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New electrical impedance methods for the in situ measurement of the complex permittivity of anisotropic skeletal muscle using multipolar needles

机译:用多极针原位测量各向异性骨骼肌复介电常数的新电阻抗方法

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摘要

This paper provides a rigorous analysis on the measurement of the permittivity of two-dimensional anisotropic biological tissues such as skeletal muscle using the four-electrode impedance technique. The state-of-the-art technique requires individual electrodes placed at the same depth in contact with the anisotropic material, e.g. using monopolar needles. In this case, the minimum of measurements in different directions needed to estimate the complex permittivity and its anisotropy direction is 3, which translates into 12 monopolar needle insertions (i.e. 3 directions × 4 electrodes in each direction). Here, we extend our previous work and equip the reader with 8 new methods for multipolar needles, where 2 or more electrodes are spaced along the needle’s shaft in contact with the tissue at different depths. Using multipolar needles, the new methods presented reduce the number of needle insertions by a factor of 2 with respect to the available methods. We illustrate the methods with numerical simulations and new experiments on ex vivo ovine skeletal muscle (n = 3). Multi-frequency longitudinal and transverse permittivity data from 30 kHz to 1 MHz is made publicly available in the supplementary material. The methods presented here for multipolar needles bring closer the application of needle electrical impedance to patients with neuromuscular diseases.
机译:本文对使用四电极阻抗技术测量二维各向异性生物组织(例如骨骼肌)的介电常数进行了严格的分析。现有技术要求将单独的电极放置在与各向异性材料(例如绝缘材料)接触的相同深度处。使用单极针头。在这种情况下,估计复介电常数及其各向异性方向所需的在不同方向上的最小测量值为3,这转换为12个单极针插入(即每个方向上3个方向××4个电极)。在这里,我们扩展了以前的工作,并为阅读器配备了8种用于多极针头的新方法,其中两个或多个电极沿着针头轴间隔开,以与组织接触的深度不同。使用多极针头,提出的新方法相对于可用方法将针头插入次数减少了2倍。我们用数值模拟和离体绵羊骨骼肌(n = 3)的新实验说明了这些方法。补充材料中公开提供了30 kHz至1 MHz的多频纵向和横向电容率数据。此处介绍的用于多极针的方法使针电阻抗在神经肌肉疾病患者中的应用更加紧密。

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