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A systematic review of mosquito coils and passive emanators: defining recommendations for spatial repellency testing methodologies

机译:蚊香和无源辐射器的系统综述:定义空间驱避性测试方法的建议

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摘要

Mosquito coils, vaporizer mats and emanators confer protection against mosquito bites through the spatial action of emanated vapor or airborne pyrethroid particles. These products dominate the pest control market; therefore, it is vital to characterize mosquito responses elicited by the chemical actives and their potential for disease prevention. The aim of this review was to determine effects of mosquito coils and emanators on mosquito responses that reduce human-vector contact and to propose scientific consensus on terminologies and methodologies used for evaluation of product formats that could contain spatial chemical actives, including indoor residual spraying (IRS), long lasting insecticide treated nets (LLINs) and insecticide treated materials (ITMs). PubMed, (National Centre for Biotechnology Information (NCBI), U.S. National Library of Medicine, NIH), MEDLINE, LILAC, Cochrane library, IBECS and Armed Forces Pest Management Board Literature Retrieval System search engines were used to identify studies of pyrethroid based coils and emanators with key-words “Mosquito coils” “Mosquito emanators” and “Spatial repellents”. It was concluded that there is need to improve statistical reporting of studies, and reach consensus in the methodologies and terminologies used through standardized testing guidelines. Despite differing evaluation methodologies, data showed that coils and emanators induce mortality, deterrence, repellency as well as reduce the ability of mosquitoes to feed on humans. Available data on efficacy outdoors, dose–response relationships and effective distance of coils and emanators is inadequate for developing a target product profile (TPP), which will be required for such chemicals before optimized implementation can occur for maximum benefits in disease control.
机译:蚊香,气化垫和散发剂通过散发的蒸气或空中拟除虫菊酯颗粒的空间作用,可防止蚊虫叮咬。这些产品在虫害控制市场上占主导地位。因此,表征由化学活性物质引起的蚊虫反应及其预防疾病的潜力至关重要。这篇综述的目的是确定蚊香和散发剂对减少人与载体接触的蚊子反应的影响,并就用于评估可能包含空间化学活性成分的产品形式的术语和方法论提出科学共识,包括室内残留喷雾( IRS),经杀虫剂处理的长效蚊帐(LLIN)和经杀虫剂处理的材料(ITM)。 PubMed(国家生物技术信息中心(NCBI),美国国家医学图书馆,NIH),MEDLINE,LILAC,Cochrane图书馆,IBECS和武装部队害虫管理委员会文献检索系统搜索引擎用于识别拟除虫菊酯类线圈和带有关键词“蚊香”,“蚊子散发剂”和“空间驱蚊剂”的散发器。结论是需要改进研究的统计报告,并在通过标准化测试指南使用的方法和术语上达成共识。尽管评估方法不同,但数据显示,线圈和散发剂会导致死亡率,威慑力,驱避力,并降低蚊子以人类为食的能力。关于室外功效,剂量-反应关系以及线圈和发射器的有效距离的可用数据不足以制定目标产品简介(TPP),此类化学品在优化实施之前可能需要这些化学品,以最大程度地控制疾病。

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