Department of Radiation Oncology, Calvary Mater Hospital Newcastle, Newcastle, New South Wales, Australia.
School of Mathematical and Physical Sciences, University of Newcastle, Newcastle, New South Wales, Australia.
J Appl Clin Med Phys. 2022 Jun;23(6):e13603. doi: 10.1002/acm2.13603. Epub 2022 Apr 15.
Calibration of a radiotherapy electronic portal imaging device (EPID) using the pixel-sensitivity-map (PSM) in place of the flood field correction improves the utility of the EPID for quality assurance applications. Multiple methods are available for determining the PSM and this study provides an evaluation to inform on which is superior.
Three different empirical methods ("Calvary Mater Newcastle" [CMN], "Varian," and "WashU") and a Monte Carlo-based method of PSM determination were investigated on a single Varian TrueBeam STx linear accelerator (linac) with an aS1200 EPID panel. PSM measurements were performed for each empirical method three successive times using the 6 MV beam. The resulting PSM from each method was compared to the Monte Carlo method as a reference using 2D percentage deviation maps and histograms plus crossplane profiles. The repeatability of generated PSMs was also assessed via 2D standard deviation (SD) maps and histograms. Additionally, the Beam-Response generated by removal of the PSM from a raw EPID image for each method was visually contrasted. Finally, the practicality of each method was assessed qualitatively and via the measured time required to acquire and export the required images.
The median pixel-by-pixel percentage deviation between each of the empirical PSM methods and the Monte Carlo PSM was -0.36%, 0.24%, and 0.74% for the CMN, Varian, and WashU methods, respectively. Ninety-five percent of pixels were found to be repeatable to within -0.21%, 0.08%, 0.19%, and 0.35% (1 SD) for the CMN, Monte Carlo, Varian, and WashU methods, respectively. The WashU method was found to be quickest for data acquisition and export and the CMN the slowest.
For the first time four methods of generating the EPID PSM have been compared in detail and strengths and weaknesses of each method have been identified. All methods are considered likely to be clinically acceptable and with similar practical requirements.
使用像素灵敏度图(PSM)代替漫射场校正来校准放射治疗电子射野影像装置(EPID),可提高 EPID 在质量保证应用中的实用性。有多种方法可用于确定 PSM,本研究旨在评估哪种方法更优越。
本研究在配备 aS1200 EPID 平板的单台瓦里安 TrueBeam STx 直线加速器(linac)上,对三种不同的经验方法(“Calvary Mater Newcastle”[CMN]、“Varian”和“WashU”)和一种基于蒙特卡罗的 PSM 确定方法进行了研究。用 6MV 射线对每种经验方法进行了三次 PSM 测量。使用二维百分比偏差图、直方图和交叉平面轮廓,将每个方法的 PSM 与蒙特卡罗方法(参考)进行比较。通过二维标准差(SD)图和直方图评估生成的 PSM 重复性。此外,还通过视觉对比去除每个方法原始 EPID 图像中的 PSM 生成的“Beam-Response”来对比。最后,通过定性评估和测量获取和导出所需图像所需的时间来评估每种方法的实用性。
CMN、Varian 和 WashU 方法的经验 PSM 方法与蒙特卡罗 PSM 的像素逐点百分比偏差中位数分别为-0.36%、0.24%和0.74%。95%的像素在 CMN、蒙特卡罗、Varian 和 WashU 方法中分别重复到-0.21%、0.08%、0.19%和 0.35%(1SD)。WashU 方法在数据采集和导出方面最快,CMN 方法最慢。
这是首次详细比较了生成 EPID PSM 的四种方法,并确定了每种方法的优缺点。所有方法都被认为在临床上是可以接受的,并且具有相似的实际要求。