vector population elimination.
机译:控制措施对蚊子载体健康和人口统计的影响通常是从生物测定或场上的间接变量估算。虽然指示性,但任何方法都足以量化蚊虫群体与组合干预措施的潜在复杂响应。在这里,大型复制的中科姆斯用于测量疟疾载体Arabiensis对持久的杀虫网(Llins)的人口水平响应,当用隔离使用时,或与杀虫屋檐百叶窗(EL)组合或与牛治疗结束甲酰胺invermectin(IM)。状态空间模型(SSM)适合这些实验数据,揭示了Llin引入将成人蚊虫存活减少91%,但允许人口持久性。 ELS不提供额外的好处,但我减少了蚊子繁殖力59%,几乎消除了与Llins相结合的所有群体。这突出了IM对于综合载体控制的值,而Mesocosm群体实验与SSM相结合,用于识别载体人口消除的最佳组合。

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