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使用商业 QA 设备进行 IGRT 系统日常 QA 的可行性研究。

Feasibility study of performing IGRT system daily QA using a commercial QA device.

机构信息

Department of Radiation Oncology, Medical University of South Carolina, Charleston, South Carolina 29425, USA.

出版信息

J Appl Clin Med Phys. 2011 Jun 1;12(3):3535. doi: 10.1120/jacmp.v12i3.3535.

Abstract

The purpose of this study was to investigate the feasibility of using a single QA device for comprehensive, efficient daily QA of a linear accelerator (Linac) and three image-guided stereotactic positioning systems (IGSPSs). The Sun Nuclear Daily QA 3 (DQA3) device was used to perform daily dosimetry and mechanical accuracy tests for an Elekta Linac, as well as daily image geometric and isocenter coincidence accuracy tests for three IGSPSs: the AlignRT surface imaging system; the frameless SonArray optical tracking System (FSA) and the Elekta kV CBCT. The DQA3 can also be used for couch positioning, repositioning, and rotational tests during the monthly QA. Based on phantom imaging, the Linac coordinate system determined using AlignRT was within 0.7 mm/0.6° of that of the CBCT system. The difference is attributable to the different calibration methods that are utilized for these two systems. The laser alignment was within 0.5 mm of the isocenter location determined with the three IGSPSs. The ODI constancy was ± 0.5 mm. For gantry and table angles of 0°, the mean isocenter displacement vectors determined using the three systems were within 0.7 mm and 0.6° of one another. Isocenter rotational offsets measured with the systems were all ≤ 0.5°. For photon and electron beams tested over a period of eight months, the output was verified to remain within 2%, energy variations were within 2%, and the symmetry and flatness were within 1%. The field size and light-radiation coincidence were within 1mm ± 1 mm. For dosimetry reproducibility, the standard deviation was within 0.2% for all tests and all energies, except for photon energy variation which was 0.6%. The total measurement time for all tasks took less than 15 minutes per QA session compared to 40 minutes with our previous procedure, which utilized an individual QA device for each IGSPS. The DQA3 can be used for accurate and efficient Linac and IGSPS daily QA. It shortens QA device setup time, eliminates errors introduced by changing phantoms to perform different tests, and streamlines the task of performing dosimetric checks.

摘要

本研究旨在探讨使用单一 QA 设备对直线加速器(Linac)和三个图像引导立体定位系统(IGSPS)进行全面、高效日常 QA 的可行性。Sun Nuclear Daily QA 3(DQA3)设备用于对 Elekta Linac 进行日常剂量学和机械精度测试,以及对三个 IGSPS 进行日常图像几何和等中心重合精度测试:AlignRT 表面成像系统;无框架 SonArray 光学跟踪系统(FSA)和 Elekta kV CBCT。DQA3 还可用于每月 QA 期间的床面定位、重新定位和旋转测试。基于体模成像,使用 AlignRT 确定的 Linac 坐标系与 CBCT 系统的坐标相差 0.7mm/0.6°。这种差异归因于这两个系统使用的不同校准方法。激光对准与三个 IGSPS 确定的等中心位置相差 0.5mm。ODI 稳定性为±0.5mm。对于 0°的旋转台和治疗床角度,三个系统确定的平均等中心位移矢量相差 0.7mm 和 0.6°。系统测量的等中心旋转偏移均≤0.5°。在八个月的时间内对光子和电子束进行测试,输出被验证保持在 2%以内,能量变化在 2%以内,对称性和平坦度在 1%以内。射野大小和光辐射重合度在 1mm±1mm 以内。对于剂量学重复性,除光子能量变化为 0.6%外,所有测试和所有能量的标准偏差均在 0.2%以内。与我们之前使用单个 QA 设备对每个 IGSPS 进行测试的程序相比,所有任务的总测量时间每 QA 会话少于 15 分钟,而之前的程序则需要 40 分钟。DQA3 可用于准确、高效地进行 Linac 和 IGSPS 日常 QA。它缩短了 QA 设备设置时间,消除了因更换体模进行不同测试而引入的误差,并简化了执行剂量学检查的任务。

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