Multiplexing Error and Noise Reduction in Electrical Impedance Tomography Imaging

IF 1.9 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
M. Barreiro, Pablo Sánchez, Julián Vera, Matías Viera, Isabel Morales, Antonio Hector Dell´Osa, P. Bertemes-Filho, F. Simini
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引用次数: 2

Abstract

Electrical Impedance Tomography design can be simplified to obtain a low cost 16 electrodes edema monitoring clinical instrument by using voltage measurement multiplexing. Multiplexers introduce errors, which we have estimated by consecutive phantom measurements both using voltage multiplexers and by selecting the electrodes by hand, all other things being the same. Noise is taken care of by averaging. The EIDORS reconstruction of the phantom with multiplexed measurements is compared to the hand-selected electrode measurements reconstruction. The difference image obtained is considered an estimation of the multiplexer induced error. This measurement error is subtracted from the multiplexed object measurement matrix, giving a modified reconstruction which is closer to the hand-selected electrodes measurement based reconstruction than the multiplexed reconstruction. The quality factor of the uncorrected multiplexer obtained image of 57% is increased to 83% which is the best increase of three methods described. This suggests the benefit of a “calibration” phase for all 16 electrodes, prior to EIT reconstruction, using a set-up-specific “error matrix” to correct the data matrix before submission to the reconstruction method.
电阻抗断层成像中的多路复用误差和降噪
采用电压测量复用技术,简化电阻抗断层成像设计,获得低成本的16电极水肿监测临床仪器。多路复用器引入误差,我们通过使用电压多路复用器和手动选择电极的连续幻象测量来估计误差,所有其他事情都是相同的。噪声是通过平均处理的。采用多路测量的EIDORS重建与手工选择电极测量重建进行了比较。得到的差分图像被认为是对多路复用器诱导误差的估计。该测量误差从多路复用目标测量矩阵中减去,得到的修正重建比多路复用重建更接近于基于手工选择电极测量的重建。将未校正的多路复用器图像的质量因子从57%提高到83%,是三种方法中提高效果最好的。这表明在EIT重建之前,对所有16个电极进行“校准”阶段的好处,在提交给重建方法之前,使用特定设置的“误差矩阵”来纠正数据矩阵。
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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