School of Chemistry and Molecular Biosciences, The University of Queensland, St Lucia, Brisbane, 4072, Australia.
Department of Procurement and Clinical Engineering, Central Denmark Region, Aarhus, Denmark.
Rev Endocr Metab Disord. 2023 Jun;24(3):381-391. doi: 10.1007/s11154-022-09780-3. Epub 2023 Feb 7.
Measurement of phase angle using bioimpedance analysis (BIA) has become popular as an index of so-called "cellular health". What precisely is meant by this term is not always clear but strong relationships have been found between cellular water status (the relative amounts of extra- and intracellular water), cell membrane integrity and cellular mass. Much of the current research is empirical observation and frequently pays little regard to the underlying biophysical models that underpin the BIA technique or attempts to provide mechanistic explanations for the observations. This brief review seeks to provide a basic understanding of the electrical models frequently used to describe the passive electrical properties of tissues with particular focus on phase angle. In addition, it draws attention to some practical concerns in the measurement of phase angle and notes the additional understanding that can be gained when phase angle are obtained with bioimpedance spectroscopy (BIS) rather than single frequency BIA (SFBIA) along with the potential for simulation modelling.
使用生物阻抗分析(BIA)测量相位角已成为所谓“细胞健康”的指标而受到欢迎。这个术语的确切含义并不总是很清楚,但已经发现细胞水状态(细胞内外水的相对量)、细胞膜完整性和细胞质量之间存在很强的关系。目前的大部分研究都是经验观察,很少关注支持 BIA 技术的基础生物物理模型,也很少试图对观察结果提供机械解释。这篇简短的综述旨在提供对常用的电气模型的基本理解,这些模型常用于描述组织的被动电气特性,特别关注相位角。此外,它还提请注意在测量相位角时的一些实际问题,并注意到当使用生物阻抗谱(BIS)而不是单频 BIA(SFBIA)获得相位角时可以获得更多的理解,以及模拟建模的潜力。