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Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Is small for gestational age status independently correlated with body composition during childhood?
Foteini Balomenou1, Dimitrios Rallis2, Filippos Evangelou1
1Neonatal Intensive Care Unit, School of Medicine, University of Ioannina, Ioannina, Greece.
Insights
Children born small for gestational age (SGA) have lower body mass index (BMI) and lean mass compared to appropriate for gestational age (AGA) peers. This indicates a need for careful monitoring of SGA children
Area of Science:
- Pediatric Endocrinology
- Human Growth and Development
- Nutritional Science
Background:
- Deviant birth weight for gestational age is linked to increased childhood adiposity risk.
- Limited evidence exists on how small for gestational age (SGA) status impacts body composition and obesity in later childhood.
Purpose of the Study:
- To investigate the correlation between small for gestational age (SGA) status and body composition changes in prepubertal children.
- To compare body composition between SGA-born and appropriate for gestational age (AGA)-born children, controlling for confounding factors.
Main Methods:
- Anthropometric measurements, including waist circumference, BMI, and skinfold thickness, were taken.
- Body composition was assessed using bioelectrical impedance analysis in 636 children aged 7-10 years.
- Logistic regression analysis was employed to identify independent associations, considering various potential confounders.
Main Results:
- SGA-born children exhibited a significantly lower BMI z-score compared to AGA-born children (p < 0.050).
- A trend towards lower lean mass was observed in SGA children, though not statistically significant (p < 0.100).
- Logistic regression revealed a significant independent negative association between SGA status and both BMI (OR=0.70, p=0.019) and lean mass (OR=0.95, p=0.010).
Conclusions:
- Small for gestational age (SGA) status is independently associated with lower BMI and lean mass in school-aged children.
- Contrary to some expectations, SGA children in this cohort did not show increased adiposity or waist circumference.
- Meticulous monitoring of body composition is warranted for children born with deviant birth weights.
Abstract:
This study aims to examine if small for gestation age (SGA) status is correlated with alterations in body composition at prepuberty, independently of other factors, comparing SGA-born children with appropriate for gestational age (AGA)-born children. We examined anthropometrics, waist circumference, body mass index (BMI), six skinfold thickness, and body composition using the method of bioelectrical impedance in 636 children aged 7 to 10 years. We also considered age, gender, birth mode, mother's age, prepregnancy weight, weight gain during pregnancy, social status, parental BMI, type of feeding, and daily exercise. We examined 636 children at a mean age of 9 years: 106 SGA-born and 530 AGA-born children. SGA as compared to AGA-born children had a lower BMI z-score (0.26 ± 0.89 kg/cm2 vs 0.46 ± 0.84 kg/cm2, p < 0.050) and a lower lean mass, although that was not statistically significant (24.0 ± 6.6 kg vs 25.6 ± 6.4 kg, p < 0.100). SGA-born children presented no difference in waist circumference or fat mass in comparison to children born AGA. Logistic regression analysis revealed a strong independent negative association between SGA status and BMI (beta = - 2.33, OR = 0.70 p = 0.019) and SGA status and lean mass (beta = - 2.43, OR = 0.95 p = 0.010). Conclusion: Our findings suggest that SGA-born children had a lower BMI as compared to AGA-born subjects, whereas SGA status was negatively associated with BMI and lean mass. What is Known: • Deviant birth weight for gestation has been associated with an increased risk of childhood adiposity. • Evidence remains scarce on whether small for gestational age status affects body composition and obesity later in childhood. What is New: • Among school-aged children, small for gestational age subjects had a lower body mass index as compared to appropriate for gestational age counterparts, whereas small for gestational age status was negatively associated with body mass index and lean mass. • A meticulous observation is needed during childhood in children born with deviant birth weight.
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