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强化免疫供应链:马哈拉施特拉邦冷链网络优化与扩展的基于供应时间的方法。

Strengthening the immunization supply chain: A time-to-supply based approach to cold chain network optimization & extension in Madhya Pradesh.

机构信息

Clinton Health Access Initiative, 40, Okhla Phase III, Delhi 110020, India.

Bill & Melinda Gates Foundation, 5th Floor, The Capital Court, Olof Palme Marg, Munirka, New Delhi 110067, India.

出版信息

Vaccine. 2021 Oct 29;39(45):6660-6670. doi: 10.1016/j.vaccine.2021.09.062. Epub 2021 Oct 8.

Abstract

Expansion of immunization coverage is dependent in part on delivering potent vaccines in an equitable and timely manner to immunization outreach session sites from Cold Chain Points (CCPs). When duration of travel between the last CCP and the session site (Time-to-Supply) is too long, three consequences may arise: decreased potency due to exposure to heat and freezing, beneficiary dropouts due to delayed session starts, and, increased operational costs for the Health Facility (HF) conducting the outreach sessions. Guided by the Government of India's recommendation on cold chain point expansion to ensure that all session sites are within a maximum of 60 min from the last CCP, CHAI and the State Routine Immunization Cell in the state of Madhya Pradesh collaborated to pilot a novel approach to cold chain network optimization and expansion in eight districts of Madhya Pradesh. Opportunities for realignment of remote sub-health centers (SHCs) and corresponding session sites to alternative existing CCPs or to HFs which could be converted to new CCPs were identified, and proposed using a greedy adding algorithm-based optimization which relied on health facility level geo-location data. Health facility geo-coordinates were collected through tele-calling and site visits, and a Microsoft Excel based optimization tool was developed. This exercise led to an estimated reduction in the number of remote SHCs falling beyond the permissible travel time from CCPs by 56.89 percent (132 remote sites), from 232 to 100. The 132 resolved sites include 73 sites realigned to existing CCPs, and 59 sites to be attached to 22 newly proposed CCPs. Both the network optimization approach and the institutional capacity built during this project will continue to be useful to India's immunization program. The approach is replicable and may be leveraged by developing countries facing similar challenges due to geographical, institutional, and financial constraints.

摘要

免疫覆盖范围的扩大部分取决于从冷链点(CCP)以公平和及时的方式向免疫外展地点提供有效的疫苗。当最后一个 CCP 与会议地点之间的旅行时间(供应时间)过长时,可能会出现以下三种后果:由于暴露在高温和冷冻下导致效力降低,由于会议开始延迟导致受益人流失,以及为开展外展会议的卫生机构(HF)增加运营成本。在印度政府关于扩大冷链点的建议的指导下,为确保所有会议地点距离最后一个 CCP 的距离不超过 60 分钟,CHAI 和中央邦州常规免疫小组合作在中央邦的八个地区试行一种新的冷链网络优化和扩展方法。确定了重新调整偏远次卫生中心(SHC)和相应会议地点的机会,将其与现有的替代 CCP 或可以转换为新 CCP 的 HF 进行重新调整,采用基于贪婪添加算法的优化方法,该方法依赖于卫生机构级别的地理位置数据。通过电话和现场访问收集卫生设施地理坐标,并开发了一个基于 Microsoft Excel 的优化工具。这项工作估计将偏远 SHC 的数量减少了 56.89%(132 个偏远地点),从 232 个减少到 100 个,这些偏远地点超过了从 CCP 到允许的旅行时间的范围。解决的 132 个地点包括 73 个重新调整到现有 CCP 的地点,以及 59 个将连接到 22 个新提议的 CCP 的地点。该网络优化方法和在此项目中建立的机构能力将继续为印度的免疫计划提供帮助。这种方法具有可复制性,可能会被面临地理、机构和财务限制等类似挑战的发展中国家利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50d4/8547487/702044381b2e/gr1.jpg

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