Department of Radiation Oncology, Calvary Mater Hospital Newcastle, Newcastle, NSW, Australia.
School of Mathematical and Physical Sciences, University of Newcastle, Newcastle, NSW, Australia.
J Appl Clin Med Phys. 2022 Jun;23(6):e13602. doi: 10.1002/acm2.13602. Epub 2022 Apr 15.
The EPID PSM is a useful EPID calibration method for QA applications. The dependence of the EPID PSM on the photon beam used to acquire it has been investigated in this study for the four available PSM methods. The aim is to inform upon the viability of applying a single PSM for all available photon beams to simplify PSM implementation and maintenance.
Four methods of PSM determination were each measured once in a single session on a single TrueBeam ® STx linac using 6 MV, 10 MV, 6 MV Flattening-Filter-Free (FFF), and 10 MV FFF photon beams. The resultant PSM was assessed for both intra- and inter-method beam dependence via comparison between PSM of the same method compared to the 6 MV PSM and via comparison between PSM of the same beam with the corresponding Monte Carlo PSM. Comparisons were performed via 2D percentage deviation plots with associated histograms, 1D crossplane profiles, and via mean, median, and standard deviation percentage deviation statistics. Generated beam-response was compared qualitatively via 1D crossplane profile comparison and quantitatively via symmetry assessment with comparison to the IC profiler device.
The Varian method provided the most consistent PSM with varying photon beam, with median percent deviation from the 6 MV PSM within 0.14% for all other beams. Qualitatively, each method provided similar beam-response profiles. The measured beam-response symmetry agreed to within 0.2% between the Calvary Mater Newcastle (CMN) method and IC profiler, but agreement reduced to within 0.9% and 2.2% for the Varian and WashU methods. PSM percent deviation with Monte Carlo PSM was within 0.75% for all methods and beams.
Results suggest that the PSM may be independent of photon beam to clinically relevant levels. The Varian method of PSM determination introduces the least beam dependence into the measured PSM.
EPID PSM 是一种用于 QA 应用的有用的 EPID 校准方法。本研究调查了四种可用的 PSM 方法中,EPID PSM 对用于获取它的光子束的依赖性。目的是告知是否可以应用单个 PSM 来简化 PSM 实施和维护所有可用的光子束。
在单个 TrueBeam ® STx 直线加速器上,使用 6 MV、10 MV、6 MV 平扫滤波器自由(FFF)和 10 MV FFF 光子束,单次测量四种 PSM 确定方法中的每一种。通过将同一方法的 PSM 与 6 MV PSM 进行比较,以及通过将同一光束的 PSM 与相应的蒙特卡罗 PSM 进行比较,评估了所得 PSM 的内和间方法束依赖性。比较是通过 2D 百分比偏差图与相关直方图、1D 交叉平面轮廓以及通过平均值、中位数和标准偏差百分比偏差统计进行的。通过 1D 交叉平面轮廓比较定性地比较生成的束响应,并通过与 IC 轮廓仪设备的对称性评估进行定量比较。
Varian 方法提供了与变化的光子束最一致的 PSM,所有其他光束的 6 MV PSM 的中值偏差百分比都在 0.14%以内。定性地,每种方法都提供了相似的束响应轮廓。测量的束响应对称性在 Calvary Mater Newcastle(CMN)方法和 IC 轮廓仪之间的一致性在 0.2%以内,但在 Varian 和 WashU 方法之间的一致性降低到 0.9%和 2.2%。所有方法和光束的 PSM 百分比偏差与蒙特卡罗 PSM 相差在 0.75%以内。
结果表明,PSM 可能对临床相关水平的光子束具有独立性。PSM 确定的 Varian 方法将最小的束依赖性引入到测量的 PSM 中。