Division of Medical Physics, Department of Radiation Oncology, Tata Medical Center, Newtown, Rajarhat, Kolkata, West Bengal, India.
Department of Physics, School of Advanced Sciences, Vellore Institute of Technology, Vellore, Tamil Nadu, India.
Asian Pac J Cancer Prev. 2024 May 1;25(5):1715-1723. doi: 10.31557/APJCP.2024.25.5.1715.
To assess the precision of dose calculations for Volumetric Modulated Arc Therapy (VMAT) using megavoltage (MV) photon beams, we validated the accuracy of two algorithms: AUROS XB and Analytical Anisotropic Algorithm (AAA). This validation will encompass both flattening filter (FF) and flattening filter-free beam (FFF) modes, using AAPM Medical Physics Practice Guideline (MPPG 5b).
VMAT validation tests were generated for 6 MV FF and 6 MV FFF beams using the AAA and AXB algorithms in the Eclipse V.15.1 treatment planning system (TPS). Corresponding measurements were performed on a linear accelerator using a diode detector and a radiation field analyzer. Point dose (PD) and in-vivo measurements were conducted using an A1SL ion chamber and (TLD) from Thermofisher, respectively. The Rando Phantom was employed for end-to-end (E2E) tests.
The mean difference (MD) between the TPS-calculated values and the measured values for the PDD and output factors were within 1% and 0.5%, respectively, for both 6 MV FF and 6 MV FFF. In the TG 119 sets, the MD for PD with both AAA and AXB was <0.9%. For the TG 244 sets, the minimum, maximum, and mean deviations in PD for both 6 MV FF and 6 MV FFF beams were 0.3%, 1.4% and 0.8% respectively. In the E2E test, using the Rando Phantom, the MD between the TLD dose and the TPS dose was within 0.08% for both 6 MV FF (p=1.0) and 6 MV FFF (0.018) beams.
The accuracy of the TPS and its algorithms (AAA and AXB) has been successfully validated. The recommended tests included in the VMAT/IMRT validation section proved invaluable for verifying the PDD, output factors, and the feasibility of complex clinical cases. E2E tests were instrumental in validating the entire workflow from CT simulation to treatment delivery.
评估使用兆伏(MV)光子束进行容积调强弧形治疗(VMAT)的剂量计算精度,我们验证了两种算法的准确性:AUROS XB 和分析各向异性算法(AAA)。本验证将涵盖使用 AAPM 医学物理学实践指南(MPPG 5b)的平板滤波(FF)和无平板滤波(FFF)模式。
使用 Eclipse V.15.1 治疗计划系统(TPS)中的 AAA 和 AXB 算法,为 6 MV FF 和 6 MV FFF 光束生成 VMAT 验证测试。使用二极管探测器和辐射场分析仪在直线加速器上进行相应的测量。使用 A1SL 离子室和 Thermofisher 的(TLD)分别进行点剂量(PD)和体内测量。使用 Rando 体模进行端到端(E2E)测试。
对于 6 MV FF 和 6 MV FFF,TPS 计算值与 PDD 和输出因子的测量值之间的平均差异(MD)分别在 1%和 0.5%以内。在 TG 119 组中,AAA 和 AXB 的 PD MD 均小于 0.9%。在 TG 244 组中,6 MV FF 和 6 MV FFF 光束 PD 的最小、最大和平均偏差分别为 0.3%、1.4%和 0.8%。在 E2E 测试中,使用 Rando 体模,6 MV FF(p=1.0)和 6 MV FFF(0.018)光束的 TLD 剂量与 TPS 剂量之间的 MD 在 0.08%以内。
TPS 及其算法(AAA 和 AXB)的准确性已得到成功验证。VMAT/IMRT 验证部分中推荐的测试对于验证 PDD、输出因子以及复杂临床病例的可行性非常有价值。E2E 测试对于验证从 CT 模拟到治疗交付的整个工作流程非常重要。