Department of Sports Exercise Science, United States Sports Academy, Daphne, AL, USA.
Eur J Clin Nutr. 2013 Jan;67 Suppl 1:S54-9. doi: 10.1038/ejcn.2012.165.
BACKGROUND/OBJECTIVES: The purpose of the current review was to evaluate how body composition can be utilised in athletes, paying particular attention to the bioelectrical impedance analysis (BIA) technique.
SUBJECTS/METHODS: Various body composition methods are discussed, as well as the unique characteristics of athletes that can lead to large errors when predicting fat mass (FM) and fat-free mass (FFM). Basic principles of BIA are discussed, and past uses of the BIA technique in athletes are explored. Single-prediction validation studies and studies tracking changes in FM and FFM are discussed with applications for athletes.
Although extensive research in the area of BIA and athletes has been conducted, there remains a large gap in the literature pertaining to a single generalised athlete equation developed using a multiple-compartment model that includes total body water (TBW).
Until a generalised athlete-specific BIA equation developed from a multiple-compartment is published, it is recommended that generalised equations such as those published by Lukaski and Bolonchuk and Lohman be used in athletes. However, BIA equations developed for specific athletes may also produce acceptable values and are still acceptable for use until more research is conducted. The use of a valid BIA equation/device should produce values similar to those of hydrostatic weighing and dual-energy X-ray absorptiometry. However, researchers and practitioners need to understand the individual variability associated with BIA estimations for both single assessments and repeated measurements. Although the BIA method shows promise for estimating body composition in athletes, future research should focus on the development of general athlete-specific equations using a TBW-based three- or four-compartment model.
背景/目的:本综述的目的是评估身体成分在运动员中的应用,特别关注生物电阻抗分析(BIA)技术。
受试者/方法:讨论了各种身体成分方法,以及运动员的独特特征,这些特征可能导致在预测脂肪量(FM)和去脂体重(FFM)时出现较大误差。讨论了 BIA 的基本原理,以及过去在运动员中使用 BIA 技术的情况。讨论了用于运动员的单预测验证研究和 FM 和 FFM 变化的跟踪研究及其应用。
尽管 BIA 和运动员领域已经进行了广泛的研究,但在使用包括总体水(TBW)的多腔模型开发单一综合运动员方程方面,文献中仍存在很大差距。
在发布基于多腔的综合运动员专用 BIA 方程之前,建议在运动员中使用 Lukaski 和 Bolonchuk 以及 Lohman 发表的通用方程。但是,为特定运动员开发的 BIA 方程也可能产生可接受的值,并且在进行更多研究之前仍然可以接受使用。使用有效的 BIA 方程/设备应产生与静水称重和双能 X 射线吸收法相似的值。然而,研究人员和从业者需要了解 BIA 估计值的个体可变性,无论是单次评估还是重复测量。尽管 BIA 方法在估计运动员的身体成分方面显示出前景,但未来的研究应侧重于使用基于 TBW 的三腔或四腔模型开发通用的运动员专用方程。