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Current source enhancements in Electrical Impedance Spectroscopy (EIS) to cancel unwanted capacitive effects

机译:电阻抗光谱(EIs)中的电流源增强功能可消除不需要的电容效应

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摘要

Electrical Impedance Spectroscopy (EIS) has emerged as a non-invasive imaging modality to detect and quantify functional or electrical properties related to the suspicious tumors in cancer screening, diagnosis and prognosis assessment. A constraint on EIS systems is that the current excitation system suffers from the effects of stray capacitance having a major impact on the hardware subsystem as the EIS is an ill-posed inverse problem which depends on the noise level in EIS measured data and regularization parameter in the reconstruction algorithm. There is high complexity in the design of stable current sources, with stray capacitance reducing the output impedance and bandwidth of the system. To confront this, we have designed an EIS current source which eliminates the effect of stray capacitance and other impacts of the capacitance via a variable inductance. In this paper, we present a combination of operational CCII based on a generalized impedance converter (OCCII-GIC) with a current source. The aim of this study is to use the EIS system as a biomedical imaging technique, which is effective in the early detection of breast cancer. This article begins with the theoretical description of the EIS structure, current source topologies and proposes a current conveyor in application of a Gyrator to eliminate the current source limitations and its development followed by simulation and experimental results. We demonstrated that the new design could achieve a high output impedance over a 3MHz frequency bandwidth when compared to other types of GIC circuits combined with an improved Howland topology.
机译:电阻抗谱(EIS)已经成为一种非侵入性成像方式,可以在癌症筛查,诊断和预后评估中检测和量化与可疑肿瘤相关的功能或电学性质。对EIS系统的一个约束是,当前的励磁系统受到杂散电容的影响,这会对硬件子系统产生重大影响,因为EIS是一个不适定的逆问题,它取决于EIS测量数据中的噪声水平和正则化参数。重建算法。稳定电流源的设计非常复杂,杂散电容会降低系统的输出阻抗和带宽。为了解决这个问题,我们设计了一种EIS电流源,该电流源通过可变电感消除了杂散电容的影响以及电容的其他影响。在本文中,我们介绍了基于通用阻抗转换器(OCCII-GIC)的可操作CCII与电流源的组合。这项研究的目的是将EIS系统用作生物医学成像技术,该技术可有效地早期发现乳腺癌。本文从EIS结构的理论描述,电流源拓扑结构入手,并提出了一种在Gyrator应用中消除电流源限制的电流传送器及其发展,随后进行了仿真和实验结果。我们证明,与结合改进的Howland拓扑的其他类型的GIC电路相比,新设计可以在3MHz频率带宽上实现高输出阻抗。

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