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首页> 外文期刊>Parasites Vectors >Attracting, trapping and killing disease-transmitting mosquitoes using odor-baited stations - The Ifakara Odor-Baited Stations
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Attracting, trapping and killing disease-transmitting mosquitoes using odor-baited stations - The Ifakara Odor-Baited Stations

机译:使用诱饵站吸引,诱捕和杀死传播疾病的蚊子-Ifakara气味诱饵站

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Background To accelerate efforts towards control and possibly elimination of mosquito-borne diseases such as malaria and lymphatic filariasis, optimally located outdoor interventions could be used to complement existing intradomicilliary vector control methods such as house spraying with insecticides and insecticidal bednets. Methods We describe a new odor-baited station for trapping, contaminating and killing disease-transmitting mosquitoes. This device, named the 'Ifakara Odor-baited Station' (Ifakara OBS), is a 4 m3 hut-shaped canvas box with seven openings, two of which may be fitted with interception traps to catch exiting mosquitoes. It is baited with synthetic human odors and may be augmented with contaminants including toxic insecticides or biological agents. Results In field trials where panels of fabric were soaked in 1% pirimiphos-methyl solution and suspended inside the Ifakara OBS, at least 73.6% of Anopheles arabiensis, 78.7% of Culex and 60% of Mansonia mosquitoes sampled while exiting the OBS, died within 24 hours. When used simply as a trap and evaluated against two existing outdoor traps, Ifakara Tent trap and Mosquito Magnet-X?, the OBS proved more efficacious than the Ifakara Tent trap in catching all mosquito species found (P < 0.001). Compared to the Mosquito Magnet-X?, it was equally efficacious in catching An. arabiensis (P = 0.969), but was less efficacious against Culex (P < 0.001) or Mansonia species (P < 0.001). Conclusion The Ifakara OBS is efficacious against disease-carrying mosquitoes including the malaria vector, An. arabiensis and Culicine vectors of filarial worms and arboviruses. It can be used simultaneously as a trap and as a contamination or killing station, meaning most mosquitoes which escape trapping would leave when already contaminated and die shortly afterwards. This technique has potential to complement current vector control methods, by targeting mosquitoes in places other than human dwellings, but its effectiveness in the field will require cheap, long-lasting and easy-to-use mosquito lures.
机译:背景技术为了加快控制和消除可能由蚊媒传播的疾病(如疟疾和淋巴丝虫病)的努力,可以采用最佳定位的户外干预措施来补充现有的室内寄生虫病媒介控制方法,例如用杀虫剂和杀虫蚊帐喷洒房屋。方法我们描述了一个新的诱饵站,用于诱捕,污染和杀死传播疾病的蚊子。该设备名为“ Ifakara气味诱饵站”(Ifakara OBS),是一个4立方米的小屋形帆布箱,有七个开口,其中两个可以装有拦截器,以捕获蚊子。它以人造的人类气味为诱饵,并可能被污染物(包括有毒的杀虫剂或生物制剂)增加。结果在现场试验中,将织物板浸泡在1%的次氯胺磷甲基溶液中并悬浮在Ifakara OBS内,至少有73.6%的阿拉伯按蚊,78.7%的库蚊和60%的Mansonia蚊子在离开OBS时死亡,死于24小时。当仅用作诱捕器并与两个现有的室外诱捕器Ifakara Tent诱捕器和Mosquito Magnet-X?相比较时,OBS被证明比Ifakara Tent诱捕器更有效地捕获了所有发现的蚊虫(P <0.001)。与Mosquito Magnet-X?相比,在捕捉An方面同样有效。阿拉伯(P = 0.969),但对库蚊(P <0.001)或Mansonia物种(P <0.001)的疗效较差。结论Ifakara OBS对包括疟疾媒介An。在内的携带疾病的蚊子有效。丝虫和虫媒病毒的阿拉伯和瓜氨酸载体。它可以同时用作诱集装置和污染或杀死站,这意味着大多数逃脱诱捕的蚊子在受到污染后会离开并很快死亡。通过将蚊子对准人类住所以外的地方,该技术有可能补充当前的矢量控制方法,但其在现场的有效性将需要廉价,持久且易于使用的诱饵。

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