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Modelling of electron contamination in clinical photon beams for Monte Carlo dose calculation

机译:用于蒙特卡洛剂量计算的临床光子束中的电子污染建模

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The purpose of this work is to model electron contamination in clinical photon beams and to commission the source model using measured data for Monte Carlo treatment planning. In this work, a planar source is used to represent the contaminant electrons at a plane above the upper jaws. The source size depends on the dimensions of the field size at the isocentre. The energy spectra of the contaminant electrons are predetermined using Monte Carlo simulations for photon beams from different clinical accelerators. A 'random creep' method is employed to derive the weight of the electron contamination source by matching Monte Carlo calculated monoenergetic photon and electron percent depth–dose (PDD) curves with measured PDD curves. We have integrated this electron contamination source into a previously developed multiple source model and validated the model for photon beams from Siemens PRIMUS accelerators. The EGS4 based Monte Carlo user code BEAM and MCSIM were used for linac head simulation and dose calculation. The Monte Carlo calculated dose distributions were compared with measured data. Our results showed good agreement (less than 2% or 2 mm) for 6, 10 and 18 MV photon beams.
机译:这项工作的目的是对临床光子束中的电子污染进行建模,并使用用于蒙特卡洛治疗计划的测量数据来调试源模型。在这项工作中,使用平面源表示上颚上方平面上的污染物电子。源大小取决于等中心点处的场大小。使用蒙特卡罗模拟法对来自不同临床促进剂的光子束预先确定了污染物电子的能谱。通过将蒙特卡洛计算的单能光子和电子百分比深度剂量(PDD)曲线与测得的PDD曲线进行匹配,采用“随机蠕变”方法得出电子污染源的重量。我们已将此电子污染源集成到以前开发的多源模型中,并验证了该模型对来自Siemens PRIMUS加速器的光子束的影响。基于EGS4的Monte Carlo用户代码BEAM和MCSIM用于直线加速器头部仿真和剂量计算。将蒙特卡洛计算的剂量分布与测量数据进行比较。我们的结果表明,对于6、10和18 MV光子束,一致性很好(小于2%或2 mm)。

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