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Development and Demonstration of Measurement-Time Efficient Methods for Impedance Spectroscopy of Electrode and Sensor Arrays

机译:电极和传感器阵列阻抗谱的测量时间高效方法的开发和演示

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摘要

The development of impedance-based array devices is hindered by a lack of robust platforms and methods upon which to evaluate and interrogate sensors. One aspect to be addressed is the development of measurement-time efficient techniques for broadband impedance spectroscopy of large electrode arrays. The objective of this work was to substantially increase the low frequency impedance measurement throughput capability of a large channel count array analyzer by developing true parallel measurement methods. The goal was achieved by Fourier transform-based analysis of simultaneously-acquired multi-channel time-based current and voltage data. Efficacy and quantitative analysis of the parallel approach at frequencies less than ca. 10 Hz as well as a combined sequential + parallel approach for efficient broadband impedance spectroscopy over 5-orders of magnitude in frequency is demonstrated through complex impedance measurement of arrays consisting of up to 100 elements.
机译:基于阻抗的阵列设备的开发由于缺乏用于评估和询问传感器的可靠平台和方法而受到阻碍。要解决的一个方面是用于大型电极阵列的宽带阻抗谱的测量时间高效技术的发展。这项工作的目的是通过开发真正的并行测量方法来实质上提高大型通道数阵列分析仪的低频阻抗测量吞吐能力。该目标是通过对同时获取的多通道基于时间的电流和电压数据进行基于傅立叶变换的分析来实现的。并行方法在小于ca的频率下的功效和定量分析。通过对多达100个元素组成的阵列进行复杂的阻抗测量,可以证明10 Hz以及组合的顺序+并行方法在频率的5个数量级上进行有效的宽带阻抗谱分析。

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