Vaccine network design to maximize immunization coverage

Author:

Goentzel JarrodORCID,Russell TimothyORCID,Carretti Henrique RibeiroORCID,Hashimoto YutoORCID

Abstract

PurposeThe COVID-19 pandemic has forced countries to consider how to reach vulnerable communities with extended outreach services to improve vaccination uptake. The authors created an optimization model to align with decision-makers' objective to maximize immunization coverage within constrained budgets and deploy resources considering empirical data and endogenous demand.Design/methodology/approachA mixed integer program (MIP) determines the location of outreach sites and the resource deployment across health centers and outreach sites. The authors validated the model and evaluated the approach in consultation with UNICEF using a case study from The Gambia.FindingsResults in The Gambia showed that by opening new outreach sites and optimizing resource allocation and scheduling, the Ministry of Health could increase immunization coverage from 91.0 to 97.1% under the same budget. Case study solutions informed managerial insights to drive gains in vaccine coverage even without the application of sophisticated tools.Originality/valueThe research extended resource constrained LMIC vaccine distribution modeling literature in two ways: first, endogenous calculation of demand as a function of distance to health facility location enabled the effective design of the vaccine network around convenience to the community and second, the model's resource bundle concept more accurately and flexibly represented complex requirements and costs for specific resources, which facilitated buy-in from stakeholders responsible for managing health budgets. The paper also demonstrated how to leverage empirical research and spatial analysis of publicly available demographic and geographic data to effectively represent important contextual factors.

Publisher

Emerald

Subject

Management Information Systems

Reference25 articles.

1. It's a long, long walk: accessibility to hospitals, maternity and integrated health centers in Niger;International Journal of Health Geographics,2012

2. Modelling beneficiaries' choice in disaster relief logistics;Annals of Operations Research,2017

3. A planning model for the WHO-EPI vaccine distribution network in developing countries;IIE Transactions,2014

4. Literature review: the vaccine supply chain;European Journal of Operational Research,2018

5. Factors affecting access to immunization services in the integrated outreach model: a case study of loima SUB county;Journal of Health, Medicine and Nursing,2018

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