一种新型六电极四极阻抗法探测深肺区域。

Q3 Biochemistry, Genetics and Molecular Biology
Mahjabin Mobarak, Muhammad Abdul Kadir, K Siddique-E Rabbani
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引用次数: 1

摘要

考虑到需要一种低成本和简单的技术,特别是对于中低收入国家,使用电阻抗探测肺深部区域是非常重要的。由于复杂性和成本,电阻抗断层扫描不适合这种设想的应用。采用四个电极的简单四极阻抗测量(TPIM)技术是一种古老的生物电测量技术。然而,它在器官定位和使用皮肤表面电极的深度灵敏度方面有其局限性。最近,一位作者提出了一种新的6电极TPIM,它有两个电流电极,但在胸腔的前后放置了两对适当连接的电位电极。然而,这项工作给出了一个基于物理概念的定性建议,缺乏定量评价。为了定量评价该方法,本工作采用基于COMSOL Multiphysics软件的有限元方法,对这种新型6电极TPIM进行了仿真研究,并将结果与4电极TPIM的结果进行了比较,其中4电极TPIM的电极分别应用于胸腔前部或胸部后方。最初,使用简单的矩形体积导体进行了灵敏度分布研究,结果表明6电极TPIM在整个肺区域具有更好的深度灵敏度。接下来,它使用了另一位作者早些时候开发的近似生命的胸腔模型。使用该模型,进行了广泛的研究,以量化靶肺区域的总体灵敏度,靶肺对总测量阻抗的贡献以及其他几个参数。通过这些研究,6电极TPIM在探测肺部深部区域方面建立了更坚实的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Probing Deep Lung Regions using a New 6-electrode Tetrapolar Impedance Method.

Probing Deep Lung Regions using a New 6-electrode Tetrapolar Impedance Method.

Probing Deep Lung Regions using a New 6-electrode Tetrapolar Impedance Method.

Probing Deep Lung Regions using a New 6-electrode Tetrapolar Impedance Method.

Probing deep regions of the lung using electrical impedance is very important considering the need for a low cost and simple technique, particularly for the low and medium income countries. Because of complexity and cost, Electrical Impedance Tomography is not suitable for this envisaged application. The simple Tetrapolar Impedance Measurement (TPIM) technique employing four electrodes is the age old technique for bioelectrical measurements. However, it has its limitations in respect of organ localisation and depth sensitivity using skin surface electrodes. Recently, a new 6-electrode TPIM with two current electrodes but two pairs of appropriately connected potential electrodes positioned on the front and back of the thorax, proposed by one of the authors, came with a promise. However, this work gave a qualitative proposal based on concepts of physics and lacked a quantitative evaluation. In order to evaluate the method quantitatively, the present work employed finite element method based COMSOL Multiphysics software and carried out simulation studies using this new 6-electrode TPIM and compared the results with those from 4-electrode TPIM, with electrodes applied either on the front or at the back of the thorax for the latter. Initially, it carried out a sensitivity distribution study using a simple rectangular volume conductor which showed that the 6-electrode TPIM gives better depth sensitivity throughout the lung region. Next it used a near life like thorax model developed by another of the authors earlier. Using this model, extensive studies were carried out to quantify the overall sensitivity over a target lung region, the contribution of the target lung to the total measured impedance, and several other parameters. Through these studies, the 6-electrode TPIM was established on a stronger footing for probing deep regions of the lungs.

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来源期刊
Journal of Electrical Bioimpedance
Journal of Electrical Bioimpedance Engineering-Biomedical Engineering
CiteScore
3.00
自引率
0.00%
发文量
8
审稿时长
17 weeks
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