Optimization-based reconstruction for reduction of CBCT artifact in IGRT

D. Xia, Zheng Zhang, P. Paysan, D. Seghers, M. Brehm, P. Munro, E. Sidky, C. Pelizzari, Xiaochuan Pan
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Abstract

Kilo-voltage cone-beam computed tomography (CBCT) plays an important role in image guided radiation therapy (IGRT) by providing 3D spatial information of tumor potentially useful for optimizing treatment planning. In current IGRT CBCT system, reconstructed images obtained with analytic algorithms, such as FDK algorithm and its variants, may contain artifacts. In an attempt to compensate for the artifacts, we investigate optimization-based reconstruction algorithms such as the ASD-POCS algorithm for potentially reducing arti- facts in IGRT CBCT images. In this study, using data acquired with a physical phantom and a patient subject, we demonstrate that the ASD-POCS reconstruction can significantly reduce artifacts observed in clinical re- constructions. Moreover, patient images reconstructed by use of the ASD-POCS algorithm indicate a contrast level of soft-tissue improved over that of the clinical reconstruction. We have also performed reconstructions from sparse-view data, and observe that, for current clinical imaging conditions, ASD-POCS reconstructions from data collected at one half of the current clinical projection views appear to show image quality, in terms of spatial and soft-tissue-contrast resolution, higher than that of the corresponding clinical reconstructions.
基于优化重建的IGRT中CBCT伪影减少方法
千电压锥束计算机断层扫描(CBCT)通过提供肿瘤的三维空间信息来优化治疗方案,在图像引导放射治疗(IGRT)中发挥着重要作用。在当前的IGRT CBCT系统中,使用解析算法(如FDK算法及其变体)获得的重构图像可能存在伪影。为了补偿伪影,我们研究了基于优化的重建算法,如ASD-POCS算法,以潜在地减少IGRT CBCT图像中的伪影。在这项研究中,我们使用物理幻影和患者受试者获得的数据,我们证明了ASD-POCS重建可以显著减少临床重建中观察到的伪影。此外,使用ASD-POCS算法重建的患者图像表明,软组织的对比度水平优于临床重建。我们还从稀疏视图数据进行了重建,并观察到,在目前的临床成像条件下,从目前临床投影视图的一半收集的数据中重建的ASD-POCS在空间和软组织对比度分辨率方面似乎显示出比相应的临床重建更高的图像质量。
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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