Department of Radiation Oncology, Yonsei Cancer Center, Heavy Ion Therapy Research Institute, Yonsei University College of Medicine, Seoul, South Korea.
Medical Physics and Biomedical Engineering Lab (MPBEL), Yonsei University College of Medicine, Seoul, South Korea.
Technol Cancer Res Treat. 2023 Jan-Dec;22:15330338231175781. doi: 10.1177/15330338231175781.
To develop a fully automated in-house gamma analysis software for the "Cheese" phantom-based delivery quality assurance (QA) of helical tomotherapy plans.
The developed in-house software was designed to automate several procedures, which need to be manually performed using commercial software packages. The region of interest for the analysis was automatically selected by cropping out film edges and thresholding dose values (>10% of the maximum dose). The film-measured dose was automatically aligned to the computed dose using an image registration algorithm. An optimal film scaling factor was determined to maximize the percentage of pixels passing gamma (gamma passing rate) between the measured and computed doses (3%/3 mm criteria). This gamma analysis was repeated by introducing setup uncertainties in the anterior-posterior direction. For 73 tomotherapy plans, the gamma analysis results using the developed software were compared to those analyzed by medical physicists using a commercial software package.
The developed software successfully automated the gamma analysis for the tomotherapy delivery quality assurance. The gamma passing rate (GPR) calculated by the developed software was higher than that by the clinically used software by 3.0%, on average. While, for 1 of the 73 plans, the GPR by the manual gamma analysis was higher than 90% (pass/fail criteria), the gamma analysis using the developed software resulted in fail (GPR < 90%).
The use of automated and standardized gamma analysis software can improve both the clinical efficiency and veracity of the analysis results. Furthermore, the gamma analyses with various film scaling factors and setup uncertainties will provide clinically useful information for further investigations.
为了开发一种完全自动化的内部伽马分析软件,用于基于“奶酪”模体的螺旋断层放疗计划的交付质量保证(QA)。
所开发的内部软件旨在自动化几个需要使用商业软件包手动执行的程序。通过裁剪胶片边缘和对剂量值进行阈值处理(>最大剂量的 10%),自动选择感兴趣区域进行分析。使用图像配准算法自动将胶片测量的剂量与计算剂量对齐。确定最佳的胶片缩放因子,以最大化测量剂量和计算剂量之间通过伽马(伽马通过率)的像素百分比(3%/3mm 标准)。通过在前-后方向引入设置不确定性,重复该伽马分析。对于 73 个断层放疗计划,使用开发软件进行的伽马分析结果与医学物理学家使用商业软件包进行的分析结果进行了比较。
所开发的软件成功地实现了用于断层放疗交付质量保证的伽马分析自动化。所开发软件计算的伽马通过率(GPR)平均比临床使用的软件高 3.0%。然而,对于 73 个计划中的 1 个计划,手动伽马分析的 GPR 高于 90%(通过/失败标准),而使用所开发软件进行的伽马分析则导致失败(GPR<90%)。
使用自动化和标准化的伽马分析软件可以提高分析结果的临床效率和准确性。此外,使用各种胶片缩放因子和设置不确定性进行伽马分析将为进一步研究提供临床有用的信息。