Department of Radiation Oncology, Yonsei University College of Medicine, 50-1 Yonsei-ro, Seodaemun-gu, Seoul, South Korea.
Department of Radiation Oncology, Yonsei Cancer Center, Seoul, South Korea.
Phys Eng Sci Med. 2020 Sep;43(3):1069-1075. doi: 10.1007/s13246-020-00905-z. Epub 2020 Jul 22.
This study assesses the dosimetric leaf gap (DLG) correction factor in Mobius3D commissioning affected by a couch top platform and calculates the optimal DLG value according to the point dose difference function. DLG optimizations were performed for 3 LINAC machines and a total of 30 patient volumetric modulated arc therapy plans (i.e., 10 plans per each LINAC). Point dose calculations were performed using an automatic dose calculation system in Mobius3D as well as Mobis3D calculation using a Mobius Verification Phantom (MVP)-based quality assurance plan with a carbon fiber couch top. Subsequently, the results were compared with measurement data. The averaged point dose measured for the MVP with a couch top decreased by approximately 2% relative to that without the couch top. The average of the optimal DLG factors increased by 1.153 mm due to the couch top effect for a dose decrease of 2% at the measured point. In the procedure of Mobius beam commissioning, users should adjust the DLG correction factor using a specific phantom (including MVP) with a couch top structure. If the DLG optimization were performed by using MVP automatic dose calculation system, the factor should be increased by approximately 1.2 mm per 2% dose difference considering user's couch top effect.
本研究评估了受治疗床平台影响的 Mobius3D 调试中的剂量学叶间隙(DLG)校正因子,并根据点剂量差函数计算了最佳 DLG 值。对 3 台 LINAC 机和总共 30 个患者容积调强弧形治疗计划(即每个 LINAC 各 10 个计划)进行了 DLG 优化。点剂量计算使用 Mobius3D 中的自动剂量计算系统以及基于 Mobis3D 验证体模(MVP)的质量保证计划(带有碳纤维治疗床)的 Mobis3D 计算来完成。随后,将结果与测量数据进行比较。与无治疗床的情况相比,带有治疗床的 MVP 的平均点剂量测量值降低了约 2%。由于治疗床的影响,测量点的剂量降低了 2%,最佳 DLG 因子的平均值增加了 1.153 毫米。在 Mobius 光束调试过程中,用户应使用带有治疗床结构的特定体模(包括 MVP)来调整 DLG 校正因子。如果使用 MVP 自动剂量计算系统进行 DLG 优化,考虑到用户的治疗床效应,每 2%剂量差异,因子应增加约 1.2 毫米。