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Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Determinants of fat mass in prepubertal children
M J Müller1, A Grund, H Krause
1Institut für Humanernährung und Lebensmittelkunde, (Abteilung Ernährung des Menschen) der Christian-Albrechts Universität zu Kiel, Germany. mmueller@nutrfoodsc.uni-kiel.de
Insights
Overweight children have higher body fat and resting energy expenditure (EE) than normal-weight children. Resting EE, adjusted for fat-free mass, is the key factor determining body fat percentage in children.
Area of Science:
- Pediatric Obesity Research
- Human Metabolism Studies
- Childhood Fitness Assessment
Background:
- Childhood obesity is a growing concern with complex metabolic and physical activity components.
- Understanding the interplay between body composition, energy expenditure, and fitness is crucial for intervention strategies.
Purpose of the Study:
- To compare metabolic, physical activity, and fitness variables with body composition in normal-weight versus overweight prepubertal children.
- To identify key determinants of body fat percentage in children.
Main Methods:
- Cross-sectional study of 48 children (ages 5-11), including normal-weight and overweight groups.
- Assessed body composition (anthropometry, BIA), resting and total energy expenditure (indirect calorimetry, HR monitoring), physical activity level (PAL), aerobic fitness, and muscle strength.
- Used stepwise multivariate regression to analyze determinants of fat mass.
Main Results:
- Overweight children exhibited significantly higher skinfolds, fat mass, waist/hip circumferences, resting EE, and RER compared to normal-weight children.
- No significant differences were found in fat-free mass, total EE, PAL, aerobic fitness, or muscle strength between groups.
- Resting EE (adjusted for fat-free mass) and the difference between measured and estimated resting EE (Delta resting EE) were significant predictors of % fat mass.
Conclusions:
- Resting energy expenditure, particularly when adjusted for fat-free mass, is the most significant determinant of fat mass in children.
- While overweight children have higher resting EE, their physical activity and fitness levels are comparable to normal-weight peers.
- Further research into the specific components of resting EE may offer targeted approaches to managing childhood obesity.
Abstract:
The aim of the present study was to compare variables of metabolism, physical activity and fitness to body composition in normal and overweight children in a cross-sectional study design. Body composition was assessed by anthropometric measurements and bioelectrical impedance analysis in forty-eight prepubertal children (age 5-11 years, thirteen normal-weight, thirty-five overweight). Total energy expenditure (EE) was measured by combination of indirect calorimetry (for measurement of resting EE) and individually calibrated 24 h heart-rate (HR) monitoring. Activity-related EE and physical activity level (PAL) were calculated. Time spent with min-by-min HR>FLEX HR was also used as a marker of moderate habitual and vigorous activities. Aerobic fitness (O2 pulse (O2 consumption:HR at submaximal steady-state heart rate), submaximal O2 consumption (VO2submaximal), RER at a HR of 170 beats per min) was determined by bicycle ergometry. Muscle strength of the legs (maximal isometric strength of musculus quadriceps and of musculus ischiocruralis (Fa max and Fb max respectively)) was measured by computer tensiometry. When compared with normal children, overweight children had higher skinfold thicknesses (sum of skinfold thicknesses at four sites +160 %), fat mass (+142 %), waist (+24 %) and hip circumferences (+14 %), resting EE (+13 %) and RER (+5 %). No significant group differences were found for fat-free mass, muscle mass, total EE, activity-related EE, PAL, HR>FLEX HR, VO2submaximal, O2 pulse, Fa max and Fb max as well as the fat-free mass- or muscle mass-adjusted values for resting EE, aerobic fitness and muscle strength. When compared with normal children, overweight children had a lower measured v. estimated resting EE (Delta resting EE) and spent more time watching television. There were positive relationships between fat-free mass(x) and resting EE(x), total EE(y), aerobic fitness(y) and muscle strength(y), but only Delta resting EE(x) and HR>FLEX HR(x) correlated with fat mass(y). In a stepwise multivariate regression analysis resting EE adjusted for fat-free mass and Delta resting EE were significant determinants of % fat mass and explained 29.7 % of its variance. Thus, in the present cross-sectional study, resting EE was the most important determinant of fat mass.
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