首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Identification of Potential High-Risk Habitats within the Transmission Reach of Oncomelania hupensis after Floods Based on SAR Techniques in a Plane Region in China
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Identification of Potential High-Risk Habitats within the Transmission Reach of Oncomelania hupensis after Floods Based on SAR Techniques in a Plane Region in China

机译:基于SAR技术的中国平原地区洪水发生后钉螺传播范围内潜在高危生境的识别

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摘要

Schistosomiasis japonica is an infectious disease caused by Schistosoma japonicum, and it remains endemic in China. Flooding is the main hazard factor, as it causes the spread of Oncomelania hupensis, the only intermediate host of Schistosoma japonicum, thereby triggering schistosomiasis outbreaks. Based on multi-source real-time remote sensing data, we used remote sensing (RS) technology, especially synthetic aperture radar (SAR), and geographic information system (GIS) techniques to carry out warning research on potential snail habitats within the snail dispersal range following flooding. Our research result demonstrated: (1) SAR data from Sentinel-1A before and during a flood were used to identify submerged areas rapidly and effectively; (2) the likelihood of snail survival was positively correlated with the clay proportion, core area standard deviation, and ditch length but negatively correlated with the wetness index, NDVI (normalized difference vegetation index), elevation, woodland area, and construction land area; (3) the snail habitats were most abundant near rivers and ditches in paddy fields; (4) the rivers and paddy irrigation ditches in the submerged areas must be the focused of mitigation efforts following future floods.
机译:日本血吸虫病是一种由日本血吸虫引起的传染病,在中国仍是地方性流行病。洪水是主要危害因素,因为它会导致日本血吸虫病的唯一中间寄主-钉螺的传播,从而引发血吸虫病暴发。基于多源实时遥感数据,我们利用遥感技术,特别是合成孔径雷达(SAR)和地理信息系统(GIS)技术,对蜗牛扩散区内潜在的蜗牛栖息地进行了预警研究。洪水后的范围。我们的研究结果表明:(1)利用Sentinel-1A SAR洪水之前和期间的SAR数据,可以快速有效地识别淹没区域; (2)蜗牛存活的可能性与黏土比例,核心面积标准偏差和沟长成正相关,而与湿度指数,NDVI(归一化植被指数),海拔,林地面积和建设用地面积成负相关; (3)田间河流和沟渠附近的蜗牛栖息地最丰富。 (4)淹水地区的河流和稻田灌溉沟渠必须成为未来洪水后缓解工作的重点。

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