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VO2max prediction from multi-frequency bioelectrical impedance analysis

机译:多频生物电阻抗分析中的VO2max预测

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Bioelectrical impedance analysis (BIA) has been shown to be highly related to skeletal muscle mass and blood volume, both of which are important determinants of maximal oxygen uptake (VO2max). The aim of the present study was therefore to investigate the ability of whole-body and segmental multi-frequency BIA to improve current nonexercise VO2max prediction models. Data for VO2max (mL min(-1)), anthropometry, self-reported physical activity (PA-R) and BIA were collected in 115 men and women. Multiple linear regression analysis (MLR) was used to develop the most parsimonious prediction model. Segmental BIA was not superior to whole-body measurements. Correlation coefficients between VO2max and resistance indices were significantly higher at 500 kHz compared to 50 kHz (p < 0.05). Intracellular resistance index, however, showed the highest correlation with VO2max (r = 0.89). After adjusting for age, gender and PA-R, MLR revealed that the inclusion of intracellular resistance index was slightly, but significantly (p < 0.001), superior to models based on anthropometry. Subgroup analyses indicated that the true benefit of BIA might be most prevalent in subjects with particularly low. VO2max (< 2500 mL min(-1)). In short, whole-body BIA marginally improves the accuracy of nonexercise VO2max prediction models and its advantage is most pronounced in individuals with particularly low VO2max.
机译:生物电阻抗分析(BIA)已显示与骨骼肌质量和血容量高度相关,两者都是最大摄氧量(VO2max)的重要决定因素。因此,本研究的目的是研究全身和分段多频BIA改善当前非运动VO2max预测模型的能力。收集了115位男性和女性的最大摄氧量(mL min(-1)),人体测量法,自我报告的体育活动(PA-R)和BIA。多元线性回归分析(MLR)用于开发最简约的预测模型。分段BIA并不优于全身测量。 VO2max与电阻指数之间的相关系数在500 kHz时显着高于50 kHz(p <0.05)。然而,细胞内抗性指数与最大摄氧量相关性最高(r = 0.89)。在对年龄,性别和PA-R进行调整后,MLR显示,细胞内抗药性指数略微但显着(p <0.001),优于基于人体测量学的模型。亚组分析表明,BIA的真正益处可能在特别低的受试者中最为普遍。最大VO2(<2500 mL min(-1))。简而言之,全身BIA可以稍微提高非运动VO2max预测模型的准确性,其优势在VO2max尤其低的个体中最为明显。

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