A broadband system for multifrequency static imaging in electrical impedance tomography.

P J Riu, J Rosell, A Lozano, R Pallàs-Areny
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引用次数: 31

Abstract

A widely accepted method for static imaging in electrical impedance tomography (EIT) is to measure at two frequencies. The choice of measurement frequencies is application-dependent because some different tissues cannot be distinguished when using two fixed frequencies. We have developed a system that generates signals from 8-10(3) kHz and applies two of these signals simultaneously to the body through a broadband current mirror. Great care has been taken in the design of the current injection multiplexer in order to keep the current source output capacitance as low as possible. Furthermore design of the layout of the patient interface board, in order to reduce feedthrough capacitances, also needs great care. Other parameters for driving and detection sections have been designed according to our results from FEM and circuit simulations including skin and electrode effects. Simulations using FEM with available tissue impedance data and preliminary measurements in a discrete phantom show that static imaging is possible for both the real and imaginary parts of the impedance.

电阻抗断层成像中用于多频静态成像的宽带系统。
在电阻抗断层成像(EIT)中,一种被广泛接受的静态成像方法是在两个频率上进行测量。测量频率的选择取决于应用,因为当使用两个固定频率时,无法区分某些不同的组织。我们已经开发了一种系统,可以产生8-10(3)kHz的信号,并通过宽带电流反射镜同时将其中两个信号应用到身体上。为了使电流源输出电容尽可能低,电流注入多路复用器的设计非常谨慎。此外,为了减小馈电电容,病人接口板的布局设计也需要特别注意。根据我们的有限元和电路仿真结果,包括皮肤和电极效应,设计了驱动和检测部分的其他参数。利用现有的组织阻抗数据和在离散模体中进行的初步测量进行有限元模拟表明,对阻抗的实部和虚部都可以进行静态成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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