Jaffrin Michel Y, Morel Hélène
Department of Biological Engineering, Technological University of Compiegne, 60205 Compiegne Cedex, France.
Med Eng Phys. 2008 Dec;30(10):1257-69. doi: 10.1016/j.medengphy.2008.06.009. Epub 2008 Aug 3.
This paper reviews various bioimpedance methods permitting to measure non-invasively, extracellular, intracellular and total body water (TBW) and compares BIA methods based on empirical equations of the wrist-ankle resistance or impedance at 50 kHz, height and weight with BIS methods which rely on an electrical model of tissues and resistances measured at zero and infinite frequencies. In order to compare these methods, impedance measurements were made with a multifrequency Xitron 4200 impedance meter on 57 healthy subjects which had undergone simultaneously a Dual X-ray absorptiometry examination (DXA), in order to estimate their TBW from their fat-free-mass. Extracellular (ECW) and TBW volumes were calculated for these subjects using the original BIS method and modifications of Matthie[Matthie JR. Second generation mixture theory equation for estimating intracellular water using bioimpedance spectroscopy. J Appl Physiol 2005;99:780-1], Jaffrin et al. [Jaffrin MY, Fenech M, Moreno MV, Kieffer R. Total body water measurement by a modification of the bioimpédance spectroscopy method. Med Bio Eng Comput 2006;44:873-82], Moissl et al. [Moissl UM, Wabel P, Chamney PW, Bosaeus I, Levin NW, et al. Body fluid volume determination via body composition spectroscopy in health and disease. Physiol Meas 2006;27:921-33] and their TBW resistivities were compared and discussed. ECW volumes were calculated by BIA methods of Sergi et al. [Sergi G, Bussolotto M, Perini P, Calliari I, et al. Accuracy of bioelectrical bioimpedance analysis for the assessment of extracellular space in healthy subjects and in fluid retention states. Ann Nutr Metab 1994;38(3):158-65] and Hannan et al. [Hannan WJ, Cowen SJ, Fearon KC, Plester CE, Falconer JS, Richardson RA. Evaluation of multi-frequency bio-impedance analysis for the assessment of extracellular and total body water in surgical patients. Clin Sci 1994;86:479-85] and TBW volumes by BIA methods of Kushner and Schoeller [Kushner RF, Schoeller DA. Estimation of total body water by bioelectrical impedance analysis. Am J Clin Nutr 1986;44(3):417-24], Lukaski et al. [Lukaski HC, Bolonchuk WW. Estimation of body fluid volumes using tetrapolar bioelectrical impedance measurements. Aviat Space Environ Med 1988;59:1163-9], Hannan et al. [Hannan WJ, Cowen SJ, Fearon KC, Plester CE, Falconer JS, Richardson RA. Evaluation of multi-frequency bio-impedance analysis for the assessment of extracellular and total body water in surgical patients. Clinical Science 1994;86:479-85], Deurenberg et al. [Deurenberg P, van der Koy K, Leenen R, Westrate JA, Seidell JC. Sex and age specific prediction formulas for estimating body composition from bioelectric impedance: a cross validation study. Int J Obesity 1991;15:17-25] These volumes were compared against those given by BIS method and, in the case of TBW, with those by DXA. For ECW, a good agreement was found between various BIS methods and that of Sergi while Hannan's values were higher. Both Matthie's and Moissl's methods gave mean TBW resistivities and volumes lower than those of Jaffrin's and DXA methods. Kushner et al. method gave values of TBW not significantly different from those of Jaffrin et al. and DXA, as Hannan's method in men, but Lukaski and Deurenberg methods led to an underestimation.
本文回顾了各种生物阻抗方法,这些方法能够非侵入性地测量细胞外液、细胞内液和总体水(TBW),并将基于50kHz腕踝电阻或阻抗、身高和体重的经验方程的生物电阻抗分析(BIA)方法与基于组织电模型以及零频率和无限频率下测量的电阻的生物电阻抗光谱分析(BIS)方法进行比较。为了比较这些方法,使用多频率Xitron 4200阻抗仪对57名健康受试者进行了阻抗测量,这些受试者同时接受了双能X线吸收法检查(DXA),以便根据其去脂体重估算他们的总体水。使用原始的BIS方法以及Matthie[Matthie JR. 使用生物阻抗光谱法估算细胞内液的第二代混合理论方程。《应用生理学杂志》2005年;99:780 - 1]、Jaffrin等人[Jaffrin MY, Fenech M, Moreno MV, Kieffer R. 通过生物阻抗光谱法的改进测量总体水。《医学与生物工程计算》2006年;44:873 - 82]、Moissl等人[Moissl UM, Wabel P, Chamney PW, Bosaeus I, Levin NW, 等人。通过身体成分光谱法测定健康和疾病状态下的体液量。《生理学测量》2006年;27:921 - 33]的修正方法为这些受试者计算细胞外液(ECW)和总体水体积,并比较和讨论了他们的总体水电阻率。通过Sergi等人[Sergi G, Bussolotto M, Perini P, Calliari I, 等人。生物电阻抗分析评估健康受试者和液体潴留状态下细胞外空间的准确性。《营养与代谢》1994年;38(3):158 - 65]和Hannan等人[Hannan WJ, Cowen SJ, Fearon KC, Plester CE, Falconer JS, Richardson RA. 多频率生物阻抗分析评估外科患者细胞外液和总体水的研究。《临床科学》1994年;86:479 - 85]的BIA方法计算ECW体积,通过Kushner和Schoeller[Kushner RF, Schoeller DA. 通过生物电阻抗分析估算总体水。《美国临床营养学杂志》1986年;44(3):417 - 24]、Lukaski等人[Lukaski HC, Bolonchuk WW. 使用四极生物电阻抗测量估算体液量。《航空航天与环境医学》1988年;59:1163 - 9]、Hannan等人[Hannan WJ, Cowen SJ, Fearon KC, Plester CE, Falconer JS, Richardson RA. 多频率生物阻抗分析评估外科患者细胞外液和总体水的研究。《临床科学》1994年;86:479 - 85]、Deurenberg等人[Deurenberg P, van der Koy K, Leenen R, Westrate JA, Seidell JC. 用于从生物电阻抗估算身体成分的性别和年龄特异性预测公式:一项交叉验证研究。《国际肥胖杂志》1991年;15:17 - 25]的BIA方法计算总体水体积。将这些体积与BIS方法给出的体积进行比较,对于总体水,还与DXA给出的体积进行比较。对于ECW,发现各种BIS方法与Sergi的方法之间具有良好的一致性,而Hannan的值较高。Matthie和Moissl的方法给出的总体水电阻率和体积均低于Jaffrin和DXA的方法。Kushner等人的方法给出的总体水值与Jaffrin等人和DXA的方法无显著差异,男性中Hannan的方法也是如此,但Lukaski和Deurenberg的方法导致低估。