首页> 外文会议>SPIE Medical Imaging Conference >Metal Artifact Reduction for Radiation Therapy: A Simulation Study
【24h】

Metal Artifact Reduction for Radiation Therapy: A Simulation Study

机译:减少金属工件辐射疗法的模拟研究

获取原文

摘要

Metal artifacts have been a challenge in computed tomography (CT) for nearly four decades. Despite intensive research in this area, challenges still exist in commercial metal artifact reduction (MAR) solutions. MAR is particularly important for radiation therapy and proton therapy treatment planning because metal artifacts not only degrade the outline of tumors and sensitive organs, but also introduce errors in stopping power estimation, compromising dose prediction accuracy. In this study, we developed a MAR approach that combines hardware and algorithmic innovations to systematically tackle the challenge of metal artifacts in radiation therapy. We propose to operate the X-ray tube at exceptionally high voltage and the detector DAS with adaptive triggering rate to prevent photon starvation in the CT raw data, followed by physics-based sinogram domain precorrection and model-based iterative reconstruction to correct the metal artifacts. We performed an end-to-end simulation of the integrated MAR approach with advanced hardware and algorithmic solutions. We simulated 700mAs/140 kVp and 550mAs/180 kVp CT scans, 984 views, with and without adaptive triggering, of an image volume based on the Visible Human Project CT data set, and after inserting two Titanium hip prostheses. The results demonstrated that the proposed MAR scheme can effectively eliminate metal artifacts and improve the accuracy of proton therapy planning. The dosimetric evaluation showed that with the proposed MAR solution, the error in range calculation was reduced from 7 mm to <1 mm.
机译:在过去的四十年中,金属伪影一直是计算机断层扫描(CT)的一项挑战。尽管在这一领域进行了深入研究,但是在商业化金属工件减少(MAR)解决方案中仍然存在挑战。 MAR对于放射疗法和质子疗法治疗计划特别重要,因为金属伪影不仅会降低肿瘤和敏感器官的轮廓,还会在停止功率估计时引入错误,从而损害剂量预测的准确性。在这项研究中,我们开发了一种结合硬件和算法创新的MAR方法,以系统地应对放射疗法中金属伪影的挑战。我们建议以极高的电压操作X射线管,并以自适应触发速率操作探测器DAS,以防止CT原始数据中的光子不足,然后进行基于物理学的正弦图域预校正和基于模型的迭代重建,以校正金属伪像。我们使用先进的硬件和算法解决方案对集成MAR方法进行了端到端仿真。我们模拟了700mAs / 140 kVp和550mAs / 180 kVp CT扫描,基于可见人类Project CT数据集并插入了两个Titanium髋关节假体后,在有无自适应触发的情况下,对984个视图进行了图像查看。结果表明,提出的MAR方案可以有效地消除金属伪影并提高质子治疗计划的准确性。剂量学评估表明,采用提出的MAR解决方案,范围计算的误差从7 mm减小到<1 mm。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号