首页> 外文会议>Image Processing pt.3; Progress in Biomedical Optics and Imaging; vol.7 no.30 >Metal Artifacts Reduction in CT Images through Euler's Elastica and Curvature Based Sinogram Inpainting
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Metal Artifacts Reduction in CT Images through Euler's Elastica and Curvature Based Sinogram Inpainting

机译:通过Euler的Elastica和基于曲率的Singram修补减少CT图像中的金属伪像

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Metal artifacts arise in CT images when X-rays traverse the high attenuating objects such as metal bodies. Portions of projection data become unavailable. In this paper, we present an Euler's elastica and curvature based sinogram inpainting (EECSI) algorithm for metal artifacts reduction, where "inpainting" is a synonym for "image interpolation". In EECSI, the unavailable data are regarded as occlusion and can be inpainted inside the inpainting domain based on elastica interpolants. Numerical simulations demonstrate that, compared to conventional interpolation methods, the algorithm proposed connects the unavailable projection region more smoothly and accurately, thus better reduces metal artifacts and more accurately reveals cross section structures, especially in the immediate neighborhood of the metallic objects.
机译:当X射线穿过诸如金属物体之类的高衰减物体时,CT图像中会出现金属伪影。投影数据的某些部分不可用。在本文中,我们提出了一种基于Euler的基于弹性和曲率的正弦图修复(EECSI)算法,用于减少金属伪影,其中“修复”是“图像插值”的同义词。在EECSI中,不可用的数据被视为遮挡,可以根据弹性插值在修复区域内进行修复。数值模拟表明,与传统的插值方法相比,该算法更平滑,更准确地连接了不可用的投影区域,从而更好地减少了金属伪影,并且更准确地揭示了截面结构,尤其是在金属物体的附近。

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