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运动员使用四室模型的去脂体重生物电阻抗分析预测方程。

Fat-free Mass Bioelectrical Impedance Analysis Predictive Equation for Athletes using a 4-Compartment Model.

机构信息

Exercise and Health Laboratory, CIPER, Faculdade Motricidade Humana, Universidade de Lisboa, Cruz Quebrada, Portugal.

Department of Biomedical and Neuromotor Science, University of Bologna, Bologna, Italy.

出版信息

Int J Sports Med. 2021 Jan;42(1):27-32. doi: 10.1055/a-1179-6236. Epub 2020 Aug 7.

Abstract

Bioelectrical impedance analysis equations for fat-free mass prediction in healthy populations exist, nevertheless none accounts for the inter-athlete differences of the chemical composition of the fat-free mass. We aimed to develop a bioimpedance-based model for fat-free mass prediction based on the four-compartment model in a sample of national level athletes; and to cross-validate the new models in a separate cohort of athletes using a 4-compartment model as a criterion. There were 142 highly trained athletes (22.9±5.0 years) evaluated during their respective competitive seasons. Athletes were randomly split into development (n=95) and validation groups (n=47). The criterion method for fat-free mass was the 4-compartment model. Resistance and reactance were obtained with a phase-sensitive 50 kHz bioimpedance device. Athletic impedance-based models were developed (fat-free mass=- 2.261+0.327Stature/Resistance+0.525Weight+5.462*Sex, where stature is in cm, Resistance is in Ω, Weight is in kg, and sex is 0 if female or 1 if male). Cross validation revealed R of 0.94, limits of agreement around 10% variability and no trend, as well as a high concordance correlation coefficient. The new equation can be considered valid thus affording practical means to quantify fat-free mass in elite adult athletes.

摘要

现已有适用于健康人群的去脂体重预测的生物电阻抗分析方程,但这些方程都没有考虑到去脂体重化学成分在运动员之间的差异。本研究旨在建立一个基于生物电阻抗的去脂体重预测模型,该模型基于四 compartment 模型,样本为国家级运动员;并使用四 compartment 模型作为标准,在另一批运动员中交叉验证新模型。在各自的比赛季节,共有 142 名训练有素的运动员(22.9±5.0 岁)接受了评估。运动员被随机分为发展组(n=95)和验证组(n=47)。去脂体重的标准方法是四 compartment 模型。使用相位敏感 50 kHz 生物阻抗设备获得电阻和电抗。建立了基于运动的阻抗模型(去脂体重=-2.261+0.327身高/电阻+0.525体重+5.462*性别,其中身高以厘米为单位,电阻以欧姆为单位,体重以千克为单位,性别为女性时为 0,男性时为 1)。交叉验证显示 R 为 0.94,一致性界限约为 10%的可变性且无趋势,以及高的 concordance 相关系数。因此,新方程可以被认为是有效的,从而为量化精英成年运动员的去脂体重提供了实际手段。

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