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基于物联网的包虫病远程管理系统的设计与实现

A remote management system for control and surveillance of echinococcosis: design and implementation based on internet of things.

机构信息

National Institute of Parasitic Diseases, Chinese Center for Disease Control and Prevention, Shanghai, China.

NHC Key Laboratory of Parasite and Vector Biology, (National Institute of Parasitic Diseases, Chinese Center for Disease Control and Prevention), Shanghai, China.

出版信息

Infect Dis Poverty. 2021 Apr 13;10(1):50. doi: 10.1186/s40249-021-00833-4.

Abstract

BACKGROUND

As a neglected cross-species parasitic disease transmitted between canines and livestock, echinococcosis remains a global public health concern with a heavy disease burden. In China, especially in the epidemic pastoral communities on the Qinghai-Tibet Plateau, the harsh climate, low socio-economic status, poor overall hygiene, and remote and insufficient access to all owned dogs exacerbate the difficulty in implementing the ambitious control programme for echinococcosis. We aimed to design and implement a remote management system (RMS) based on internet of things (IoT) for control and surveillance of echinococcosis by combining deworming devices to realise long-distance smart deworming control, smooth statistical analysis and result display. New methods and tools are urgently needed to increase the deworming coverage and frequency, promote real-time scientific surveillance, and prevent transmission of echinococcosis in remoted transmission areas.

METHODS

From 2016 to 2019, we had cooperated and developed the smart collar and smart feeder with the Central Research Institute of Shanghai Electric Group Co., Ltd. (Shanghai, China) and Shenzhen Jizhi Future Technology Co., Ltd. (Shenzhen, China). From September 2019 to March 2020, We had proposed the RMS based on IoT as a novel tool to control smart deworming devices to deliver efficient praziquantel (PZQ) baits to dogs regularly and automatically and also as a smart digital management platform to monitor, analyse, and display the epidemic trends of echinococcosis dynamically, in real time in Hezuo City, Gannan Tibetan Autonomous Prefecture, Gansu Province, China. Starting from January 2018, The RMS has been maintained and upgraded by Shanghai Yier Information Technology Co., Ltd (Shanghai, China). The database was based on MySQL tools and the Chi-square test was used to probe the difference and changes of variables in different groups.

RESULTS

The smart collars are fully capable of anti-collision, waterproof, and cold-proof performance, and the battery's energy is sufficient, the anti-collision rate, water-proof rate, cold-proof rate and voltage normal rate is 99.6% (521/523), 100.0% (523/523), 100.0% (523/523) and 100.0% (523/523), respectively. The RMS can accurately analyse the monitoring data and parameters including positive rates of canine faeces, and the prevalence of echinococcosis in the general population livestock, and children. The data of dogs deworming and surveillance for echinococcosis is able to be controlled using RMS and has expanded gradually in townships to the whole Hezuo region. The automatic delivering PZQ rate, collar positioning rate, deliver PZQ reminding rate, and fault report rate is 91.1% (1914/2102), 92.1% (13 580/14 745), 92.1% (1936/2102) and 84.7% (1287/1519), respectively. After using the RMS from 2019, the missing rate of monitoring data decreased from 32.1% (9/28) to 0 (0/16). A total of 48 administrators (3, 3, 8, 11, 23 at the provincial, municipal, county, township, village levels, respectively) participated in the questionnaire survey, with 93.8% of its overall satisfaction rate.

CONCLUSIONS

The existing difficulties and challenges in the way of prevention and control for echinococcosis can partially be resolved using the innovative, IoT-based technologies and tools. The proposed RMS advance the upgrade of existing manual prevention and control models for echinococcosis, especially in the current ongoing COVID-19 pandemic, as social distance and community blockade continue.

摘要

背景

包虫病是一种在犬科动物和家畜之间传播的被忽视的跨物种寄生虫病,仍然是一个全球性的公共卫生关注问题,疾病负担沉重。在中国,特别是在青藏高原流行牧区,恶劣的气候、社会经济地位低下、整体卫生条件差以及偏远地区缺乏和无法全面接触所有犬只,这使得实施包虫病控制计划变得更加困难。我们旨在设计并实施一个基于物联网(IoT)的远程管理系统(RMS),结合驱虫设备,实现远距离智能驱虫控制、流畅的统计分析和结果显示,以控制和监测包虫病。迫切需要新的方法和工具来提高驱虫覆盖率和频率,促进实时科学监测,并防止偏远传播地区的包虫病传播。

方法

从 2016 年到 2019 年,我们与上海电气集团中央研究院(上海,中国)和深圳机智未来科技有限公司(深圳,中国)合作开发了智能项圈和智能喂食器。从 2019 年 9 月到 2020 年 3 月,我们提出了基于物联网的 RMS 作为一种新型工具,用于控制智能驱虫设备,定期自动向犬只提供高效的吡喹酮(PZQ)诱饵,并作为一个智能数字管理平台,实时动态监测、分析和显示包虫病的流行趋势,在中国甘肃省甘南藏族自治州合作市实施。从 2018 年 1 月开始,上海医尔信息技术有限公司(上海,中国)对 RMS 进行了维护和升级。数据库基于 MySQL 工具,使用卡方检验探测不同组变量的差异和变化。

结果

智能项圈完全能够抗碰撞、防水和耐寒,电池电量充足,抗碰撞率、防水率、耐寒率和电压正常率分别为 99.6%(521/523)、100.0%(523/523)、100.0%(523/523)和 100.0%(523/523)。RMS 能够准确分析监测数据和参数,包括犬粪便阳性率和人群、家畜和儿童包虫病的流行率。使用 RMS 可以控制犬驱虫和包虫病监测数据,并逐渐在乡镇扩展到整个合作地区。自动投药率、项圈定位率、投药提醒率和故障报告率分别为 91.1%(1914/2102)、92.1%(13580/14745)、92.1%(1936/2102)和 84.7%(1287/1519)。自 2019 年使用 RMS 以来,监测数据缺失率从 32.1%(9/28)降至 0(0/16)。共有 48 名管理员(省级、市级、县级、乡镇级和村级各 3、3、8、11、23 人)参加了问卷调查,总体满意度为 93.8%。

结论

使用创新的物联网技术和工具,可以部分解决包虫病预防控制中存在的困难和挑战。所提出的 RMS 推动了现有的人工包虫病预防控制模型的升级,特别是在当前正在进行的 COVID-19 大流行期间,因为社会距离和社区封锁仍在继续。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bc2/8043066/8256d547ca7a/40249_2021_833_Fig1_HTML.jpg

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