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Which Body Density Equations Calculate Body Fat Percentage Better in Olympic Wrestlers?—Comparison Study with Air Displacement Plethysmography

Although skinfold-derived equations seem to be practical for field application in estimating body fat percentage (BF%) and minimum body mass in Olympic wrestlers, prediction equations applied first need to be cross-validated in Olympic wrestlers to define the best prediction equation. This study aim...

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Autores principales: Devrim-Lanpir, Aslı, Badem, Ebru Arslanoğlu, Işık, Hatice, Çakar, Aslıhan Nefes, Kabak, Banu, Akınoğlu, Bihter, Kocahan, Tuğba, Hasanoğlu, Adnan, Rosemann, Thomas, Knechtle, Beat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8306702/
https://www.ncbi.nlm.nih.gov/pubmed/34357079
http://dx.doi.org/10.3390/life11070707
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author Devrim-Lanpir, Aslı
Badem, Ebru Arslanoğlu
Işık, Hatice
Çakar, Aslıhan Nefes
Kabak, Banu
Akınoğlu, Bihter
Kocahan, Tuğba
Hasanoğlu, Adnan
Rosemann, Thomas
Knechtle, Beat
author_facet Devrim-Lanpir, Aslı
Badem, Ebru Arslanoğlu
Işık, Hatice
Çakar, Aslıhan Nefes
Kabak, Banu
Akınoğlu, Bihter
Kocahan, Tuğba
Hasanoğlu, Adnan
Rosemann, Thomas
Knechtle, Beat
author_sort Devrim-Lanpir, Aslı
collection PubMed
description Although skinfold-derived equations seem to be practical for field application in estimating body fat percentage (BF%) and minimum body mass in Olympic wrestlers, prediction equations applied first need to be cross-validated in Olympic wrestlers to define the best prediction equation. This study aimed to evaluate the most accurate field method to predict BF% in Olympic wrestlers compared to BF% estimated by air displacement plethysmography (ADP). Sixty-one male (body mass 72.4 ± 13.5 kg; height 170.3 ± 7.0 cm; body mass index (BMI) 24.9 ± 3.5 kg.m(−2); BF% 8.5 ± 4.9%) and twenty-five female wrestlers (body mass 60.3 ± 9.9 kg; height 161.3 ± 7.1 cm; BMI 23.1 ± 2.5 kg.m(−2); BF% 18.7 ± 4.7%) undertook body composition assessments including ADP and nine-site skinfold measurements. Correlations, bias, limits of agreement, and standardized differences between alterations in BF% measured by ADP and other prediction equations were evaluated to validate measures, and multiple regression analyses to develop an Olympic wrestlers-specific prediction formula. The Stewart and Hannan equation for male wrestlers and the Durnin and Womersley equation for female wrestlers provided the most accurate BF% compared to the measured BF% by ADP, with the lowest bias and presented no significant differences between the measured and predicted BF%. A new prediction equation was developed using only abdominal skinfold and sex as variables, predicting 83.2% of the variance. The findings suggest the use of the new wrestler-specific prediction equation proposed in the study as a valid and accurate alternative to ADP to quantify BF% among Olympic wrestlers.
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spelling pubmed-83067022021-07-25 Which Body Density Equations Calculate Body Fat Percentage Better in Olympic Wrestlers?—Comparison Study with Air Displacement Plethysmography Devrim-Lanpir, Aslı Badem, Ebru Arslanoğlu Işık, Hatice Çakar, Aslıhan Nefes Kabak, Banu Akınoğlu, Bihter Kocahan, Tuğba Hasanoğlu, Adnan Rosemann, Thomas Knechtle, Beat Life (Basel) Article Although skinfold-derived equations seem to be practical for field application in estimating body fat percentage (BF%) and minimum body mass in Olympic wrestlers, prediction equations applied first need to be cross-validated in Olympic wrestlers to define the best prediction equation. This study aimed to evaluate the most accurate field method to predict BF% in Olympic wrestlers compared to BF% estimated by air displacement plethysmography (ADP). Sixty-one male (body mass 72.4 ± 13.5 kg; height 170.3 ± 7.0 cm; body mass index (BMI) 24.9 ± 3.5 kg.m(−2); BF% 8.5 ± 4.9%) and twenty-five female wrestlers (body mass 60.3 ± 9.9 kg; height 161.3 ± 7.1 cm; BMI 23.1 ± 2.5 kg.m(−2); BF% 18.7 ± 4.7%) undertook body composition assessments including ADP and nine-site skinfold measurements. Correlations, bias, limits of agreement, and standardized differences between alterations in BF% measured by ADP and other prediction equations were evaluated to validate measures, and multiple regression analyses to develop an Olympic wrestlers-specific prediction formula. The Stewart and Hannan equation for male wrestlers and the Durnin and Womersley equation for female wrestlers provided the most accurate BF% compared to the measured BF% by ADP, with the lowest bias and presented no significant differences between the measured and predicted BF%. A new prediction equation was developed using only abdominal skinfold and sex as variables, predicting 83.2% of the variance. The findings suggest the use of the new wrestler-specific prediction equation proposed in the study as a valid and accurate alternative to ADP to quantify BF% among Olympic wrestlers. MDPI 2021-07-17 /pmc/articles/PMC8306702/ /pubmed/34357079 http://dx.doi.org/10.3390/life11070707 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Devrim-Lanpir, Aslı
Badem, Ebru Arslanoğlu
Işık, Hatice
Çakar, Aslıhan Nefes
Kabak, Banu
Akınoğlu, Bihter
Kocahan, Tuğba
Hasanoğlu, Adnan
Rosemann, Thomas
Knechtle, Beat
Which Body Density Equations Calculate Body Fat Percentage Better in Olympic Wrestlers?—Comparison Study with Air Displacement Plethysmography
title Which Body Density Equations Calculate Body Fat Percentage Better in Olympic Wrestlers?—Comparison Study with Air Displacement Plethysmography
title_full Which Body Density Equations Calculate Body Fat Percentage Better in Olympic Wrestlers?—Comparison Study with Air Displacement Plethysmography
title_fullStr Which Body Density Equations Calculate Body Fat Percentage Better in Olympic Wrestlers?—Comparison Study with Air Displacement Plethysmography
title_full_unstemmed Which Body Density Equations Calculate Body Fat Percentage Better in Olympic Wrestlers?—Comparison Study with Air Displacement Plethysmography
title_short Which Body Density Equations Calculate Body Fat Percentage Better in Olympic Wrestlers?—Comparison Study with Air Displacement Plethysmography
title_sort which body density equations calculate body fat percentage better in olympic wrestlers?—comparison study with air displacement plethysmography
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8306702/
https://www.ncbi.nlm.nih.gov/pubmed/34357079
http://dx.doi.org/10.3390/life11070707
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