首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Derivation of extracellular fluid volume fraction and equivalent dielectric constant of the cell membrane from dielectric properties of the human body. Part 1: Incorporation of fat tissue into cell suspension model in the arm.
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Derivation of extracellular fluid volume fraction and equivalent dielectric constant of the cell membrane from dielectric properties of the human body. Part 1: Incorporation of fat tissue into cell suspension model in the arm.

机译:从人体的介电特性推导细胞外液体积分数和细胞膜的等效介电常数。第1部分:将脂肪组织整合到手臂的细胞悬浮模型中。

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摘要

The non-invasive characterisation of cell pathophysiology is clinically important. A cell suspension model is applied to derive the extracellular fluid (ECF) volume fraction and the equivalent dielectric constant of the cell membrane epsilon m from the dielectric properties of human arms. Frequency-dependent dielectric constants and electrical conductivities of arms are obtained from 35 surgical patients over a frequency range of 5-1000 kHz. The cell suspension model is applied to fit the data using a complex non-linear least-squares method. The arms show typical dielectric dispersions, although the cell suspension model yields a poor fitting in dielectric constants at lower frequencies and electrical conductivities at higher frequencies. In contrast, a new cell suspension model, taking into account the fat tissue component, remarkably improves the overall fitting performance, allowing estimation of the volume fractions of ECF (0.34 +/- 0.05) and fat tissue (0.16 +/- 0.04) and the equivalent epsilon m (23 +/- 9). The resulting estimates of the volume fraction of fat tissue are in good correlation with arm skinfold thickness (fat volume fraction of arm = 2.42 x 10(-3) x arm skinfold thickness (mm) + 0.099, R = 0.756, p < 0.0001). Therefore it is concluded that the newly derived cell suspension model is well suited for the description of the dielectric properties of human tissues and thus the derivation of the ECF volume fraction and equivalent epsilon m.
机译:细胞病理生理学的非侵入性表征在临床上很重要。应用细胞悬浮模型从人体手臂的介电特性得出细胞外液(ECF)的体积分数和细胞膜ε的等效介电常数。从5-1000 kHz频率范围内的35名外科手术患者中获得臂的随频率变化的介电常数和电导率。应用细胞悬浮模型以使用复杂的非线性最小二乘法拟合数据。臂显示了典型的介电色散,尽管细胞悬浮模型在较低频率下的介电常数和较高频率下的电导率拟合不佳。相反,考虑到脂肪组织成分,新的细胞悬浮模型可以显着改善整体拟合性能,从而可以估算ECF(0.34 +/- 0.05)和脂肪组织(0.16 +/- 0.04)的体积分数,以及等效εm(23 +/- 9)。脂肪组织体积分数的最终估计值与手臂的皮肤褶皱厚度具有良好的相关性(手臂的脂肪体积分数= 2.42 x 10(-3)x手臂的皮肤褶皱厚度(mm)+ 0.099,R = 0.756,p <0.0001) 。因此可以得出结论,新推导的细胞悬浮模型非常适合描述人体组织的介电特性,因此可以推导ECF体积分数和等效εm。

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