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首页> 外文期刊>Journal of applied clinical medical physics / >An EPID‐based system for gantry‐resolved MLC quality assurance for VMAT
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An EPID‐based system for gantry‐resolved MLC quality assurance for VMAT

机译:基于EPID的系统,用于VMAT龙门解决的MLC质量保证

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摘要

Multileaf collimator (MLC) positions should be precisely and independently measured as a function of gantry angle as part of a comprehensive quality assurance (QA) program for volumetric-modulated arc therapy (VMAT). It is also ideal that such a QA program has the ability to relate MLC positional accuracy to patient-specific dosimetry in order to determine the clinical significance of any detected MLC errors. In this work we propose a method to verify individual MLC trajectories during VMAT deliveries for use as a routine linear accelerator QA tool. We also extend this method to reconstruct the 3D patient dose in the treatment planning system based on the measured MLC trajectories and the original DICOM plan file. The method relies on extracting MLC positions from EPID images acquired at 8.41 fps during clinical VMAT deliveries. A gantry angle is automatically tagged to each image in order to obtain the MLC trajectories as a function of gantry angle. This analysis was performed for six clinical VMAT plans acquired at monthly intervals for three months. The measured trajectories for each delivery were compared to the MLC positions from the DICOM plan file. The maximum mean error detected was 0.07 mm and a maximum root-mean-square error was 0.8 mm for any leaf of any delivery. The sensitivity of this system was characterized by introducing random and systematic MLC errors into the test plans. It was demonstrated that the system is capable of detecting random and systematic errors on the range of 1–2 mm and single leaf calibration errors of 0.5 mm. The methodology developed in the work has potential to be used for efficient routine linear accelerator MLC QA and pretreatment patient-specific QA and has the ability to relate measured MLC positional errors to 3D dosimetric errors within a patient volume.PACS number(s): 87.55.Qr
机译:多叶准直仪(MLC)的位置应作为龙门角度的函数进行精确且独立的测量,这是体积调制电弧疗法(VMAT)的全面质量保证(QA)程序的一部分。同样理想的是,这种QA程序具有将MLC位置精度与患者特定剂量相关的能力,以确定任何检测到的MLC错误的临床意义。在这项工作中,我们提出了一种方法来验证VMAT交付期间的单个MLC轨迹,以用作常规线性加速器QA工具。我们还扩展了该方法,以根据测得的MLC轨迹和原始DICOM计划文件在治疗计划系统中重建3D患者剂量。该方法依赖于在临床VMAT交付期间从以8.41 fps采集的EPID图像中提取MLC位置。将机架角度自动标记到每个图像,以获得作为机架角度的函数的MLC轨迹。对三个月每月一次获取的六个临床VMAT计划进行了此分析。将每次交付的测量轨迹与DICOM计划文件中的MLC位置进行比较。对于任何交货的任何叶片,检测到的最大平均误差为0.07 mm,最大均方根误差为0.8 mm。通过将随机的和系统的MLC错误引入测试计划来表征该系统的灵敏度。结果表明,该系统能够检测1-2 mm范围内的随机和系统误差,以及0.5 mm的单叶校准误差。这项工作中开发的方法学有可能用于有效的常规线性加速器MLC QA和治疗前特定于患者的QA,并且具有将测得的MLC位置误差与患者体内3D剂量误差相关的能力.PACS数量:87.55 .qr

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