Cross-validation of modified fatness-specific bioelectrical impedance equations.

D W Lockner, V H Heyward, S E Griffin, M B Marques, L M Stolarczyk, D R Wagner
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引用次数: 6

Abstract

The Segal fatness-specific bioelectrical impedance (BIA) equations are useful for predicting fat-free mass (FFM). Stolarczyk et al. Proposed a modified method of averaging the two equations for individuals who are neither lean nor obese, thus eliminating the need to know % BF a priori. To cross-validate this modification, we compared FFM determined using the averaging method versus hydrostatic weighing for 76 adults. Per the averaging method, accuracy for males was excellent (r =.91, SEE = 2.7 kg, E = 2.7 kg), with 78% of individuals within +/- .5% BF predicted by hydrostatic weighing. Accuracy for females was lower (r =.88, SEE = 3.0 kg, E = 3.1 kg), with % BF of 51% within +/- 3.5% of the reference method. The relative ease and practicality of the averaging method and the results of this study indicate this method may be useful with a diverse group.

改进的肥胖特异性生物电阻抗方程的交叉验证。
Segal脂肪特异性生物电阻抗(BIA)方程可用于预测无脂质量(FFM)。Stolarczyk等人。提出了一种修正的方法,对既不瘦也不肥胖的个体求两个方程的平均值,从而消除了先验地知道% BF的需要。为了交叉验证这一修正,我们比较了76名成年人使用平均法和流体静力称重确定的FFM。根据平均方法,男性的准确性很好(r =。91, SEE = 2.7 kg, E = 2.7 kg),其中78%的个体在+/- 0.5% BF内,通过流体静力称重预测。女性的准确性较低(r =。88, SEE = 3.0 kg, E = 3.1 kg), % BF为51%,在参考方法的+/- 3.5%范围内。平均方法的相对简单和实用性以及本研究的结果表明,该方法可能适用于不同的群体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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