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A prior-based metal artifact reduction algorithm for x-ray CT

机译:用于X射线CT的基于先验的金属伪影减少算法

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摘要

In computed tomography (CT), metal objects in the scanning filed are accompanied by physical phenomenon that causes projections to be inconsistent. These inconsistencies produce bright and dark shadows or streaks in analytically reconstructed images. Interpolation-based metal artifact reduction (MAR) algorithms usually replace the inconsistent projection data by estimating surrogate data based on the surrounding uncorrupted projections. In such cases, secondary artifacts will be generated when the data estimates are inaccurate. Therefore, better projection estimation is critical. This paper proposes an image post-processing strategy to create an intermediate image, named the prior image and better estimates of the surrogate data by forward projecting this prior image. The proposed method consists of three steps based on the forward projection MAR framework. First, metallic implants in the uncorrected images are segmented using a Markov random field model (MRF). Then a prior image is generated via an edge-preserving filter and a recovery procedure of the adjacent anatomical structures. Finally, the projection is completed via forward projecting this prior image and the corrected image is reconstructed by the filtered back-projection (FBP) method. Studies on both phantom and clinical data are carried out to verify the performance of the proposed method. The comparisons with other previous MAR algorithms demonstrate that the proposed MAR method performs better in metal artifact suppression and anatomical structure preservation.
机译:在计算机断层扫描(CT)中,扫描场中的金属物体会伴随物理现象,从而导致投影不一致。这些不一致会在分析重建的图像中产生明暗阴影或条纹。基于插值的金属伪影减少(MAR)算法通常通过根据周围未损坏的投影估算替代数据来替换不一致的投影数据。在这种情况下,当数据估计不准确时,将生成二次伪像。因此,更好的投影估计至关重要。本文提出了一种图像后处理策略,以创建中间图像(称为先前图像),并通过正向投影该先前图像来更好地估计替代数据。所提出的方法包括基于前向投影MAR框架的三个步骤。首先,使用马尔可夫随机场模型(MRF)对未校正图像中的金属植入物进行分割。然后,通过边缘保留滤波器和相邻解剖结构的恢复程序生成先验图像。最后,通过向前投影该先验图像完成投影,并通过滤波后投影(FBP)方法重建校正后的图像。对幻象和临床数据进行了研究,以验证所提出方法的性能。与其他以前的MAR算法的比较表明,提出的MAR方法在抑制金属伪影和保留解剖结构方面表现更好。

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