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迭代式X射线CT重建中抑制边缘和混叠伪影方法的比较

Comparison of methods for suppressing edge and aliasing artefacts in iterative x-ray CT reconstruction.

作者信息

Zbijewski Wojciech, Beekman Freek J

机构信息

Image Sciences Institute, Department of Nuclear Medicine and Rudolf Magnus Institute of Neuroscience, UMC Utrecht, Stratenum, Universiteitsweg 100, STR5.203 3584 CG Utrecht, The Netherlands.

出版信息

Phys Med Biol. 2006 Apr 7;51(7):1877-89. doi: 10.1088/0031-9155/51/7/017. Epub 2006 Mar 21.

Abstract

X-ray CT images obtained with iterative reconstruction (IR) can be hampered by the so-called edge and aliasing artefacts, which appear as interference patterns and severe overshoots in the areas of sharp intensity transitions. Previously, we have demonstrated that these artefacts are caused by discretization errors during the projection simulation step in IR. Although these errors are inherent to IR, they can be adequately suppressed by reconstruction on an image grid that is finer than that typically used for analytical methods such as filtered back-projection. Two other methods that may prevent edge artefacts are: (i) smoothing the projections prior to reconstruction or (ii) using an image representation different from voxels; spherically symmetric Kaiser-Bessel functions are a frequently employed example of such a representation. In this paper, we compare reconstruction on a fine grid with the two above-mentioned alternative strategies for edge artefact reduction. We show that the use of a fine grid results in a more adequate suppression of artefacts than the smoothing of projections or using the Kaiser-Bessel image representation.

摘要

通过迭代重建(IR)获得的X射线CT图像可能会受到所谓的边缘和混叠伪影的影响,这些伪影在强度急剧变化的区域表现为干涉图案和严重的过冲。此前,我们已经证明这些伪影是由IR投影模拟步骤中的离散化误差引起的。尽管这些误差是IR固有的,但通过在比通常用于滤波反投影等解析方法的图像网格更精细的图像网格上进行重建,可以充分抑制这些误差。另外两种可能防止边缘伪影的方法是:(i)在重建之前对投影进行平滑处理,或(ii)使用不同于体素的图像表示;球对称的凯泽-贝塞尔函数就是这种表示的一个常用示例。在本文中,我们将在精细网格上的重建与上述两种减少边缘伪影的替代策略进行了比较。我们表明,使用精细网格比投影平滑处理或使用凯泽-贝塞尔图像表示能更充分地抑制伪影。

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