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首页> 外文期刊>Journal of Insect Science >Ecological niche modeling of potential West Nile virus vector mosquito species in Iowa
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Ecological niche modeling of potential West Nile virus vector mosquito species in Iowa

机译:爱荷华州潜在尼罗河病毒矢量蚊虫种类的生态利基造型

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摘要

Ecological niche modeling (ENM) algorithms, Maximum Entropy Species Distribution Modeling (Maxent) and Genetic Algorithm for Rule-set Prediction (GARP), were used to develop models in Iowa for three species of mosquito – two significant, extant West Nile virus (WNV) vectors (Culex pipiens L and Culex tarsalis Coquillett (Diptera: Culicidae)), and the nuisance mosquito, Aedes vexans Meigen (Diptera: Culicidae), a potential WNV bridge vector. Occurrence data for the three mosquito species from a state-wide arbovirus surveillance program were used in combination with climatic and landscape layers. Maxent successfully created more appropriate niche models with greater accuracy than GARP. The three Maxent species' models were combined and the average values were statistically compared to human WNV incidence at the census block group level. The results showed that the Maxent-modeled species' niches averaged together were a useful indicator of WNV human incidence in the state of Iowa. This simple method for creating probability distribution maps proved useful for understanding WNV dynamics and could be applied to the study of other vector-borne diseases.
机译:生态利基造型(ENM)算法,用于规则集预测(GARP)的最大熵物种分布建模(MAXENT)和遗传算法,用于在爱荷华州开发三种蚊子 - 两个重要,现存的西尼罗病毒(WNV )Vectors(Culex pipiens L和Culex Tarsalis Coquillett(Diptera:Culicidae)),以及滋扰蚊子,Aedes vexans Meigen(Diptera:Culicidae),潜在的Wnv桥矢量。来自全级Arbovirus监控程序的三种蚊子物种的发生数据与气候和景观层组合使用。 MaxEnt成功创建了更合适的利基模型,比Garp更高。合并了三种最大物种的模型,平均值与人口普查块组水平的人WNV发病率进行了统计学。结果表明,最大建模的物种的耐药性在一起,是爱荷华州的WNV人类发病率有用指标。这种制造概率分布图的这种简单方法证明了理解WNV动态,可以应用于对其他载体传播疾病的研究。

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