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Successive 1-Month Weight Increments in Infancy Can Be Used to Screen for Faltering Linear Growth
Adelheid W Onyango1, Elaine Borghi2, Mercedes de Onis2
1Family and Reproductive Health Cluster, WHO Regional Office for Africa, Brazzaville, Republic of Congo; onyangoa@who.int.
Insights
Early identification of stunting risk in infants is possible using monthly weight changes. A screening tool based on two consecutive low weight increments can help frontline workers initiate timely interventions for child growth.
Area of Science:
- Pediatrics
- Public Health
- Growth Monitoring
Background:
- Linear growth faltering in early life contributes to a high global stunting burden.
- Primary healthcare systems have limited capacity for timely screening and intervention of stunting.
Purpose of the Study:
- To develop and validate an approach for predicting long-term stunting using monthly weight increments in the first year of life.
Main Methods:
- Analysis of World Health Organization (WHO) velocity standards to identify patterns in infant weight increments.
- Selection and testing of a screening threshold (two consecutive monthly increments below the 15th percentile) in a Bangladeshi infant cohort.
Main Results:
- The selected screening criterion identified infants at risk for stunting at 12 and 24 months.
- The population-attributable risk of stunting associated with the identified criterion was 14% at 12 months and 9% at 24 months.
- An estimated 34% of stunting at 12 months and 24% at 24 months could be preventable if the screening strategy is effective.
Conclusions:
- This approach enables frontline workers to identify infants at risk of stunting for early intervention.
- Further research can explore evidence-informed applications of WHO growth velocity standards for stunting prevention.
Background:
Linear growth faltering in the first 2 y contributes greatly to a high stunting burden, and prevention is hampered by the limited capacity in primary health care for timely screening and intervention.
Objective:
This study aimed to determine an approach to predicting long-term stunting from consecutive 1-mo weight increments in the first year of life.
Methods:
By using the reference sample of the WHO velocity standards, the analysis explored patterns of consecutive monthly weight increments among healthy infants. Four candidate screening thresholds of successive increments that could predict stunting were considered, and one was selected for further testing. The selected threshold was applied in a cohort of Bangladeshi infants to assess its predictive value for stunting at ages 12 and 24 mo.
Results:
Between birth and age 12 mo, 72.6% of infants in the WHO sample tracked within 1 SD of their weight and length. The selected screening criterion ("event") was 2 consecutive monthly increments below the 15th percentile. Bangladeshi infants were born relatively small and, on average, tracked downward from approximately age 6 to <24 mo (51% stunted). The population-attributable risk of stunting associated with the event was 14% at 12 mo and 9% at 24 mo. Assuming the screening strategy is effective, the estimated preventable proportion in the group who experienced the event would be 34% at 12 mo and 24% at 24 mo.
Conclusions:
This analysis offers an approach for frontline workers to identify children at risk of stunting, allowing for timely initiation of preventive measures. It opens avenues for further investigation into evidence-informed application of the WHO growth velocity standards.
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