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Metal artifact reduction through MVCBCT and kVCT in radiotherapy

机译:通过MVCBCT和kVCT在放射治疗中减少金属伪影

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摘要

This study proposes a new method for removal of metal artifacts from megavoltage cone beam computed tomography (MVCBCT) and kilovoltage CT (kVCT) images. Both images were combined to obtain prior image, which was forward projected to obtain surrogate data and replace metal trace in the uncorrected kVCT image. The corrected image was then reconstructed through filtered back projection. A similar radiotherapy plan was designed using the theoretical CT image, the uncorrected kVCT image, and the corrected image. The corrected images removed most metal artifacts, and the CT values were accurate. The corrected image also distinguished the hollow circular hole at the center of the metal. The uncorrected kVCT image did not display the internal structure of the metal, and the hole was misclassified as metal portion. Dose distribution calculated based on the corrected image was similar to that based on the theoretical CT image. The calculated dose distribution also evidently differed between the uncorrected kVCT image and the theoretical CT image. The use of the combined kVCT and MVCBCT to obtain the prior image can distinctly improve the quality of CT images containing large metal implants.
机译:这项研究提出了一种新的方法,可以从兆伏特锥束计算机断层扫描(MVCBCT)和千伏特CT(kVCT)图像中去除金属伪影。合并两个图像以获得先验图像,将其向前投影以获得替代数据并替换未校正的kVCT图像中的金属痕迹。然后通过滤波后的反投影重建校正后的图像。使用理论CT图像,未校正的kVCT图像和校正后的图像设计了类似的放射治疗计划。校正后的图像消除了大多数金属伪影,并且CT值准确。校正后的图像还可以分辨出金属中心的空心圆形孔。未经校正的kVCT图像未显示金属的内部结构,并且该孔被误分类为金属部分。基于校正图像计算的剂量分布与基于理论CT图像的剂量分布相似。在未经校正的kVCT图像和理论CT图像之间,计算出的剂量分布也明显不同。结合使用kVCT和MVCBCT来获得先验图像可以明显改善包含大型金属植入物的CT图像的质量。

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