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A multichannel continuously selectable multifrequency electrical impedance spectroscopy measurement system

机译:多通道连续可选多频电阻抗光谱测量系统

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摘要

There is increasing evidence that alterations in the electrical property spectrum of tissues below 10 MHz is diagnostic for tissue pathology and/or pathophysiology. Yet, the complexity associated with constructing a high-fidelity multichannel, multifrequency data acquisition instrument has limited widespread development of spectroscopic electrical impedance imaging concepts. To contribute to the relatively sparse experience with multichannel spectroscopy systems this paper reports on the design, realization and evaluation of a prototype 32-channel instrument. The salient features of the system include a continuously selectable driving frequency up to 1 MHz, either voltage or current source modes of and simultaneous measurement of both voltage and current on each channel in either of these driving configurations. Comparisons of performance with recently reported fixed-frequency systems is favorable. Volts DC (VDC) signal to-noise ratios of 75-80 dB are achieved and the noise floor for AC signals is near 100 dB below the signal strength of interest at 10 kHz ana 60 dB down at 1 MHz. The added benefit of being able to record multispectral information on source and sense signal amplitudes and phases has also been realized. Phase-sensitive detection schemes and multiperiod undersampling techniques have been deployed to ensure measurement fidelity over the full bandwidth of system operation.
机译:越来越多的证据表明,低于10 MHz的组织电特性谱的变化可诊断组织病理学和/或病理生理学。然而,与构造高保真多通道,多频率数据采集仪器相关的复杂性限制了光谱电阻抗成像概念的广泛发展。为了为多通道光谱系统的相对稀疏体验做出贡献,本文报告了原型32通道仪器的设计,实现和评估。该系统的显着特征包括高达1 MHz的连续可选驱动频率,两种驱动配置中的任何一种的电压或电流源模式以及同时测量每个通道上的电压和电流。与最近报告的固定频率系统的性能比较是有利的。达到了75-80 dB的伏特DC(VDC)信噪比,AC信号的本底噪声比10 kHz的目标信号强度低100 dB,而在1 MHz时降低了60 dB。还已经实现了能够在源和感测信号幅度和相位上记录多光谱信息的附加好处。已经部署了相敏检测方案和多周期欠采样技术,以确保在系统操作的整个带宽上的测量保真度。

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