首页> 外文期刊>International Journal for Parasitology >An integrated approach to identify distribution of Oncomelania hupensis, the intermediate host of Schistosoma japonicum, in a mountainous region in China.
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An integrated approach to identify distribution of Oncomelania hupensis, the intermediate host of Schistosoma japonicum, in a mountainous region in China.

机译:一种综合方法来鉴定中国山区的日本血吸虫的中间寄主-钉螺。

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The aim of this study is to better understand ecological variability related to the distribution of Oncomelania hupensis, the snail intermediate host of Schistosoma japonicum, and predict the spatial distribution of O. hupensis at the local scale in order to develop a more effective control strategy for schistosomiasis in the hilly and mountainous regions of China. A two-pronged approach was applied in this study consisting of a landscape pattern analysis complemented with Bayesian spatial modelling. The parasitological data were collected by cross-sectional surveys carried out in 11 villages in 2006 and mapped based on global positioning system (GPS) coordinates. Environmental surrogates and landscape metrics were derived from remotely-sensed images and land-cover/land-use classification data. Bayesian non-spatial and spatial models were applied to investigate the variation of snail density in relation to environmental surrogates and landscape metrics at the local scale. A Bayesian spatial model, validated by the deviance information criterion (DIC), was found to be the best-fitting model. The mean shape index (MSI) and Shannon's evenness indexes (SEI) were significantly associated with snail density. These findings suggest that decreasing the heterogeneity of the landscape can reduce snail density. A prediction maps were generated by the Bayesian model together with environmental surrogates and landscape metrics. In conclusion, the risk areas of snail distribution at the local scale can be identified using an integrated approach with landscape pattern analysis supported by remote sensing and GIS technologies, as well as Bayesian modelling.
机译:这项研究的目的是更好地了解与日本血吸虫的蜗牛中间寄主-钉螺的分布有关的生态变异性,并预测钉螺在地方尺度上的空间分布,以便制定出更有效的防治策略。中国丘陵和山区的血吸虫病。这项研究采用了两管齐下的方法,其中包括景观图案分析和贝叶斯空间模型的补充。寄生虫学数据是通过2006年在11个村庄进行的横断面调查收集的,并根据全球定位系统(GPS)坐标进行绘制。环境替代指标和景观指标来自遥感图像和土地覆盖/土地利用分类数据。应用贝叶斯非空间和空间模型来研究蜗牛密度相对于当地尺度的环境替代物和景观指标的变化。发现通过偏差信息准则(DIC)验证的贝叶斯空间模型是最合适的模型。平均形状指数(MSI)和香农均匀度指数(SEI)与蜗牛密度显着相关。这些发现表明,减少景观的异质性可以降低蜗牛的密度。贝叶斯模型与环境替代指标和景观指标一起生成了预测图。总之,可以使用结合了遥感和GIS技术以及贝叶斯模型支持的景观格局分析的集成方法,来确定蜗牛在当地范围内分布的风险区域。

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