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Image reconstruction with an adaptive threshold technique in electrical resistance tomography

机译:电阻层析成像中采用自适应阈值技术的图像重建

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摘要

In electrical resistance tomography, electrical currents are injected through the electrodes placed on the surface of a domain and the corresponding voltages are measured. Based on these currents and voltage data, the cross-sectional resistivity distribution is reconstructed. Electrical resistance tomography shows high temporal resolution for monitoring fast transient processes, but it still remains a challenging problem to improve the spatial resolution of the reconstructed images. In this paper, a novel image reconstruction technique is proposed to improve the spatial resolution by employing an adaptive threshold method to the iterative Gauss-Newton method. Numerical simulations and phantom experiments have been performed to illustrate the superior performance of the proposed scheme in the sense of spatial resolution.
机译:在电阻层析成像中,电流通过放置在畴表面上的电极注入,并测量相应的电压。基于这些电流和电压数据,可以重建横截面电阻率分布。电阻层析成像显示了用于监视快速瞬态过程的高时间分辨率,但是提高重建图像的空间分辨率仍然是一个具有挑战性的问题。本文提出了一种新的图像重建技术,通过将自适应阈值方法应用于迭代高斯-牛顿法来提高空间分辨率。数值模拟和幻影实验已经执行,以说明所提出的方案在空间分辨率方面的优越性能。

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