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A Monte Carlo approach to validation of FFF VMAT treatment plans for the TrueBeam linac

机译:用于验证TrueBeam直线加速器的FFF VMAT治疗计划的蒙特卡洛方法

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Purpose: To commission and benchmark a vendor-supplied (Varian Medical Systems) Monte Carlo phase-space data for the 6 MV flattening filter free (FFF) energy mode on a TrueBeam linear accelerator for the purpose of quality assurance of clinical volumetric modulated arc therapy (VMAT) treatment plans. A method for rendering the phase-space data compatible with BEAMnrc/DOSXYZnrc simulation software package is presented. Methods: Monte Carlo (MC) simulations were performed to benchmark the TrueBeam 6 MV FFF phase space data that have been released by the Varian MC Research team. The simulations to benchmark the phase space data were done in three steps. First, the original phase space which was created on a cylindrical surface was converted into a format that was compatible with BEAMnrc. Second, BEAMnrc was used to create field size specific phase spaces located underneath the jaws. Third, doses were calculated with DOSXYZnrc in a water phantom for fields ranging from 1 ?? 1 to 40 ?? 40 cm2. Calculated percent depth doses (PDD), transverse profiles, and output factors were compared with measurements for all the fields simulated. After completing the benchmarking study, three stereotactic body radiotherapy (SBRT) VMAT plans created with the Eclipse treatment planning system (TPS) were calculated with Monte Carlo. Ion chamber and film measurements were also performed on these plans. 3D gamma analysis was used to compare Monte Carlo calculation with TPS calculations and with film measurement. Results: For the benchmarking study, MC calculated and measured values agreed within 1% and 1.5% for PDDs and in-field transverse profiles, respectively, for field sizes 1 ?? 1 cm2. Agreements in the 80%-20% penumbra widths were better than 2 mm for all the fields that were compared. With the exception of the 1 ?? 1 cm2 field, the agreement between measured and calculated output factors was within 1%. It is of note that excellent agreement in output factors for all field sizes including highly asymmetric fields was achieved without accounting for backscatter into the beam monitor chamber. For the SBRT VMAT plans, the agreement between Monte Carlo and ion chamber point dose measurements was within 1%. Excellent agreement between Monte Carlo, treatment planning system and Gafchromic film dose distribution was observed with over 99% of the points in the high dose volume passing the 3%, 3 mm gamma test. Conclusions: The authors have presented a method for making the Varian IAEA compliant 6 MV FFF phase space file of the TrueBeam linac compatible with BEAMnrc/DOSXYZnrc. After benchmarking the modified phase space against measurement, they have demonstrated its potential for use in MC based quality assurance of complex delivery techniques. ? 2013 American Association of Physicists in Medicine.
机译:目的:在TrueBeam线性加速器上调试和测试供应商提供的(瓦里安医疗系统)Monte Carlo相空间数据,用于6 MV展平无过滤器(FFF)能量模式,以保证临床容量调制电弧疗法的质量(VMAT)治疗计划。提出了一种与BEAMnrc / DOSXYZnrc仿真软件包兼容的渲染相空间数据的方法。方法:进行了蒙特卡洛(MC)仿真,以对由Varian MC Research团队发布的TrueBeam 6 MV FFF相空间数据进行基准测试。基准相空间数据的仿真分三步完成。首先,将在圆柱表面上创建的原始相空间转换为与BEAMnrc兼容的格式。其次,BEAMnrc用于创建位于钳口下方的特定于场大小的相空间。第三,在水模中用DOSXYZnrc计算剂量范围为1? 1至40 ?? 40平方厘米将计算出的深度剂量百分比(PDD),横向轮廓和输出因子与所有模拟场的测量值进行比较。完成基准研究后,由Monte Carlo计算了使用Eclipse治疗计划系统(TPS)创建的三个立体定向放射疗法(SBRT)VMAT计划。在这些计划中也进行了离子室和膜的测量。使用3D伽马分析将Monte Carlo计算与TPS计算以及胶片测量进行比较。结果:对于基准研究,对于大于1英寸的场,PDD和场内横向剖面的MC计算值和测量值分别在1%和1.5%之内。 1平方厘米。对于所比较的所有场,在半影宽的80%-20%范围内的一致性优于2 mm。除了1 ??在1 cm2的场中,测量和计算的输出因子之间的一致性在1%以内。值得注意的是,在不考虑向后进入光束监测器腔室的反向散射的情况下,在包括高度非对称磁场在内的所有磁场尺寸下,输出因子均实现了极好的一致性。对于SBRT VMAT计划,蒙特卡洛和离子室点剂量测量之间的一致性在1%以内。观察到蒙特卡洛,治疗计划系统与全色薄膜剂量分布之间的极佳一致性,高剂量量中超过99%的点通过了3%,3 mm伽玛测试。结论:作者提出了一种使TrueBeam直线加速器的瓦里安IAEA兼容6 MV FFF相空间文件与BEAMnrc / DOSXYZnrc兼容的方法。在根据测量基准对修改后的相空间进行基准测试后,他们证明了其可用于基于MC的复杂交付技术质量保证的潜力。 ? 2013年美国医学物理学会。

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