Lukaski H C
US Department of Agriculture, Grand Forks Human Nutrition Research Center, ND 58202-9034, USA.
Am J Clin Nutr. 1996 Sep;64(3 Suppl):397S-404S. doi: 10.1093/ajcn/64.3.397S.
Although use of the bioelectrical impedance method for the indirect assessment of human body composition is growing, awareness of the theoretical and practical bases of the method is limited. I discuss the relations between impedance variables and biological indexes, describe the biophysical models for the translation of impedance variables into in vivo body-composition indexes, and summarize the influences of physical and biological factors that affect the validity of the bioelectrical impedance method. The practical advantages of the bioelectrical impedance method necessitate concerted research efforts to establish the most appropriate applications of the method in research and clinical medicine.
尽管生物电阻抗法用于间接评估人体成分的应用日益广泛,但对该方法理论和实践基础的认识却很有限。我将讨论阻抗变量与生物学指标之间的关系,描述将阻抗变量转化为体内身体成分指标的生物物理模型,并总结影响生物电阻抗法有效性的物理和生物学因素。生物电阻抗法的实际优势需要开展协同研究,以确定该方法在研究和临床医学中最合适的应用。