Suppr超能文献

地理信息系统(GIS)在免疫服务提供中的应用;在 2017/2018 年尼日利亚麻疹疫苗接种活动中的使用。

Application of the Geographic Information System (GIS) in immunisation service delivery; its use in the 2017/2018 measles vaccination campaign in Nigeria.

机构信息

National Primary Health Care Development Agency, Abuja, Nigeria.

Volunteer, National Measles Technical Coordinating Committee, Nigeria.

出版信息

Vaccine. 2021 Nov 17;39 Suppl 3:C29-C37. doi: 10.1016/j.vaccine.2021.01.021. Epub 2021 Jan 19.

Abstract

BACKGROUND

As global effort is made towards measles elimination, the use of innovative technology to enhance planning for the campaign has become critical. GIS technology has been applied to track polio vaccination activities in Nigeria with encouraging outcomes. Despite numerous measles vaccination campaigns after the first catch up campaign in 2005, sub-optimal outcomes of previous measles supplemental immunization activities necessitated the use of innovative ideas to achieve better outcomes especially when planning for the 2017/2018 measles vaccination campaign. This led to the application of the use of the GIS technology for the Northern states in 2017/2018 campaign. This study is a report of what was achieved with the use of the GIS in the 2017/2018 measles vaccination campaign in Nigeria.

METHODS

GIS generated ward maps were used for the microplanning processes for the 2017/2018 measles vaccination campaign. These ward maps had estimates of the target population by settlements, the number and location of vaccination posts ensuring that a vaccination post is sited within one-kilometer radius of a settlement, and the number of teams needed to support the vaccination campaign as well as the catchment area and daily implementation plans. The ward microplans were verified by checking for accuracy and consistency of the target population, settlements, number of teams, vaccination posts and daily implementation work plans using a standard checklist. The ward maps were deployed into use for the measles vaccination campaign after the state team driven validation and verification by the National team (Government and Partners) RESULTS: The Northern states that applied the GIS technology had a closer operational target population to that on the verified microplan than those of the non-GIS technology states. Greater than 90% of the ward maps had all that is expected in the maps - i.e settlements, target populations, and vaccination posts captured, except Kaduna, Katsina and Adamawa states. Of all enumeration areas sampled during the post-campaign survey in states with GIS ward maps, none had a zero-vaccination coverage of the surveyed children, with the exception of one in Borno state that had security issues. In the post campaign coverage survey, the percentage of responses that gave vaccination post being too far as a reason for non-vaccination of children in the Northern zones that used GIS generated ward maps was less than half the rate seen in the southern zones where the GIS microplanning was not used.

CONCLUSION

The use of GIS-generated wards maps improved the quality of ward micro plans and optimized the placement of vaccination posts, resulting in a significant reduction in zero-dose clusters found during the post campaign coverage survey.

摘要

背景

随着全球努力消除麻疹,使用创新技术来加强运动规划变得至关重要。GIS 技术已应用于追踪尼日利亚脊髓灰质炎疫苗接种活动,并取得了令人鼓舞的成果。尽管在 2005 年首次追赶运动后进行了多次麻疹疫苗接种运动,但以前的麻疹补充免疫活动的结果并不理想,因此需要创新思维来取得更好的结果,特别是在规划 2017/2018 年麻疹疫苗接种运动时。这导致在 2017/2018 年运动中在北方各州应用 GIS 技术。本研究报告了在 2017/2018 年尼日利亚麻疹疫苗接种运动中使用 GIS 技术所取得的成果。

方法

GIS 生成的病房地图用于 2017/2018 年麻疹疫苗接种运动的微观规划过程。这些病房地图按定居点估算了目标人口数量、接种点的数量和位置,确保每个接种点都位于定居点一公里半径范围内,以及支持疫苗接种运动所需的团队数量以及集水区和日常实施计划。使用标准清单检查目标人口、定居点、团队数量、接种点和日常实施工作计划的准确性和一致性,以验证病房微观计划。在国家团队(政府和合作伙伴)进行州团队驱动的验证和验证后,病房地图将部署到麻疹疫苗接种运动中。

结果

应用 GIS 技术的北方各州的运营目标人口比非 GIS 技术州的更接近经核实的微观计划。除卡杜纳州、卡齐纳州和阿达马瓦州外,超过 90%的病房地图都包含了地图上预期的所有内容,即定居点、目标人口和接种点。在有 GIS 病房地图的州进行的运动后调查中,对所有抽样的普查区进行调查,没有一个调查儿童的零接种率为零,只有博尔诺州因安全问题除外。在运动后覆盖范围调查中,在使用 GIS 生成的病房地图的北方地区,因接种点太远而导致儿童未接种疫苗的答复百分比不到南部地区使用 GIS 微观规划的一半。

结论

使用 GIS 生成的病房地图提高了病房微观计划的质量,并优化了接种点的位置,从而在运动后覆盖范围调查中发现的零剂量群显著减少。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验