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Estimation of percentage of body fat in field studies – a method based on relative elbow breadth (Frame Index) and BMI

  • Background Over the last 20 years, a decreasing trend in external skeletal robusticity and an increasing trend in overweight and obesity was observed worldwide in adults and children as modern lifestyles in nutritional and activity behavior have changed. However, body mass index (BMI) as a measure for overweight is not an ideal predictor of % body fat (%BF) either in children and adolescents or in adults. On the contrary, it disguises a phenomenon called “hidden obesity”. Objectives We aim to approximate %BF by combining skeletal robusticity and BMI and develop an estimation-based tool to identify normal weight obese children and adolescents. Sample and Methods We analyzed cross-sectional data on height, weight, elbow breadth, and skinfold thickness (triceps and subscapular) of German children aged 6 to 18 years (N=15,034). We used modified Hattori charts and multiple linear regression to develop a tool, the “%BF estimator”, to estimate %BF by using BMI and skeletal robusticity measured as FrameBackground Over the last 20 years, a decreasing trend in external skeletal robusticity and an increasing trend in overweight and obesity was observed worldwide in adults and children as modern lifestyles in nutritional and activity behavior have changed. However, body mass index (BMI) as a measure for overweight is not an ideal predictor of % body fat (%BF) either in children and adolescents or in adults. On the contrary, it disguises a phenomenon called “hidden obesity”. Objectives We aim to approximate %BF by combining skeletal robusticity and BMI and develop an estimation-based tool to identify normal weight obese children and adolescents. Sample and Methods We analyzed cross-sectional data on height, weight, elbow breadth, and skinfold thickness (triceps and subscapular) of German children aged 6 to 18 years (N=15,034). We used modified Hattori charts and multiple linear regression to develop a tool, the “%BF estimator”, to estimate %BF by using BMI and skeletal robusticity measured as Frame Index. Results Independent of sex and age an increase in BMI is associated with an increase in %BF, an increase in Frame Index is associated with a decrease in %BF. The developed tool “%BF estimator” allows the estimation of %BF per sex and age group after calculation of BMI and Frame Index. Conclusion The “%BF estimator” is an easily applicable tool for the estimation of %BF in respect of body composition for clinical practice, screening, and public health research. It is non-invasive and has high accuracy. Further, it allows the identification of normal weight obese children and adolescents.show moreshow less

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Metadaten
Author details: Rebekka MummORCiDGND, Anna Reimann, Christiane SchefflerORCiDGND
DOI:https://doi.org/10.52905/hbph.v1.3
ISSN:2748-9957
Title of parent work (English):Human Biology and Public Health
Publisher:Universitätsverlag Potsdam
Place of publishing:Potsdam
Editor(s):Christiane Scheffler, Slawomir Koziel, Michael Hermanussen, Barry Bogin
Publication type:Part of Periodical
Language:English
Publication year:2021
Publishing institution:Universität Potsdam
Publishing institution:Universitätsverlag Potsdam
Release date:2021/08/17
Tag:body composition; body fat estimator; hidden obesity; normal weigh obese; skeletal robusticity
Volume:2021
Issue:1
Number of pages:12
First page:1
Last Page:12
RVK - Regensburg classification:WX 6904, WU 4000
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Biochemie und Biologie
DDC classification:5 Naturwissenschaften und Mathematik / 57 Biowissenschaften; Biologie / 570 Biowissenschaften; Biologie
Peer review:Referiert
Publishing method:Universitätsverlag Potsdam
Open Access / Gold Open-Access
License (German):License LogoCC-BY - Namensnennung 4.0 International
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