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PRIMO Monte Carlo software benchmarked against a reference dosimetry dataset for 6 MV photon beams from Varian linacs

机译:PRIMO Monte Carlo软件以来自Varian直线加速器的6 MV光子束的参考剂量数据集为基准

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The software PRIMO for the Monte Carlo simulation of radiotherapy linacs could potentially act as a independent calculation system to verify the calculations of treatment planning systems. We investigated the suitability of the PRIMO default beam parameters to produce accurate dosimetric results for 6 MV photon beams from Varian Clinac 2100 linacs and 6 MV flattening–filter–free photon beams from Varian TrueBeam linacs. Simulation results with the DPM algorithm were benchmarked against a published reference dosimetry dataset based on point measurements of 25 dosimetric parameters on a large series of linacs. Studied parameters (for several field sizes and depths) were: PDD, off–axis ratios, and output factors for open fields and IMRT/SBRT–style fields. For the latter, the output factors were also determined with radiochromic film and with a small–sized ionization chamber. Benchmark data, PRIMO simulation results and our experimental results were compared. PDD, off–axis ratios, and open–field output factors obtained from the simulations with the PRIMO default beam parameters agreed with the benchmark data within 2.4% for Clinac 2100, and within 1.3% for TrueBeam. Higher differences were found for IMRT/SBRT–style output factors: up to 2.8% for Clinac 2100, and up to 3.3% for TrueBeam. Experimental output factors agreed with benchmark data within 1.0% (ionization chamber) and within 1.9% (radiochromic film). PRIMO default initial beam parameters for 6 MV photon beams from Varian Clinac 2100 linacs and 6 MV FFF photon beams from Varian TrueBeam linacs allowed agreement within 3.3% with a dosimetry database based on measurements of a high number of linacs. This finding represents a first step in the validation of PRIMO for the independent verification of radiotherapy plans.
机译:用于放射治疗直线加速器的蒙特卡罗模拟的软件PRIMO有可能充当独立的计算系统,以验证治疗计划系统的计算。我们研究了PRIMO默认光束参数的适用性,以针对来自Varian Clinac 2100直线加速器的6 MV光子束和来自Varian TrueBeam直线加速器的6 MV平坦化-无滤光片的光子束产生精确的剂量学结果。使用DPM算法的仿真结果以已发布的参考剂量数据集为基准,该数据集是基于一系列直线加速器上25个剂量参数的点测量而得出的。研究的参数(针对几种田间尺寸和深度)为:PDD,偏轴比和开放田野以及IMRT / SBRT型田野的输出因子。对于后者,输出因子也由射线变色胶片和小型电离室确定。比较基准数据,PRIMO模拟结果和我们的实验结果。使用PRIMO默认光束参数通过仿真获得的PDD,偏轴比和开阔地输出因子与基准数据相吻合,对于Clinac 2100,其误差在2.4%以内,对于TrueBeam,误差在1.3%以内。在IMRT / SBRT型输出因子上发现了更高的差异:Clinac 2100高达2.8%,TrueBeam高达3.3%。实验输出因子与基准数据相符,分别在1.0%(电离室)和1.9%(放射变色膜)之内。 PRIMO默认的来自Varian Clinac 2100直线加速器的6 MV光子束和来自Varian TrueBeam直线加速器的6 MV FFF光子束的默认初始束参数,与基于大量直线加速器测量值的剂量学数据库的一致性在3.3%之内。这一发现代表了PRIMO验证中放射治疗计划独立验证的第一步。

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