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首页> 外文期刊>Parasites Vectors >Modelling the spatial distribution of the nuisance mosquito species Anopheles plumbeus (Diptera: Culicidae) in the Netherlands
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Modelling the spatial distribution of the nuisance mosquito species Anopheles plumbeus (Diptera: Culicidae) in the Netherlands

机译:在荷兰模拟令人讨厌的蚊子按蚊(Diptera:Culicidae)的空间分布

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Background Landscape modifications, urbanization or changes of use of rural-agricultural areas can create more favourable conditions for certain mosquito species and therefore indirectly cause nuisance problems for humans. This could potentially result in mosquito-borne disease outbreaks when the nuisance is caused by mosquito species that can transmit pathogens. Anopheles plumbeus is a nuisance mosquito species and a potential malaria vector. It is one of the most frequently observed species in the Netherlands. Information on the distribution of this species is essential for risk assessments. The purpose of the study was to investigate the potential spatial distribution of An. plumbeus in the Netherlands. Methods Random forest models were used to link the occurrence and the abundance of An. plumbeus with environmental features and to produce distribution maps in the Netherlands. Mosquito data were collected using a cross-sectional study design in the Netherlands, from April to October 2010–2013. The environmental data were obtained from satellite imagery and weather stations. Statistical measures (accuracy for the occurrence model and mean squared error for the abundance model) were used to evaluate the models performance. The models were externally validated. Results The maps show that forested areas (centre of the Netherlands) and the east of the country were predicted as suitable for An. plumbeus. In particular high suitability and high abundance was predicted in the south-eastern provinces Limburg and North Brabant. Elevation, precipitation, day and night temperature and vegetation indices were important predictors for calculating the probability of occurrence for An. plumbeus. The probability of occurrence, vegetation indices and precipitation were important for predicting its abundance. The AUC value was 0.73 and the error in the validation was 0.29; the mean squared error value was 0.12. Conclusions The areas identified by the model as suitable and with high abundance of An. plumbeus, are consistent with the areas from which nuisance was reported. Our results can be helpful in the assessment of vector-borne disease risk.
机译:背景技术景观改造,城市化或农村农业地区用途的改变可以为某些蚊子创造更有利的条件,因此间接给人类造成麻烦。当滋扰是由可传播病原体的蚊种引起的,这有可能导致蚊媒疾病暴发。羽毛按蚊是一种令人讨厌的蚊子,也是一种潜在的疟疾媒介。它是荷兰最常见的物种之一。有关该物种分布的信息对于风险评估至关重要。该研究的目的是调查An的潜在空间分布。李在荷兰。方法采用随机森林模型将An的发生与丰度联系起来。具有环境特征的羽毛,并在荷兰制作分布图。从2010年4月至2013年10月在荷兰使用横断面研究设计收集了蚊子数据。环境数据是从卫星图像和气象站获得的。统计量度(发生模型的准确性和丰度模型的均方误差)用于评估模型的性能。模型在外部进行了验证。结果这些地图显示,据预测森林地区(荷兰中部)和该国东部适合于An。梅花特别是在东南部的林堡省和北布拉班特省,人们预测其适应性和丰度很高。海拔,降水,昼夜温度和植被指数是计算An发生概率的重要预测指标。梅花发生的可能性,植被指数和降水对于预测其丰度很重要。 AUC值为0.73,验证误差为0.29;均方误差值为0.12。结论模型确定的区域是合适的,并且具有丰富的An。羽毛,与报告滋扰的区域一致。我们的结果可能有助于评估媒介传播的疾病风险。

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