首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Developing and Validating an Age-Independent Equation Using Multi-Frequency Bioelectrical Impedance Analysis for Estimation of Appendicular Skeletal Muscle Mass and Establishing a Cutoff for Sarcopenia
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Developing and Validating an Age-Independent Equation Using Multi-Frequency Bioelectrical Impedance Analysis for Estimation of Appendicular Skeletal Muscle Mass and Establishing a Cutoff for Sarcopenia

机译:使用多频率生物电阻抗分析开发和验证年龄无关方程以估计阑尾骨骼肌质量并建立少肌症的临界值

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摘要

Background: Appendicular skeletal muscle (or lean) mass (ALM) estimated using dual-energy X-ray absorptiometry (DXA) is considered to be a preferred method for sarcopenia studies. However, DXA is expensive, has limited portability, and requires radiation exposure. Bioelectrical impedance analysis (BIA) is inexpensive, easy to use, and portable; thus BIA might be useful in sarcopenia investigations. However, a large variety of models have been commercially supplied by different companies, and for most consumer products, the equations estimating ALM are not disclosed. It is therefore difficult to use these equations for research purposes. In particular, the BIA equation is often age-dependent, which leads to fundamental difficulty in examining age-related ALM loss. The aims of the current study were as follows: (1) to develop and validate an equation to estimate ALM using multi-frequency BIA (MF-BIA) based on theoretical models, and (2) to establish sarcopenia cutoff values using the equation for the Japanese population. Methods: We measured height (Ht), weight, and ALM obtained using DXA and a standing-posture 8-electrode MF-BIA (5, 50, 250 kHz) in 756 Japanese individuals aged 18 to 86-years-old (222 men and 301 women as developing equation group and 97 men and 136 women as a cross validation group). The traditional impedance index (Ht2/Z50) and impedance ratio of high and low frequency (Z250/Z5) of hand to foot values were calculated. Multiple regression analyses were conducted with ALM as dependent variable in men and women separately. Results: We created the following equations: ALM = (0.6947 × (Ht2/Z50)) + (−55.24 × (Z250/Z5)) + (−10,940 × (1/Z50)) + 51.33 for men, and ALM = (0.6144 × (Ht2/Z50)) + (−36.61 × (Z250/Z5)) + (−9332 × (1/Z50)) + 37.91 for women. Additionally, we conducted measurements in 1624 men and 1368 women aged 18 to 40 years to establish sarcopenia cutoff values in the Japanese population. The mean values minus 2 standard deviations of the skeletal muscle mass index (ALM/Ht2) in these participants were 6.8 and 5.7 kg/m2 in men and women, respectively. Conclusion: The current study established and validated a theoretical and age-independent equation using MF-BIA to estimate ALM and provided reasonable sarcopenia cutoff values.
机译:背景:使用双能X线骨密度仪(DXA)估算的阑尾骨骼肌(或瘦身)质量(ALM)被认为是肌肉减少症研究的首选方法。但是,DXA价格昂贵,便携性有限且需要辐射。生物电阻抗分析(BIA)价格便宜,易于使用且便携式;因此,BIA在肌肉​​减少症研究中可能有用。但是,不同公司已经在商业上提供了各种各样的模型,对于大多数消费产品,没有公开估计ALM的方程式。因此,很难将这些方程式用于研究目的。特别是,BIA方程通常与年龄有关,这导致了检查与年龄相关的ALM丧失的根本困难。本研究的目的如下:(1)建立并验证基于理论模型的使用多频BIA(MF-BIA)估计ALM的方程式,以及(2)使用方程式建立肌肉减少症的临界值日本人口。方法:我们测量了DXA和站立式8电极MF-BIA(5、50、250 kHz)所获得的身高(Ht),体重和ALM,用于756位年龄在18至86岁的日本人(222名男性)中301名女性作为发展方程式组,97名男性和136名女性作为交叉验证组)。计算了传统的手足指数阻抗指数(Ht 2 / Z50)和高频和低频阻抗比(Z250 / Z5)。男性和女性分别以ALM作为因变量进行了多元回归分析。结果:我们创建了以下方程式:ALM =(0.6947×(Ht 2 / Z50))+(−55.24×(Z250 / Z5))+(−10,940×(1 / Z50))+男性为51.33,ALM =(0.6144×(Ht 2 / Z50))+(−36.61×(Z250 / Z5))+(−9332×(1 / Z50))+ 37.91 。此外,我们对18至40岁的1624名男性和1368名女性进行了测量,以确定日本人群的少肌症临界值。这些参与者的平均值减去骨骼肌质量指数的2个标准偏差(ALM / Ht 2 )分别为6.8和5.7 kg / m 2 。 。结论:本研究建立并验证了使用MF-BIA估算ALM的理论和年龄无关的方程式,并提供了合理的肌肉减少阈值。

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