Literature DB >> 25353076

Comparison of total and segmental body composition using DXA and multifrequency bioimpedance in collegiate female athletes.

Michael R Esco1, Ronald L Snarr, Matthew D Leatherwood, Nik A Chamberlain, Melvenia L Redding, Andrew A Flatt, Jordan R Moon, Henry N Williford.   

Abstract

The purpose of this investigation was to determine the agreement between multifrequency bioelectrical impedance analysis (BIA) and dual-energy x-ray absorptiometry (DXA) for measuring body fat percentage (BF%), fat-free mass (FFM), and total body and segmental lean soft tissue (LST) in collegiate female athletes. Forty-five female athletes (age = 21.2 ± 2.0 years, height = 166.1 ± 7.1 cm, weight = 62.6 ± 9.9 kg) participated in this study. Variables measured through BIA and DXA were as follows: BF%, FFM, and LST of the arms (ARMS(LST)), the legs (LEGS(LST)), the trunk (TRUNK(LST)), and the total body (TOTAL(LST)). Compared with the DXA, the InBody 720 provided significantly lower values for BF% (-3.3%, p < 0.001) and significantly higher values for FFM (2.1 kg, p < 0.001) with limits of agreement (1.96 SD of the mean difference) of ±5.6% for BF% and ±3.7 kg for FFM. No significant differences (p < 0.008) existed between the 2 devices (InBody 720-DXA) for ARMS(LST) (0.05 kg), TRUNK(LST) (0.14 kg), LEGS(LST) (-0.4 kg), and TOTAL(LST) (-0.21 kg). The limits of agreement were ±0.79 kg for ARMS(LST), ±2.62 kg for LEGS(LST), ±3.18 kg for TRUNK(LST), and ±4.23 kg for TOTAL(LST). This study found discrepancies in BF% and FFM between the 2 devices. However, the InBody 720 and DXA appeared to provide excellent agreement for measuring total body and segmental LST. Therefore, the InBody 720 may be a rapid noninvasive method to assess LST in female athletes when DXA is not available.

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Year:  2015        PMID: 25353076     DOI: 10.1519/JSC.0000000000000732

Source DB:  PubMed          Journal:  J Strength Cond Res        ISSN: 1064-8011            Impact factor:   3.775


  18 in total

1.  Comparison of Multi-Frequency Bioelectrical Impedance and Dual-Energy X-Ray Absorptiometry to Assess Body Composition in College-Aged Adults.

Authors:  Rachel N Tauber; Clayton L Camic; Shuqi Zhang; Peter J Chomentowski
Journal:  Int J Exerc Sci       Date:  2020-12-01

2.  How Length Sizes Affect Body Composition Estimation in Adolescent Athletes Using Bioelectrical Impedance.

Authors:  Katinka Utczás; Zsófia Tróznai; Gergely Pálinkás; Irina Kalabiska; Leonidas Petridis
Journal:  J Sports Sci Med       Date:  2020-08-13       Impact factor: 2.988

3.  Development and validation of bioelectrical impedance prediction equations estimating regional lean soft tissue mass in middle-aged adults.

Authors:  Luís B Sardinha; Gil B Rosa; Megan Hetherington-Rauth; Inês R Correia; João P Magalhães; Analiza M Silva; Henry Lukaski
Journal:  Eur J Clin Nutr       Date:  2022-10-17       Impact factor: 4.884

4.  Bioelectrical impedance analysis versus reference methods in the assessment of body composition in athletes.

Authors:  Francesco Campa; Luis Alberto Gobbo; Silvia Stagi; Leticia Trindade Cyrino; Stefania Toselli; Elisabetta Marini; Giuseppe Coratella
Journal:  Eur J Appl Physiol       Date:  2022-01-24       Impact factor: 3.078

5.  New Frontiers of Body Composition in Sport.

Authors:  Henry Lukaski; Christiana J Raymond-Pope
Journal:  Int J Sports Med       Date:  2021-02-23       Impact factor: 2.997

6.  Body Composition Evaluation Issue among Young Elite Football Players: DXA Assessment.

Authors:  César Leão; Mário Simões; Bruno Silva; Filipe Manuel Clemente; Pedro Bezerra; Miguel Camões
Journal:  Sports (Basel)       Date:  2017-02-23

7.  Use of Bioelectrical Impedance Analysis for the Measurement of Appendicular Skeletal Muscle Mass/Whole Fat Mass and Its Relevance in Assessing Osteoporosis among Patients with Low Back Pain: A Comparative Analysis Using Dual X-ray Absorptiometry.

Authors:  Kazuki Fujimoto; Kazuhide Inage; Yawara Eguchi; Sumihisa Orita; Miyako Suzuki; Go Kubota; Takeshi Sainoh; Jun Sato; Yasuhiro Shiga; Koki Abe; Hirohito Kanamoto; Masahiro Inoue; Hideyuki Kinoshita; Masaki Norimoto; Tomotaka Umimura; Masao Koda; Takeo Furuya; Tsutomu Akazawa; Toru Toyoguchi; Atsushi Terakado; Kazuhisa Takahashi; Seiji Ohtori
Journal:  Asian Spine J       Date:  2018-09-10

8.  Specific characterization of regional storage fat in upper and lower limbs of young healthy adults.

Authors:  Junichiro Yamauchi; Toshiyuki Kurihara; Takeshi Hashimoto; Maki Yoshikawa; Sadayoshi Taguchi
Journal:  Springerplus       Date:  2015-08-08

9.  Comparisons of a Multi-Frequency Bioelectrical Impedance Analysis to the Dual-Energy X-Ray Absorptiometry Scan in Healthy Young Adults Depending on their Physical Activity Level.

Authors:  Julien Verney; Chloé Schwartz; Saliha Amiche; Bruno Pereira; David Thivel
Journal:  J Hum Kinet       Date:  2015-10-14       Impact factor: 2.193

10.  The Effect of the Menstrual Cycle on Body Composition Determined by Contact-Electrode Bioelectrical Impedance Analyzers.

Authors:  Emily A Cumberledge; Cassandra Myers; Jennifer J Venditti; Curt B Dixon; Joseph L Andreacci
Journal:  Int J Exerc Sci       Date:  2018-01-01
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