Silva Analiza M, Silva Tiago R, Júdice Pedro B, Rosa Gil B, Bernardino Ana V, Magalhães João P, Correia Inês R, Hetherington-Rauth Megan, Sardinha Luís B
Exercise and Health Laboratory, CIPER, Faculdade Motricidade Humana, Universidade Lisboa, Estrada da Costa, 1499-002 Cruz-Quebrada, Portugal.
Faculty of Nutrition and Food Sciences, University of Porto, Rua do Campo Alegre, 823, 4150-180 Porto, Portugal.
Br J Nutr. 2025 May 14;133(9):1202-1210. doi: 10.1017/S0007114525000510. Epub 2025 Mar 19.
Whole-body and regional raw bioelectrical impedance analysis (BIA) parameters have been used to develop lean soft tissue estimation prediction models. Still, no regional fat mass (FM) assessment models have been provided. Hence, we aimed to develop and validate BIA-derived equations to predict regional FM against dual-energy X-ray absorptiometry (DXA) in healthy adults. One hundred and forty-eight adults (77 females) were included in this cross-sectional investigation. DXA assessed whole-body and regional FM and raw bioelectrical parameters of distinct body regions were measured using a 50 kHz phase-sensitive BIA analyser. BIA-derived equations were developed for each sex using a stepwise multiple linear regression approach in 2/3 of the sample and cross-validated in the remaining sample. The BIA-derived equations exhibited moderate to very strong relationships ( < 0·001) with DXA-measured FM of all body regions in females ( = 0·650 to 0·907) and males ( = 0·401 to 0·807). Also, for all the models, no significant deviation from linearity was found ( > 0·10). Agreement analyses revealed no associations between the differences and the means of the predicted and DXA-derived FM. However, the limits of agreement were large, with individual errors exceeding 50 % in females and 70 % in males. While the new BIA-derived equations provide a valid estimate of regional FM in middle-aged healthy adults at the population level, demonstrating a cost-effective alternative to DXA for assessing regional FM, caution is advised when applying these equations for individual-level analysis.
全身和局部的原始生物电阻抗分析(BIA)参数已被用于建立瘦软组织估计预测模型。然而,尚未提供局部脂肪量(FM)评估模型。因此,我们旨在开发并验证基于BIA得出的方程,以针对健康成年人的双能X线吸收法(DXA)预测局部FM。这项横断面研究纳入了148名成年人(77名女性)。DXA评估全身和局部FM,并使用50 kHz相敏BIA分析仪测量不同身体区域的原始生物电参数。在2/3的样本中采用逐步多元线性回归方法为每种性别建立基于BIA的方程,并在其余样本中进行交叉验证。基于BIA的方程与女性(r = 0.650至0.907)和男性(r = 0.401至0.807)所有身体区域的DXA测量FM呈现中度至非常强的相关性(P < 0.001)。此外,对于所有模型,均未发现明显的线性偏差(P > 0.10)。一致性分析显示,预测的FM与DXA得出的FM之间的差异和均值之间无关联。然而,一致性界限较大,女性个体误差超过50%,男性超过70%。虽然新的基于BIA的方程在人群水平上为中年健康成年人的局部FM提供了有效的估计,证明了在评估局部FM方面是一种比DXA更具成本效益的替代方法,但在将这些方程应用于个体水平分析时建议谨慎。