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3-D EIT Image Reconstruction Using a Block-Based Compressed Sensing Approach

机译:使用基于块的压缩传感方法重建3D EIT图像

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Electrical impedance tomography (EIT) is a fast and cost-effective technique that provides a tomographic conductivity image of a subject from boundary current-voltage data. This paper proposes a time and memory efficient method for solving a large scale 3D EIT image reconstruction problem and the ill-posed linear inverse problem. First, we use block-based sampling for a large number of measured data from many electrodes. This method will reduce the size of Jacobian matrix and can improve accuracy of reconstruction by using more electrodes. And then, a sparse matrix reduction technique is proposed using thresholding to set very small values of the Jacobian matrix to zero. By adjusting the Jacobian matrix into a sparse format, the element with zeros would be eliminated, which results in a saving of memory requirement. Finally, we built up the relationship between compressed sensing and EIT definitely and induce the CS: two-step Iterative Shrinkage/Thresholding and block-based method into EIT image reconstruction algorithm. The results show that block-based compressed sensing enables the large scale 3D EIT problem to be efficient. For a 72-electrodes EIT system, our proposed method could save at least 61% of memory and reduce time by 72% than compressed sensing method only. The improvements will be obvious by using more electrodes. And this method is not only better at anti-noise, but also faster and better resolution.
机译:电阻抗断层扫描(EIT)是一种快速且经济高效的技术,可根据边界电流-电压数据提供对象的断层扫描电导率图像。本文提出了一种解决大规模3D EIT图像重建问题和不适定线性逆问题的高效时间和内存方法。首先,我们将基于块的采样用于许多电极的大量测量数据。该方法将减小雅可比矩阵的大小,并可以通过使用更多的电极来提高重建精度。然后,提出了一种稀疏矩阵约简技术,该技术使用阈值将雅可比矩阵的极小值设置为零。通过将雅可比矩阵调整为稀疏格式,将消除具有零的元素,从而节省了内存需求。最后,我们确定了压缩感知与EIT之间的关系,并引入了CS:EIT图像重建算法中的两步迭代收缩/阈值和基于块的方法。结果表明,基于块的压缩感知使大规模3D EIT问题变得高效。对于72电极EIT系统,与仅压缩传感方法相比,我们提出的方法可以节省至少61%的内存并减少72%的时间。通过使用更多的电极,改进将显而易见。而且这种方法不仅抗噪效果更好,而且分辨率更高。

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