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Optimization-Based Image Reconstruction with Artifact Reduction in C-Arm CBCT

机译:基于优化的C臂CBCT中带有伪影的图像重建

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摘要

We investigate an optimization-based reconstruction, with an emphasis on image-artifact reduction, from data collected in C-arm cone-beam computed tomography (CBCT) employed in image-guided interventional procedures. In the study, an image to be reconstructed is formulated as a solution to a convex optimization program in which a weighted data divergence is minimized subject to a constraint on the image total variation (TV); a data-derivative fidelity is introduced in the program specifically for effectively suppressing dominant, low-frequency data artifact caused by, e.g., data truncation; and the Chambolle-Pock (CP) algorithm is tailored to reconstruct an image through solving the program. Like any other reconstructions, the optimization-based reconstruction considered depends upon numerous parameters. We elucidate the parameters, illustrate their determination, and demonstrate their impact on the reconstruction. The optimization-based reconstruction, when applied to data collected from swine and patient subjects, yields images with visibly reduced artifacts in contrast to the reference reconstruction, and it also appears to exhibit a high degree of robustness against distinctively different anatomies of imaged subjects and scanning conditions of clinical significance. Knowledge and insights gained in the study may be exploited for aiding in the design of practical reconstructions of truly clinical-application utility.
机译:我们从图像引导干预程序中采用的C型臂锥束计算机断层扫描(CBCT)中收集的数据中,研究了基于优化的重建,重点是图像伪影的减少。在这项研究中,将要重构的图像公式化为凸优化程序的解决方案,在该凸优化程序中,受图像总变化量(TV)的限制,加权数据差异最小。在程序中引入了数据导数保真度,专门用于有效地抑制由例如数据截断引起的主要的低频数据伪像; Chambolle-Pock(CP)算法经过定制,可以通过求解程序来重建图像。像任何其他重构一样,所考虑的基于优化的重构取决于众多参数。我们阐明这些参数,说明它们的确定性,并证明它们对重建的影响。与参考重建相比,基于优化的重建在应用于从猪和患者受试者收集的数据时,所产生的图像伪影明显减少,并且看来还表现出了高度的鲁棒性,可抵抗成像对象和扫描的明显不同的解剖结构具有临床意义的条件。在研究中获得的知识和见解可用于帮助设计真正的临床应用效用的实用重建方案。

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