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用于临床成像的低成本多频电阻抗系统(MFEIBS):设计与性能评估

Low-cost multifrequency electrical impedance-based system (MFEIBS) for clinical imaging: design and performance evaluation.

作者信息

Singh Gurmeet, Anand Sneh, Lall Brejesh, Srivastava Anurag, Singh Vaneet

机构信息

a Indian Institute of Technology , New Delhi , India.

b Guru Tegh Bahadur Institute of Technology , New Delhi , India.

出版信息

J Med Eng Technol. 2018 May;42(4):274-289. doi: 10.1080/03091902.2018.1478008. Epub 2018 Jul 18.

Abstract

Electrical impedance tomography (EIT) is an upcoming and capable imaging modality used for clinical imaging. It is non-invasive, non-ionising and an inexpensive technique. This paper explains the designing and the analysis of a low-cost multifrequency electrical impedance-based system (MFEIBS) having a flexible mechanism of interfacing up to 32 electrodes, suitable for 1 kHz-2 MHz. Various indicators to check the performance of the EIT system were evaluated and presented here. The performance of VCO and VCCS was measured up to 2 MHz. SNR was measured with saline phantom and its mean value is 74 dB for the complete bandwidth. Different combinations of resistors and capacitors were used to find the accuracy of the system, and relative error was less than 0.55% for the entire range. CMRR of the system was calculated and it was found to be maximum 85 dB at 1 kHz frequency. A 16-electrode circular plastic phantom having a diameter of 18 cm was established and connected with a simple MFEIBS. Obtained surface potential was applied to the computer used for image formation using NI USB-6259, 16-bit, 1.25 MS/s M Series High-speed DAQ. Images reconstructed using the system presented in this paper was generated from a 16-electrode plastic phantom filled with NaCl up to 1.2 cm height.

摘要

电阻抗断层成像(EIT)是一种新兴且功能强大的用于临床成像的模态。它是非侵入性、非电离且成本低廉的技术。本文阐述了一种基于低成本多频电阻抗的系统(MFEIBS)的设计与分析,该系统具有灵活的接口机制,可连接多达32个电极,适用于1kHz至2MHz。这里评估并展示了用于检查EIT系统性能的各种指标。VCO和VCCS的性能测量频率高达2MHz。使用盐水体模测量了信噪比,其在整个带宽内的平均值为74dB。使用不同的电阻和电容组合来确定系统的精度,在整个范围内相对误差小于0.55%。计算了系统的共模抑制比,发现在1kHz频率下其最大值为85dB。制作了一个直径为18cm的16电极圆形塑料体模,并将其与一个简单的MFEIBS相连。使用NI USB - 6259、16位、1.25MS/s的M系列高速数据采集卡,将获得的表面电位应用于用于图像形成的计算机。本文所展示系统重建的图像是由一个填充了高度达1.2cm的NaCl的16电极塑料体模生成的。

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