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基于智能手机的众包实时监测平台(苹果螺监测器)用于入侵性蜗牛:设计与开发研究。

A smartphone-based crowd-sourced real-time surveillance platform (apple snail inspector) for the invasive snails: a design and development study.

机构信息

National Health Commission Key Laboratory of Parasitic Disease Control and Prevention, Jiangsu Provincial Key Laboratory on Parasite and Vector Control Technology, Jiangsu Provincial Medical Key Laboratory, Jiangsu Institute of Parasitic Diseases, Wuxi, Jiangsu, China.

Center for Global Health, School of Public Health, Nanjing Medical University, Nanjing, Jiangsu, China.

出版信息

Parasit Vectors. 2024 Feb 21;17(1):78. doi: 10.1186/s13071-024-06182-z.

Abstract

BACKGROUND

The large amphibious freshwater apple snail is an important invasive species in China, but there is currently no method available for their surveillance. The development and popularization of smartphones provide a new platform for research on surveillance technologies for the early detection and effective control of invasive species.

METHODS

The ASI surveillance system was developed based on the infrastructure of the WeChat platform and Amap. The user can directly enter the game interface through the WeChat port on their mobile phone, and the system automatically obtains their location. The user can then report the location of apple snails. The administrator can audit the reported information, and all information can be exported to Microsoft Excel version 2016 for analysis. The map was generated by ArcGIS 10.2 and was used to characterize the spatial and temporal distribution of apple snails in Jiangsu Province.

RESULTS

The architecture of ASI consists of three parts: a mobile terminal, a server terminal and a desktop terminal. We published more than 10 tweets on the official WeChat account of the system to announce it to the public, and a total of 207 users in 2020 and 2021 correctly reported sightings of apple snails. We identified 550 apple snails breeding sites in 2020 and 2021, featuring ponds (81%), parks (17%) and farmland (2%). In addition, most of the locations contained snail eggs, and the reporting times mainly occurred between May and September.

CONCLUSIONS

The ASI is an effective surveillance system that can be used to identify the breeding locations of apple snails and provides the basis of prevention and control for its dispersal. Its successful development and operation provide new potential avenues for surveillance of other public health issues.

摘要

背景

大型两栖淡水苹果螺是中国重要的入侵物种,但目前尚无监测方法。智能手机的发展和普及为研究入侵物种的早期发现和有效控制提供了新的监测技术平台。

方法

ASI 监测系统基于微信平台和 Amap 的基础设施开发。用户可以通过手机上的微信端口直接进入游戏界面,系统自动获取其位置。用户可以报告苹果螺的位置。管理员可以审核报告信息,所有信息都可以导出到 Microsoft Excel 2016 版本进行分析。地图由 ArcGIS 10.2 生成,用于描述江苏省苹果螺的时空分布特征。

结果

ASI 的架构由三个部分组成:移动终端、服务器终端和桌面终端。我们在系统的官方微信账号上发布了超过 10 条推文,向公众宣布了这一消息,2020 年和 2021 年共有 207 名用户正确报告了苹果螺的发现。我们在 2020 年和 2021 年确定了 550 个苹果螺繁殖地点,其中池塘(81%)、公园(17%)和农田(2%)。此外,大多数地点都含有螺卵,报告时间主要发生在 5 月至 9 月之间。

结论

ASI 是一种有效的监测系统,可用于识别苹果螺的繁殖地点,并为其传播的预防和控制提供依据。其成功的开发和运行为其他公共卫生问题的监测提供了新的潜在途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4915/10880226/d9392aa73bed/13071_2024_6182_Fig1_HTML.jpg

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