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Physical Validation of a Residual Impedance Rejection Method during Ultra-Low Frequency Bio-Impedance Spectral Measurements

机译:超低频率生物阻抗光谱测量期间残留阻抗抑制法的物理验证

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摘要

Accurate and reliable measurement of the electrical impedance spectrum is an essential requirement in order to draw relevant conclusions in many fields and a variety of applications; in particular, for biological processes. Even in the state-of-the-art methods developed for this purpose, the accuracy and efficacy of impedance measurements are reduced in biological systems, due to the regular occurrence of parameters causing measurement errors such as residual impedance, parasitic capacitance, generator anomalies, and so on. Recent observations have reported the necessity of decreasing such inaccuracies whenever measurements are performed in the ultra-low frequency range, as the above-mentioned errors are almost entirely absent in such cases. The current research work proposes a method which can reject the anomalies listed above when measuring in the ultra-low frequency range, facilitating data collection at the same time. To demonstrate our hypothesis, originating from the consideration of the determinant role of the measuring frequency, a physical model is proposed to examine the effectiveness of our method by measuring across the commonly used vs. ultra-low frequency ranges. Validation measurements reflect that the range of frequencies and the accuracy is much greater than in state-of-the-art methods. Using the proposed new impedance examination technique, biological system characterization can be carried out more accurately.
机译:电阻频谱的准确可靠测量是必不可少的要求,以便在许多领域和各种应用中汲取相关结论;特别是,对于生物过程。即使在为此目的开发的最先进的方法中,受阻测量的精度和功效也降低了生物系统中,因为常规发生参数导致剩余阻抗,寄生电容,发电机异常等参数,等等。最近的观察结果报告了在超低频率范围内进行测量时减少这种不准确性的必要性,因为在这种情况下,上述误差几乎完全不存在。目前的研究工作提出了一种方法,可以在超低频率范围内测量上面列出的异常,促进数据收集。为了展示我们的假设,始于考虑测量频率的决定因子的作用,提出了一种物理模型来通过跨越常用的与超低频率范围测量方法来检查我们的方法的有效性。验证测量反映了频率范围和准确度远大于最先进的方法。使用所提出的新阻抗检查技术,可以更准确地进行生物系统表征。

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