Bartels Else Marie, Sørensen Emma Rudbæk, Harrison Adrian Paul
Department of Rheumatology, The Parker Institute, Copenhagen University Hospital, Bispebjerg Frederiksberg, Denmark.
Department of Veterinary Clinical & Animal Sciences, Faculty of Health & Medical Sciences, Copenhagen University, Frederiksberg, Denmark.
Physiol Rep. 2015 Apr;3(4). doi: 10.14814/phy2.12354.
Bioimpedance analysis (BIA) is a well-known and tested method for body mass and muscular health assessment. Multi-frequency BIA (mfBIA) equipment now makes it possible to assess a particular muscle as a whole, as well as looking at a muscle at the fiber level. The aim of this study was to test the hypothesis that mfBIA can be used to assess the anatomical, physiological, and metabolic state of skeletal muscles. mfBIA measurements focusing on impedance, resistance, reactance, phase angle, center frequency, membrane capacitance, and both extracellular and intracellular resistance were carried out. Eight healthy human control subjects and three selected cases were examined to demonstrate the extent to which this method may be used clinically, and in relation to training in sport. The electrode setup is shown to affect the mfBIA parameters recorded. Our recommendation is the use of noble metal electrodes in connection with a conductance paste to accommodate the typical BIA frequencies, and to facilitate accurate impedance and resistance measurements. The use of mfBIA parameters, often in conjunction with each other, can be used to reveal indications of contralateral muscle loss, extracellular fluid differences, contracted state, and cell transport/metabolic activity, which relate to muscle performance. Our findings indicate that mfBIA provides a noninvasive, easily measurable and very precise momentary assessment of skeletal muscles.
生物电阻抗分析(BIA)是一种用于评估体重和肌肉健康的知名且经过验证的方法。现在,多频生物电阻抗分析(mfBIA)设备使整体评估特定肌肉以及在纤维水平观察肌肉成为可能。本研究的目的是检验mfBIA可用于评估骨骼肌的解剖学、生理学和代谢状态这一假设。进行了聚焦于阻抗、电阻、电抗、相位角、中心频率、膜电容以及细胞外和细胞内电阻的mfBIA测量。对8名健康人体对照受试者和3个选定病例进行了检查,以证明该方法在临床以及与运动训练相关方面的可用程度。结果表明电极设置会影响所记录的mfBIA参数。我们建议使用贵金属电极并搭配导电膏,以适应典型的BIA频率,并便于进行准确的阻抗和电阻测量。通常相互结合使用的mfBIA参数可用于揭示对侧肌肉损失、细胞外液差异、收缩状态以及与肌肉性能相关的细胞转运/代谢活动的迹象。我们的研究结果表明,mfBIA为骨骼肌提供了一种非侵入性、易于测量且非常精确的即时评估。