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Updated: Jul 26, 2025

Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Growth trajectories during infancy have a significant impact on body composition in childhood
Foteini Balomenou1, Dimitrios Rallis1, Filippos Evangelou1
1Neonatal Intensive Care Unit, School of Medicine, University of Ioannina, Ioannina, Greece.
Insights
Children born small for gestational age (SGA) have lower lean mass. Postnatal growth velocity significantly impacts body composition, with slow growth linked to lower BMI and lean mass index in SGA children.
Area of Science:
- Pediatric Endocrinology
- Human Growth and Development
- Body Composition Analysis
Background:
- Infant growth trajectory significantly influences long-term body composition.
- Children born small for gestational age (SGA) may experience altered growth patterns.
- Understanding body composition differences between SGA and appropriate for gestational age (AGA) children is crucial.
Purpose of the Study:
- To examine body composition in SGA versus AGA children.
- To assess the impact of postnatal growth velocity on body composition in these groups.
- To identify factors associated with body composition in SGA and AGA children.
Main Methods:
- Study included 365 children (75 SGA, 290 AGA) aged 7–10 years.
- Evaluated anthropometrics, skinfold thickness, and body composition via bioelectrical impedance analysis.
- Defined growth velocity as rapid or slow based on z-scores of weight gain.
Main Results:
- SGA children exhibited significantly lower lean mass compared to AGA children at a mean age of 9 years.
- Body mass index (BMI) and lean mass index were negatively associated with SGA status.
- SGA children with slow postnatal growth had lower lean mass; rapid growth was linked to higher fat mass.
Conclusions:
- SGA-born children present with reduced lean mass compared to AGA-born children.
- Slow postnatal growth velocity is associated with lower BMI and lean mass index in SGA children.
- Postnatal growth trajectory plays a significant role in the body composition of SGA individuals.
Abstract:
Evidence supports that growth trajectory during infancy has a major impact on body composition. We aimed to examine body composition in children born small for gestational age (SGA) or appropriate for gestational age (AGA) adjusted for postnatal growth velocity. We enrolled 365 children, 75 SGA and 290 AGA, aged 7 to 10 years, examining anthropometrics, skinfold thickness, and body composition using bioelectrical impedance analysis. Growth velocity was defined as rapid or slow (weight gain > or <0.67 z-scores, respectively). Gestational age, sex, delivery mode, gestational diabetes, hypertension, nutrition, exercise, parental body mass index (BMI), and socioeconomic status were considered. At a mean of 9 years of age, SGA compared with AGA-born children, had significantly lower lean mass. BMI was negatively associated with SGA status (beta = 0.80, P = .046), after adjusting for birth weight, delivery mode, and breastfeeding. The lean mass index was negatively associated with SGA status (beta = 0.39, P = .018), after adjusting for the same factors. SGA-born participants with slow growth velocity had significantly lower lean mass in comparison to AGA-born counterparts. SGA-born children with rapid compared with those with slow growth velocity had significantly higher absolute fat mass. BMI was negatively associated with a slow postnatal growth pattern (beta = 0.59, P = .023), and the lean mass index was negatively associated with a slow postnatal growth pattern (beta = 0.78, P = .006), after adjusting for the same factors. In conclusion, SGA-born children presented a lower lean mass in comparison to AGA-born counterparts, whereas BMI and lean mass index were negatively associated with slow postnatal growth velocity.
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