Mapping geographical inequalities in oral rehydration therapy coverage in low-income and middle-income countries,

    Insights

    Oral rehydration solution (ORS) use increased, averting over 52,000 child deaths, but coverage remains low in many areas. Reducing geographical inequalities in ORS access is crucial for further reducing child mortality from diarrhoea.

    Area of Science:

    • Global Health
    • Epidemiology
    • Geospatial Analysis

    Background:

    • Diarrhoea remains a leading cause of child mortality in low- and middle-income countries (LMICs).
    • Oral rehydration therapy (ORT), including oral rehydration solution (ORS) and recommended home fluids (RHF), is a vital intervention.
    • Substantial gaps exist in ORS and RHF coverage, with unknown subnational variations.

    Purpose of the Study:

    • To generate high-resolution geospatial estimates of ORS, RHF, and overall ORT coverage in LMICs from 2000-2017.
    • To analyze subnational geographical inequalities in ORT access.
    • To estimate the number of child deaths averted by ORS scale-up.

    Main Methods:

    • Bayesian geostatistical modeling incorporating 15 spatial covariates.
    • Analysis of 385 household surveys across 94 LMICs.
    • Mapping of continuous surfaces and aggregation to administrative units with uncertainty quantification.

    Main Results:

    • ORS coverage increased in some regions but remained below 50% in most administrative units by 2017.
    • Overall ORT coverage showed little change due to concurrent declines in RHF with ORS increases.
    • An estimated 52,230 diarrhoeal deaths were averted between 2000-2017 due to ORS scale-up, yet significant subnational inequalities persist.

    Conclusions:

    • This study provides the first subnational estimates of ORT coverage and associated mortality across LMICs.
    • Addressing within-country disparities in ORS coverage is essential for further reducing child mortality.
    • Targeted interventions in high-mortality, low-coverage areas can maximize impact.
    Abstract

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