Orthogonal limited-angle CT reconstruction method based on anisotropic self-guided image filtering.

IF 1.7 3区 医学 Q3 INSTRUMENTS & INSTRUMENTATION
Journal of X-Ray Science and Technology Pub Date : 2025-03-01 Epub Date: 2025-01-27 DOI:10.1177/08953996241300013
Gong Changcheng, Song Qiang
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引用次数: 0

Abstract

Computed tomography (CT) reconstruction from incomplete projection data is significant for reducing radiation dose or scanning time. In this work, we investigate a special sampling strategy, which performs two limited-angle scans. We call it orthogonal limited-angle sampling. The X-ray source trajectory covers two limited-angle ranges, and the angle bisectors of the two angular ranges are orthogonal. This sampling method avoids rapid switching of tube voltage in few-view sampling, and reduces data correlation of projections in limited-angle sampling. It has the potential to become a practical imaging strategy. Then we propose a new reconstruction model based on anisotropic self-guided image filtering (ASGIF) and present an algorithm to solve this model. We construct adaptive weights to guide image reconstruction using the gradient information of reconstructed image itself. Additionally, since the shading artifacts are related to the scanning angular ranges and distributed in two orthogonal directions, anisotropic image filtering is used to preserve image edges. Experiments on a digital phantom and real CT data demonstrate that ASGIF method can effectively suppress shading artifacts and preserve image edges, outperforming other competing methods.

基于各向异性自引导图像滤波的正交限角 CT 重建方法。
计算机断层扫描(CT)从不完整的投影数据重建是重要的,以减少辐射剂量或扫描时间。在这项工作中,我们研究了一种特殊的采样策略,它执行两次有限角度扫描。我们称之为正交限角抽样。x射线源轨迹覆盖两个有限角度范围,两个角度范围的角平分线是正交的。该采样方法避免了少视点采样时管电压的快速切换,减少了有限角度采样时投影的数据相关性。它有可能成为一种实用的成像策略。在此基础上,提出了一种基于各向异性自引导图像滤波(ASGIF)的图像重建模型,并给出了求解该模型的算法。利用重构图像本身的梯度信息构造自适应权值来指导图像重建。此外,由于阴影伪影与扫描角度范围有关,并且分布在两个正交方向上,因此采用各向异性图像滤波来保持图像边缘。在数字幻影和真实CT数据上的实验表明,ASGIF方法可以有效地抑制阴影伪影并保持图像边缘,优于其他竞争方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.90
自引率
23.30%
发文量
150
审稿时长
3 months
期刊介绍: Research areas within the scope of the journal include: Interaction of x-rays with matter: x-ray phenomena, biological effects of radiation, radiation safety and optical constants X-ray sources: x-rays from synchrotrons, x-ray lasers, plasmas, and other sources, conventional or unconventional Optical elements: grazing incidence optics, multilayer mirrors, zone plates, gratings, other diffraction optics Optical instruments: interferometers, spectrometers, microscopes, telescopes, microprobes
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