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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >Novel Estimation of the Electrical Bioimpedance Using the Local Polynomial Method. Application to In Vivo Real-Time Myocardium Tissue Impedance Characterization During the Cardiac Cycle
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Novel Estimation of the Electrical Bioimpedance Using the Local Polynomial Method. Application to In Vivo Real-Time Myocardium Tissue Impedance Characterization During the Cardiac Cycle

机译:使用局部多项式方法的电生物阻抗的新颖估计。心脏周期中体内实时心肌组织阻抗表征的应用

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Classical measurements of myocardium tissue electrical impedance for characterizing the morphology of myocardium cells, as well as cell membranes integrity and intra/extra cellular spaces, are based on the frequency-sweep electrical impedance spectroscopy (EIS) technique. In contrast to the frequency-sweep EIS approach, measuring with broadband signals, i.e., multisine excitations, enables to collect, simultaneously, multiple myocardium tissue impedance data in a short measuring time. However, reducing the measuring time makes the measurements to be prone to the influence of the transients introduced by noise and the dynamic time-varying properties of tissue. This paper presents a novel approach for the impedance-frequency-response estimation based on the local polynomial method (LPM). The fast LPM version presented rejects the leakage error’s influence on the impedance frequency response when measuring electrical bioimpedance in a short time. The theory is supported by a set of validation measurements. Novel preliminary experimental results obtained from real-time in vivo healthy myocardium tissue impedance characterization within the cardiac cycle using multisine excitation are reported.
机译:用于表征心肌细胞形态以及细胞膜完整性和细胞内/细胞外空间的心肌组织电阻抗的经典测量方法是基于扫频电阻抗光谱技术(EIS)。与扫频EIS方法相反,使用宽带信号(即多正弦激励)进行测量可以在短时间内同时收集多个心肌组织阻抗数据。但是,减少测量时间会使测量容易受到噪声和组织动态时变特性所引入的瞬变的影响。本文提出了一种基于局部多项式(LPM)的阻抗-频率响应估计新方法。提出的快速LPM版本可在短时间内测量电生物阻抗时拒绝泄漏误差对阻抗频率响应的影响。该理论得到一组验证度量的支持。报告了使用多正弦激励从心动周期内的实时体内健康心肌组织阻抗表征获得的新的初步实验结果。

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