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基于电信信号处理器的多频电阻抗断层成像(EIT)系统设计

A multi-frequency EIT system design based on telecommunication signal processors.

作者信息

Robitaille Nicolas, Guardo Robert, Maurice Isabelle, Hartinger Alzbeta E, Gagnon Hervé

机构信息

Institut de génie biomédical, Ecole Polytechnique de Montréal, Montréal, QC H3T 1J4, Canada.

出版信息

Physiol Meas. 2009 Jun;30(6):S57-71. doi: 10.1088/0967-3334/30/6/S04. Epub 2009 Jun 2.

Abstract

A multi-frequency electrical impedance tomography system for cardiopulmonary monitoring has been designed with specialized digital signal processors developed primarily for the telecommunications sector. The system consists of two modules: a scan-head and a base-station. The scan-head, located close to the patient's torso, contains front-end circuits for measuring transfer impedance with a 16-electrode array. The base-station, placed at the bedside, comprises 16 direct digital synthesizers, 32 digital down-converters, digital circuits to control the data acquisition sequence and a USB-2.0 microcontroller. At every step of the scan sequence, the system simultaneously measures four complex variables at eight frequencies. These variables are the potential difference between the selected pair of sense electrodes, the currents applied by the source and sink electrodes, and the current flowing through the ground electrode. Frequencies are programmable from 10 kHz to 2 MHz with a resolution of 2 mHz. Characterization tests were performed with a precision mesh phantom connected to the scan-head. For a 5 Hz frame rate, the mean signal-to-noise ratio and accuracy are, respectively, 43 dB and 95.4% for eight frequencies logarithmically spaced from 70 to 950 kHz. In vitro and in vivo time-difference images have been reconstructed.

摘要

一种用于心肺监测的多频电阻抗断层成像系统,是利用主要为电信行业开发的专用数字信号处理器设计的。该系统由两个模块组成:一个扫描头和一个基站。扫描头靠近患者躯干,包含用于通过16电极阵列测量转移阻抗的前端电路。基站置于床边,包括16个直接数字合成器、32个数字下变频器、控制数据采集序列的数字电路以及一个USB - 2.0微控制器。在扫描序列的每一步,系统同时在八个频率下测量四个复变量。这些变量是所选一对传感电极之间的电位差、源电极和汇电极施加的电流以及流过接地电极的电流。频率可在10 kHz至2 MHz范围内编程,分辨率为2 mHz。使用连接到扫描头的精密网格模型进行了特性测试。对于5 Hz的帧率,在70至950 kHz对数间隔的八个频率下,平均信噪比和精度分别为43 dB和95.4%。已重建了体外和体内时间差图像。

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