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Published on: June 29, 2013
Preconception and Prenatal Environment and Growth Faltering Among Children in Uganda
Paddy Ssentongo1,2, Claudio Fronterre3, Jessica E Ericson4
1Division of Infectious Diseases and Epidemiology, Department of Medicine, Penn State Hershey Medical Center, Hershey, Pennsylvania.
Insights
Prenatal and preconception weather patterns, including rainfall and drought indices, significantly impact child growth in Uganda. Understanding these environmental factors can improve public health strategies for child nutrition.
Area of Science:
- Environmental epidemiology
- Child health
- Public health
Background:
- Childhood growth faltering increases susceptibility to infections and can lead to developmental impairments.
- Understanding environmental influences on child growth is crucial for targeted interventions.
Purpose of the Study:
- To investigate the association between prenatal and preconception meteorological and environmental factors and childhood growth outcomes in Uganda.
- To analyze village-level growth faltering rates in relation to environmental exposures.
Main Methods:
- Cross-sectional study using data from the 2016 Ugandan Demographic and Health Survey (n=5219, aged 0-59 months).
- Assessed meteorological factors (SPEI, Aridity Index, rainfall, temperature), environmental data (nighttime lights, driving time), and topography.
- Analyzed height-for-age (HAZ), weight-for-age (WAZ), and weight-for-height (WHZ) z scores, with spatial resolution estimates.
Main Results:
- 30.22% stunting, 12.23% underweight, and 3.63% wasting observed in children.
- Significant spatial disparities in growth faltering prevalence across Uganda.
- Higher Standardized Precipitation-Evapotranspiration Index (SPEI) and rainfall before birth were positively associated with improved HAZ, WAZ, and WHZ.
Conclusions:
- Prenatal and preconception rainfall and water availability positively correlate with child nutritional status in Uganda.
- Environmental factors significantly influence the spatial distribution of undernutrition.
- Findings can inform precision public health programs for cost-effective delivery.
Importance:
Children with growth faltering are more susceptible to infections and may experience cognitive, physical, and metabolic developmental impairments.
Objective:
To assess whether prenatal and preconception meteorological and environmental factors are associated with village-level rates of childhood growth outcomes in Uganda.
Design, Setting, And Participants:
This cross-sectional study used data collected between June 20, 2015, and December 16, 2016, from the 2016 Ugandan Demographic and Health Survey for individuals aged 0 to 59 months with available anthropometric measures (weight and length or height). Data analysis was conducted from October 2020 to April 2024.
Exposures:
Factors assessed included meteorological information, such as drought index (Standardized Precipitation-Evapotranspiration Index [SPEI]), Aridity Index, rainfall, temperature, and vegetation indices; demographic and economic development factors (nighttime light emissions, driving time to the nearest city); and land topography (slope angle, elevation above sea level).
Main Outcomes And Measures:
The main outcomes were height-for-age z score (HAZ), weight-for-age z score (WAZ), and weight-for-height z score (WHZ). Spatial resolution estimates, at 1 km × 1 km of childhood growth faltering indicators, were created.
Results:
Of the 5219 individuals aged 0 to 59 months included in the analysis, 2633 (50%) were female; mean (SD) age was 29 (17) months. Of these individuals, 30.22% (95% CI, 29.36%-30.98%) had stunting, 12.23% (95% CI, 11.55%-12.91%) had underweight, and 3.63% (95% CI, 3.46%-3.80%) had wasting. Large disparities in the burden of childhood growth faltering existed within Uganda at smaller and larger spatial scales; villages in the northeastern and southwestern areas of the country had the highest prevalence of all forms of growth faltering (stunting, >40%; underweight, >16%; and wasting, >6%). Higher SPEI at 3 months before birth was positively associated with all childhood growth outcomes: HAZ (β, 0.06; 95% CI, 0.02-0.10), WAZ (β, 0.04; 95% CI, 0.01-0.07), and WHZ (β, 0.03; 95% CI, 0.001-0.06). Higher location mean rainfall 11 months before birth was also positively associated with HAZ (β, 0.06; 95% CI, 0.01-0.10). Aridity Index associations with WAZ (β, 0.09; 95% CI, 0.04-0.13) and WHZ (β, 0.09; 95% CI, 0.02-0.16) were consistent with findings for SPEI.
Conclusions And Relevance:
In this study of 5219 individuals 0 to 59 months of age in Uganda, rainfall and long-term availability of water at preconception and during gestation were positively associated with nutritional child growth outcomes. Understanding the relative contributions of meteorological environment factors on the spatial distribution of undernutrition at various spatial scales within Uganda (from the village to the district level) may help in the design of more cost-effective delivery of precision public health programs.
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