调查研究

广东省英德市2019年钉螺分布现状调查

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  • 1. 英德市疾病预防控制中心传染性疾病控制室, 广东清远 513000;
    2. 清远市疾病预防控制中心, 广东 清远 511500
黎伟全,男,主管医师,主要从事急性传染性疾病和血吸虫病防治工作,E-mail:597637507@qq.com

收稿日期: 2020-09-14

  网络出版日期: 2021-08-20

基金资助

2019年广东省乡村振兴战略专项资金(“大专项+任务清单”)项目(2019DZX006);2020年度清远市社会发展领域自筹经费科技计划项目(200730174561634)

Distribution of Oncomelania hupensis snails in Yingde, Guangdong province, China, 2019

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  • 1. Department of Infectious Disease Control, Disease Control and Prevention Center of Yingde, Qingyuan, Guangdong 513000, China;
    2. Qingyuan Center for Disease Control and Prevention, Qingyuan, Guangdong 511500, China

Received date: 2020-09-14

  Online published: 2021-08-20

Supported by

Supported by the Special Fund for Rural Revitalization Strategy of Guangdong Province in 2019 (“Large Specific Project +Task List”) Projects (No. 2019DZX006) and Self-funded Science and Technology Projects in the Field of Social Development in Qingyuan in 2020 (No. 200730174561634)

摘要

目的 调查广东省英德市2019年钉螺分布现状,为制定科学的控螺措施提供依据。方法 通过查阅和整理有关历史资料,在现场采用单纯环境抽查或系统+环境抽查方法开展钉螺孳生情况调查,对调查结果采用Excel 2007软件进行录入,用SPSS 20.0软件进行统计分析,率的比较采用χ2检验。结果 共调查英德市历史有螺村5个,钉螺可疑孳生环境808个,发现有螺环境23个,有螺面积为105 648.94 m2;活螺平均密度为2.09只/0.1 m2,平均活螺框出现率为18.50%,解剖钉螺5 413只,未发现感染性钉螺。结论 英德市现有适宜钉螺孳生环境较多,需加强对可疑孳生环境的查螺建档及环境整治工作。

本文引用格式

黎伟全, 蓝秋欣, 蒋贵凤, 杜玉忠 . 广东省英德市2019年钉螺分布现状调查[J]. 中国媒介生物学及控制杂志, 2021 , 32(4) : 494 -497 . DOI: 10.11853/j.issn.1003.8280.2021.04.022

Abstract

Objective To investigate the distribution of Oncomelania hupensis snails in Yingde, Guangdong province, China in 2019, and to provide a basis for the formulation of scientific O. hupensis snail control measures. Methods By consulting and sorting out relevant historical data, and conducting on-site environment-based sampling or system sampling combined with environment-based sampling surveys, the breeding of O. hupensis snails was investigated. Excel 2007 software was used to enter the results of investigation. SPSS 20.0 software was used to perform the statistical analysis. The Chi-square test was used to compare the rate. Results Five villages where snails had bred in Yingde were investigated, including 808 suspected breeding habitats, among which 23 habitats were found with snails, with an area of 105 648.94 m2. The mean density of living snails was 2.09 snails/0.1 m2, and the mean occurrence rate of living snails was 18.50%. A total of 5 413 O. hupensis snails were dissected, and no schistosome-infected snails were found. Conclusion There are many suitable habitats for the breeding of O. hupensis snails in Yingde. It is necessary to strengthen snail investigation, filing, and environmental improvement for the suspected breeding habitats.

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