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Exact gram filtering and efficient backprojection for iterative CT reconstruction

机译:用于迭代 CT 重建的精确克滤波和高效背投

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Abstract Purpose Forward and backprojections are the basis of all model‐based iterative reconstruction (MBIR) methods. However, computing these accurately is time‐consuming. In this paper, we present a method for MBIR in parallel X‐ray beam geometry that utilizes a Gram filter to efficiently implement forward and?backprojection. Methods We propose using voxel‐basis and modeling its footprint in a box spline framework to calculate the Gram filter exactly and improve the performance of backprojection. In the special case of parallel X‐ray beam geometry, the forward and backprojection can be implemented by an estimated Gram filter efficiently if the sinogram signal is bandlimited. In this paper, a specialized sinogram interpolation method is proposed to eliminate the bandlimited prerequisite and thus improve the reconstruction accuracy. We build on this idea by utilizing the continuity of the voxel‐basis' footprint, which provides a more accurate sinogram interpolation and further improves the efficiency and quality of backprojection. In addition, the detector blur effect can be efficiently accounted for in our method to better handle realistic?scenarios. Results The proposed method is tested on both phantom and real computed tomography (CT) images under different resolutions, sinogram sampling steps, and noise levels. The proposed method consistently outperforms other state‐of‐the‐art projection models in terms of speed and accuracy for both backprojection and?reconstruction. Conclusions We proposed a iterative reconstruction methodology for 3D parallel‐beam X‐ray CT reconstruction. Our experimental results demonstrate that the proposed methodology is accurate, fast, and reproducible, and outperforms alternative state‐of‐the‐art projection models on both backprojection and reconstruction results?significantly.
机译:摘要 目的 前向投影和后向投影是所有基于模型的迭代重构(MBIR)方法的基础。然而,准确计算这些内容非常耗时。在本文中,我们提出了一种平行X射线束几何结构中的MBIR方法,该方法利用Gram滤波器有效地实现前向和后向投影。方法 建议使用基于体素的体素,在盒状样条框架中对其足迹进行建模,以精确计算Gram滤波器,提高反向投影的性能。在平行X射线束几何的特殊情况下,如果正弦图信号是有带宽限制的,则估计的革兰氏滤波器可以有效地实现前向和后向投影。该文提出一种专门的正弦图插值方法,以消除带限前提条件,从而提高重构精度。我们利用体素基足迹的连续性来建立这一想法,从而提供更准确的正弦图插值,并进一步提高反向投影的效率和质量。此外,在我们的方法中可以有效地考虑探测器模糊效应,以更好地处理逼真的场景。结果 在不同分辨率、正弦采样步长和噪声水平下的体像和真实计算机断层扫描(CT)图像上对所提方法进行了测试。所提出的方法在背投影和重建的速度和精度方面始终优于其他最先进的投影模型。结论 提出了一种三维平行束X射线CT重建的迭代重建方法。实验结果表明,所提方法准确、快速、可重复,在背投影和重建结果上均优于其他最先进的投影模型。

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