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Bioimpedance dispersion width as a parameter to monitor living tissues

机译:生物阻抗分散宽度作为监测活体组织的参数

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摘要

In the case of living tissues, the spectral width of the electrical bioimpedance dispersions (closely related with the a parameter in the Cole equation) evolves during the ischemic periods. This parameter is often ignored in favor of other bioimpedance parameters such as the central frequency or the resistivity at low frequencies. The object of this paper is to analyze the significance of this parameter through computer simulations (in the alpha and beta dispersion regions) and to demonstrate its practical importance through experimental studies performed in rat kidneys during cold preservation. The simulations indicate that the dispersion width could be determined by the morphology of the extra-cellular spaces. The experimental studies show that it is a unique parameter able to detect certain conditions such as a warm ischemia period prior to cold preservation or the effect of a drug (Swinholide A) able to disrupt the cytoskeleton. The main conclusion is that, thanks to the a parameter in the Cole equation, the bioimpedance is not only useful to monitor the intra/extra-cellular volume imbalances or the inter-cellular junctions resistance but also to detect tissue structural alterations.
机译:在生物组织的情况下,电生物阻抗分散体的光谱宽度(与Cole方程中的a参数密切相关)在局部缺血期间演变。通常会忽略此参数,而使用其他生物阻抗参数,例如中心频率或低频电阻率。本文的目的是通过计算机模拟(在α和β分散区域中)分析此参数的重要性,并通过在冷藏过程中在大鼠肾脏中进行的实验研究来证明其实际意义。模拟表明,分散宽度可由细胞外空间的形态决定。实验研究表明,它是一个独特的参数,能够检测某些条件,例如在冷藏之前的温暖缺血时期或能够破坏细胞骨架的药物(Swinholide A)的作用。主要结论是,由于Cole方程中的a参数,生物阻抗不仅可用于监测细胞内/细胞外体积失衡或细胞间连接阻力,而且可用于检测组织结构改变。

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