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Influence of the multisine excitation amplitude design for biomedical applications using Impedance Spectroscopy

机译:使用阻抗谱的多正弦激励振幅设计对生物医学应用的影响

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Electrical Impedance Spectroscopy (EIS) is a powerful tool to collect data from many biological materials in a wide variety of applications. Body composition fluid or tissue and organ state monitoring are just some examples of these applications. While the classical EIS is based on frequency sweep, the EIS technique using broadband excitations allows to acquire simultaneous impedance spectrum data. The strength and weakness of broadband EIS relies on the fact that it enables multiple Electrical Bio-Impedance (EBI) data collection in a short measuring time but at the cost of losing impedance spectrum accuracy. In general, there is a relationship between the broadband excitation time/frequency properties and the final EBI's accuracy obtained. This paper studies the influence of the multisine broadband excitation amplitude's design over the EBI accuracy by means of the resultant Noise-to-Signal Ratio (NSR) obtained when measuring with a custom impedance analyzer. Theory has been supported by a set of validation experiments.
机译:电阻抗谱(EIS)是一种功能强大的工具,可以在多种应用中从许多生物材料中收集数据。身体成分的液体或组织以及器官状态监测只是这些应用程序的一些示例。传统的EIS基于频率扫描,而使用宽带激励的EIS技术则允许同时获取阻抗谱数据。宽带EIS的优缺点取决于这样一个事实,即它可以在很短的测量时间内完成多个电子生物阻抗(EBI)数据收集,但是却以牺牲阻抗谱精度为代价。通常,宽带激励时间/频率特性与获得的最终EBI精度之间存在关系。本文通过使用定制阻抗分析仪进行测量时获得的最终信噪比(NSR),研究了多正弦宽带激励幅度设计对EBI精度的影响。一系列验证实验为理论提供了支持。

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