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Image reconstruction for sparse-view CT and interior CT—introduction to compressed sensing and differentiated backprojection

机译:稀疏CT和内部CT的图像重建-压缩传感和差分反投影介绍

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New designs of future computed tomography (CT) scanners called sparse-view CT and interior CT have been considered in the CT community. Since these CTs measure only incomplete projection data, a key to put these CT scanners to practical use is a development of advanced image reconstruction methods. After 2000, there was a large progress in this research area briefly summarized as follows. In the sparse-view CT, various image reconstruction methods using the compressed sensing (CS) framework have been developed towards reconstructing clinically feasible images from a reduced number of projection data. In the interior CT, several novel theoretical results on solution uniqueness and solution stability have been obtained thanks to the discovery of a new class of reconstruction methods called differentiated backprojection (DBP). In this paper, we mainly review this progress including mathematical principles of the CS image reconstruction and the DBP image reconstruction for readers unfamiliar with this area. We also show some experimental results from our past research to demonstrate that this progress is not only theoretically elegant but also works in practical imaging situations.
机译:CT社区已经考虑了未来的计算机断层扫描(CT)扫描仪的新设计,称为稀疏CT和内部CT。由于这些CT仅测量不完整的投影数据,因此将这些CT扫描仪投入实际使用的关键是先进图像重建方法的发展。 2000年后,该研究领域取得了很大的进展,现总结如下。在稀疏视图CT中,已经开发了使用压缩传感(CS)框架的各种图像重建方法,旨在从数量减少的投影数据中重建临床上可行的图像。在室内CT中,由于发现了一类称为差分反投影(DBP)的新型重建方法,因此获得了一些关于溶液唯一性和溶液稳定性的新颖理论结果。在本文中,我们主要回顾这一进展,包括不熟悉该领域的读者的CS图像重建和DBP图像重建的数学原理。我们还显示了我们过去研究的一些实验结果,以证明这一进展不仅在理论上是优雅的,而且在实际的成像情况下也可以工作。

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