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埃及伊蚊(双翅目:蚊科)动态生命表模型:模拟结果与验证

Dynamic life table model for Aedes aegypti (diptera: Culicidae): simulation results and validation.

作者信息

Focks D A, Haile D G, Daniels E, Mount G A

机构信息

Medical and Veterinary Entomology Research Laboratory, USDA-ARS, Gainesville, FL 32604.

出版信息

J Med Entomol. 1993 Nov;30(6):1018-28. doi: 10.1093/jmedent/30.6.1018.

Abstract

The container-inhabiting mosquito simulation model (CIMSiM) is a weather-driven, dynamic life table simulation model of Aedes aegypti (L.) and similar nondiapausing Aedes mosquitoes that inhabit artificial and natural containers. This paper presents a validation of CIMSiM simulating Ae. aegypti using several independent series of data that were not used in model development. Validation data sets include laboratory work designed to elucidate the role of diet on fecundity and rates of larval development and survival. Comparisons are made with four field studies conducted in Bangkok, Thailand, on seasonal changes in population dynamics and with a field study in New Orleans, LA, on larval habitat. Finally, predicted ovipositional activity of Ae. aegypti in seven cities in the southeastern United States for the period 1981-1985 is compared with a data set developed by the U.S. Public Health Service. On the basis of these comparisons, we believe that, for stated design goals, CIMSiM adequately simulates the population dynamics of Ae. aegypti in response to specific information on weather and immature habitat. We anticipate that it will be useful in simulation studies concerning the development and optimization of control strategies and that, with further field validation, can provide entomological inputs for a dengue virus transmission model.

摘要

栖息于容器的蚊子模拟模型(CIMSiM)是一种由天气驱动的动态生命表模拟模型,用于模拟埃及伊蚊及类似的不滞育且栖息于人工和天然容器的伊蚊。本文介绍了使用模型开发过程中未使用的几个独立系列数据对CIMSiM模拟埃及伊蚊的验证情况。验证数据集包括旨在阐明饮食对繁殖力以及幼虫发育和存活率影响的实验室研究。将模拟结果与在泰国曼谷进行的四项关于种群动态季节变化的实地研究以及在美国路易斯安那州新奥尔良进行的一项关于幼虫栖息地的实地研究进行了比较。最后,将美国东南部七个城市1981 - 1985年期间埃及伊蚊的预测产卵活动与美国公共卫生服务局编制的数据集进行了比较。基于这些比较,我们认为,对于既定的设计目标,CIMSiM能够充分模拟埃及伊蚊对天气和未成熟栖息地特定信息作出反应的种群动态。我们预计它将有助于开展有关控制策略开发和优化的模拟研究,并且经过进一步的实地验证后,可为登革热病毒传播模型提供昆虫学输入数据。

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