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Updated: Jun 26, 2025

Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Association between preterm infant body composition in the first 3 months of life and preschool age: a cohort study
Sylvia Reis Gonçalves Nehab1, Letícia Duarte Villela2, Andrea Dunshee Abranches3
1Instituto Nacional da Mulher, da Criança e do Adolescente Fernandes Figueira, Oswaldo Cruz Foundation, FIOCRUZ, Avenida Rui Barbosa 716, Flamengo, Rio de Janeiro/RJ, CEP, Neonatology, 22250020, Brazil. sylvia.nehab@gmail.com.
Insights
Preterm infants
Area of Science:
- Pediatrics
- Neonatology
- Metabolic Health
Background:
- Preterm infants exhibit lower fat-free mass and higher adiposity at term equivalent age compared to full-term infants.
- Fat-free mass is crucial for metabolic capacity and protection against metabolic syndrome.
- Early life body composition influences long-term metabolic health outcomes.
Purpose of the Study:
- To investigate the association between early body composition in preterm infants and their fat-free mass at preschool and school ages.
- To identify critical periods in early infancy for predicting later body composition and metabolic health.
Main Methods:
- A cohort study involving preterm infants (born <32 weeks gestation or <1500g).
- Body composition assessed using air displacement plethysmography and anthropometry at term equivalent age, 3 months corrected age, and 4-7 years.
- Multiple linear regression analysis to determine associations.
Main Results:
- Higher fat-free mass at term equivalent age was positively associated with fat-free mass at 4-7 years.
- Higher fat mass percentage at term equivalent age was negatively associated with fat-free mass at 4-7 years.
- Greater fat-free mass gain between term and 3 months corrected age positively correlated with fat-free mass at 4-7 years.
Conclusions:
- Early body composition, particularly fat-free mass and its gain in the first 3 months, is significantly associated with preschool/school-age body composition.
- The first 3 months of corrected age represent a sensitive window for interventions aimed at mitigating metabolic disease risk in preterm infants.
Abstract:
Compared with full-term infants, preterm infants have fat-free mass deficit in the first months of life, which increases the risk of metabolic diseases in the future. In this cohort of children born under 32-week gestational age or less than 1500 g, we aimed to evaluate the associations of body composition at term equivalent age and in the first 3 months of life with fat-free mass and fat mass percentage at 4 to 7 years of life. Body composition assessments by air displacement plethysmography and anthropometry were performed at term, at 3 months of corrected age, and at 4 to 7 years of age. Multiple linear regression analysis was used to observe the associations between body composition at these ages. At term, fat mass percentage showed a negative association and fat-free mass a positive association with fat-free mass at 4 to 7 years. The fat-free mass at 3 months and the gain in fat-free mass between term and 3 months showed positive associations with fat-free mass at 4 to 7 years. Conclusion: Body composition at preschool age is associated with fat-free mass in the first 3 months of life, a sensitive period for the risk of metabolic diseases. What is Known: • Preterm infants have a deficit in fat-free mass and high adiposity at term equivalent age compared to full-term infants. • Fat-free mass reflects metabolic capacity throughout life and therefore is considered a protective factor against the risk of metabolic syndrome. What is New: •Fat-free mass gain in the first 3 months of corrected age is associated with fat-free mass at preschool and school ages. •The first 3 months of life is a sensitive period to the risk of metabolic diseases.
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