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首页> 外文期刊>The American Journal of Tropical Medicine and Hygiene >Dengue and its vectors in Thailand: calculated transmission risk from total pupal counts of Aedes aegypti and association of wing-length measurements with aspects of the larval habitat.
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Dengue and its vectors in Thailand: calculated transmission risk from total pupal counts of Aedes aegypti and association of wing-length measurements with aspects of the larval habitat.

机译:登革热及其在泰国的媒介:根据埃及伊蚊的总p计数以及机翼长度测量值与幼虫栖息地的相关性,计算出传播风险。

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摘要

Working in a village dengue focus in Chachoengsao Province, Thailand, aedine mosquito larvae and pupae were counted in all containers of 10 houses per month. The wings of female Aedes aegypti (L.) emerging from pupae were measured. Number of pupae and size of emerging females increased in containers with qualities that favored availability of larval food sources (e.g., uncovered containers). The small size of most mosquitoes compared with those raised in the laboratory indicated that the larval population as a whole was under nutritional stress. Applying the number of pupae per house and measurement of air and water temperature with an existing model, the risk of dengue transmission was greatest in May and June. The estimated number of female Ae. aegypti per house was well above the threshold for increasing transmission in all months but December through February. A phased approach to sampling immature aedine mosquitoes in Thailand is proposed, which would consist of routine surveillance of larval index and occasional total counts with measurement of wing size. Such a system would combine the benefits of the simple application of larval surveillance with the valuable data gathered from pupal counts and wing measurements.
机译:在泰国Chachoengsao省的一个乡村登革热疫情中心,每个月有10所房屋的所有容器中都计数了伊甸蚊幼虫和p。测量了从p中出来的雌埃及伊蚊的翅膀。 containers的数量和成年雌性的大小在装有有利于获取幼体食物来源的质量的容器(例如,未发现的容器)中增加。与实验室饲养的蚊子相比,大多数蚊子的体积较小,这表明整个幼虫种群处于营养压力下。根据现有模型计算每间房屋of的数量并测量空气和水的温度,登革热传播的风险在5月和6月最大。雌性Ae的估计数量。除12月至2月的所有月份外,每所房屋的埃及埃及人均大大超过了增加传播的门槛。提出了一种分阶段的方法来对泰国的未成熟的伊迪蚊进行采样,该方法将包括对幼虫指数的常规监测和偶尔的总计数以及机翼大小的测量。这种系统将简单地应用幼虫监视的好处与从p计数和机翼测量收集的有价值的数据结合起来。

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