Determining total energy expenditure in 3-6-year-old Japanese pre-school children using the doubly labeled water method

J Physiol Anthropol. 2022 Aug 5;41(1):28. doi: 10.1186/s40101-022-00301-4.

Abstract

The doubly labeled water (DLW, 2H218O) method for calculating the total production of CO2 over several days is currently considered to be the most accurate technique for the measurement of total energy expenditure (TEE), and the results obtained using this method have been used to review energy requirements. Presently, there is limited data available on TEE in Japanese children. The objective of this study was to assess the TEE in pre-school Japanese children using the DLW method. We used a cross-sectional population of 140 children (69 boys and 71 girls) aged 3-6 years. TEE was measured using the DLW method over 8 days under free-living conditions. The average weights (kg) of the boys and girls were 15.6 ± 2.5 and 15.0 ± 2.1 for the 3-4 years old and 19.8 ± 3.8 and 19.6 ± 2.7 for the 5-6 years old, respectively. The corresponding TEE (kcal/day) was 1260.9 ± 357.8 and 1265.2 ± 408.0, and 1682.3 ± 489.0 and 1693.1 ± 473.3, respectively, showing a significant difference with respect to age. Furthermore, TEE per body weight (kcal/kg/day) was 83.2 ± 29.2 and 84.9 ± 26.6, and 85.4 ± 23.2 and 86.7 ± 22.6, respectively. However, when TEE was adjusted for body weight or fat-free mass, there were no age or sex differences. We conclude that in Japanese children, TEE in those aged 3-4 years was similar to the current Ministry of Health recommendations. However, TEE in children aged 5-6 years was slightly higher than the recommendations. Based on these findings, the present results obtained from a large number of participants will provide valuable reference data for Japanese children.

Keywords: Doubly labeled water method; Pre-school Japanese children; Total energy expenditure.

MeSH terms

  • Body Weight
  • Child
  • Child, Preschool
  • Cross-Sectional Studies
  • Energy Metabolism*
  • Female
  • Humans
  • Japan
  • Male
  • Water*

Substances

  • Water