本地开发的六电极聚焦阻抗法的灵敏度研究。

Q3 Biochemistry, Genetics and Molecular Biology
Journal of Electrical Bioimpedance Pub Date : 2024-04-24 eCollection Date: 2024-01-01 DOI:10.2478/joeb-2024-0005
Trilochan Khanal, K Siddique-E Rabbani
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引用次数: 0

摘要

聚焦阻抗法(FIM)是一种测量人体生物电阻抗的新技术。这一想法起源于孟加拉国,它为使用皮肤表面电极在人体表面合理深度进行局部生物阻抗测量提供了机会。这有可能应用于人体目标器官的生理研究以及疾病和失调的检测或诊断。FIM 以历史悠久的四极阻抗测量(TPIM)为基础,但有一些重大改进。必须在本国开发技术,以获得长期利益,特别是在中低收入国家(LMIC)。本文介绍了对聚焦阻抗法(FIM-6)六电极版本的实验灵敏度研究,其电路和模型均由尼泊尔自主设计。这项工作涉及 FIM-6 和 TPIM 的灵敏度研究,并通过实验验证开发了必要的电路模块。灵敏度研究是在一个简单的二维模型上进行的,FIM-6 和线性 TPIM 采用了不同的电极排列。在这项研究中,一个圆柱形物体被放置在不同的位置。FIM-6 在中心部分具有较高的灵敏度,在可称为聚焦区域的一小块区域内灵敏度几乎保持不变。另一方面,TPIM 的结果在远离中心点的地方急剧下降,因此不适合对目标器官进行实际测量。此外,在 TPIM 中,有一些区域的负灵敏度很高,而在 FIM 中,这些区域的负灵敏度要小得多。这项工作所取得的结果清楚地表明,FIM 比 TPIM 有了很大的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensitivity study of a locally developed six electrode focused impedance method.

The Focused Impedance Method (FIM) is a new technique of electrical bioimpedance measurements in the human body. The idea originated in Bangladesh and provides an opportunity for localized measurement of bioimpedance down to reasonable depths from the body surface using skin surface electrodes. This has potential applications for physiological studies of targeted organs in the body and in detecting or diagnosing diseases and disorders. FIM is based on the age-old Tetra-Polar Impedance Measurement (TPIM) but provides a few significant improvements. Technology must be developed indigenously to obtain long-term benefits, particularly in Low and Medium Income countries (LMIC). This paper presents an experimental sensitivity study of the six-electrode version of the Focused Impedance method (FIM-6) with the circuit and phantom indigenously designed in Nepal. The work involved sensitivity studies of both FIM-6 and TPIM with the necessary circuit blocks developed through experimental validation. The sensitivity studies were performed on a simple 2D phantom with different electrode arrangements for FIM-6 and linear TPIM. A cylindrical object was placed at different positions for this study. The FIM-6 gave a high sensitivity in the central part, which remained almost constant within a small region that may be termed as the focused region. On the other hand, TPIM results fell off sharply away from the central point, making it unsuitable for practical measurements on target organs. Besides, there were areas with large negative sensitivities in TPIM, which were much smaller in FIM. The results obtained through this work clearly show the improvement offered by FIM over TPIM.

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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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