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Updated: May 17, 2026

Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Is low birth weight associated with adiposity in contemporary U.S. youth? The Exploring Perinatal Outcomes among
1Department of Epidemiology, Colorado School of Public Health, University of Colorado Denver, Aurora, Colorado, USA.
Insights
Low birth weight (BW) is weakly linked to higher childhood BMI but inversely associated with abdominal subcutaneous fat, suggesting in utero under-nutrition impacts body composition. This finding is crucial for understanding long-term child health outcomes.
Area of Science:
- Pediatric Endocrinology
- Nutritional Science
- Body Composition Analysis
Background:
- Low birth weight (BW) is a marker for in utero under-nutrition.
- The relationship between BW and childhood adiposity is not well understood.
- Adiposity parameters include BMI, skinfolds, abdominal SAT/VAT, and IMCL.
Purpose of the Study:
- To explore the association between BW and childhood adiposity markers.
- To investigate BW's link with BMI, SAT, VAT, and IMCL in children.
- To analyze these associations in a contemporary, multi-ethnic cohort.
Main Methods:
- The EPOCH Study enrolled 442 children aged 6-13 years.
- Measurements included anthropometry, MRI for SAT/VAT, and NMR spectroscopy for IMCL.
- BW and gestational age were obtained from perinatal databases.
Main Results:
- A weak positive association was found between BW and current BMI (P=0.05).
- Each SD decrease in BW correlated with an 8.8 cm² increase in SAT, independent of BMI.
- No significant associations were observed for BW with waist circumference, skinfolds, VAT, or IMCL.
Conclusions:
- BW shows a weak positive association with childhood BMI.
- BW is inversely associated with SAT, independent of current BMI.
- Lower BW may indicate a propensity for abdominal adiposity, primarily subcutaneous, in youth.
Abstract:
Little is known about the relationship between low birth weight (BW), as a marker of under-nutrition in utero, and childhood body mass index (BMI) and adiposity parameters, including skinfold thickness, abdominal subcutaneous (SAT) and visceral adipose tissues (VAT) and intramyocellular accumulation of lipids (IMCL). The EPOCH Study (Exploring Perinatal Outcomes among Children) explored the association between BW and markers of adiposity in contemporary, multi-ethnic children from Colorado. A total of 442 youth age 6-13 years (50% male, mean age 10.5 years) had anthropometric measurements, abdominal SAT and VAT measured by magnetic resonance imaging and IMCL deposition in the soleus muscle measured by nuclear magnetic resonance spectroscopy. BW and gestational age were ascertained from an electronic perinatal database. A weak positive association between BW and current BMI (P=0.05) was seen, independent of demographic, perinatal, socio-economic and current lifestyle factors. When adjusted for current BMI, every one standard deviation decrease in BW (~500 g), was associated with a 8.8 cm(2) increase in SAT, independent of potential confounders. In conclusion, in a contemporary cohort of youth, BW was positively, but weakly, associated with BMI and inversely, though weakly, associated with SAT, independent of current BMI. There were no significant associations between BW and waist circumference, skinfolds, VAT and IMCL. Our results provide some support to the hypothesis that under-nutrition in utero, as reflected by lower BW, is associated with lower overall childhood body size, but an increased propensity for abdominal adiposity, reflected in this young age-group, predominantly as subcutaneous fat.
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