首页> 外文期刊>Medical Physics >Monte Carlo modeling and simulations of the High Definition (HD120) micro MLC and validation against measurements for a 6 MV beam
【24h】

Monte Carlo modeling and simulations of the High Definition (HD120) micro MLC and validation against measurements for a 6 MV beam

机译:高清晰度(HD120)微型MLC的蒙特卡洛建模和仿真,以及针对6 MV光束的测量结果的验证

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose: The most recent Varian? micro multileaf collimator (MLC), the High Definition (HD120) MLC, was modeled using the BEAMNRC Monte Carlo code. This model was incorporated into a Varian medical linear accelerator, for a 6 MV beam, in static and dynamic mode. The model was validated by comparing simulated profiles with measurements. Methods: The Varian? Trilogy? (2300C/D) accelerator model was accurately implemented using the state-of-the-art Monte Carlo simulation program BEAMNRC and validated against off-axis and depth dose profiles measured using ionization chambers, by adjusting the energy and the full width at half maximum (FWHM) of the initial electron beam. The HD120 MLC was modeled by developing a new BEAMNRC component module (CM), designated HDMLC, adapting the available DYNVMLC CM and incorporating the specific characteristics of this new micro MLC. The leaf dimensions were provided by the manufacturer. The geometry was visualized by tracing particles through the CM and recording their position when a leaf boundary is crossed. The leaf material density and abutting air gap between leaves were adjusted in order to obtain a good agreement between the simulated leakage profiles and EBT2 film measurements performed in a solid water phantom. To validate the HDMLC implementation, additional MLC static patterns were also simulated and compared to additional measurements. Furthermore, the ability to simulate dynamic MLC fields was implemented in the HDMLC CM. The simulation results of these fields were compared with EBT2 film measurements performed in a solid water phantom. Results: Overall, the discrepancies, with and without MLC, between the opened field simulations and the measurements using ionization chambers in a water phantom, for the off-axis profiles are below 2% and in depth-dose profiles are below 2% after the maximum dose depth and below 4% in the build-up region. On the conditions of these simulations, this tungsten-based MLC has a density of 18.7 g cm - 3 and an overall leakage of about 1.1 ± 0.03%. The discrepancies between the film measured and simulated closed and blocked fields are below 2% and 8%, respectively. Other measurements were performed for alternated leaf patterns and the agreement is satisfactory (to within 4%). The dynamic mode for this MLC was implemented and the discrepancies between film measurements and simulations are within 4%. Conclusions: The Varian? Trilogy? (2300 C/D) linear accelerator including the HD120 MLC was successfully modeled and simulated using the Monte Carlo BEAMNRC code by developing an independent CM, the HDMLC CM, either in static and dynamic modes.
机译:目的:最近的瓦里安(Varian)?微型多叶准直仪(MLC),高清晰度(HD120)MLC是使用BEAMNRC蒙特卡罗代码建模的。将该模型以静态和动态模式并入了用于6 MV光束的Varian医用线性加速器中。通过将模拟轮廓与测量值进行比较来验证模型。方法:瓦里安?三部曲? (2300C / D)加速器模型是使用最新的蒙特卡罗模拟程序BEAMNRC精确实现的,并通过调整能量和半峰全宽来验证使用电离室测量的离轴和深度剂量分布初始电子束的(FWHM)。通过开发新的BEAMNRC组件模块(CM)(称为HDMLC),适应可用的DYNVMLC CM并结合此新型微型MLC的特定特性,对HD120 MLC进行建模。叶片尺寸由制造商提供。通过跟踪粒子穿过CM并记录其在叶边界交叉时的位置,可以看到几何形状。调节叶片之间的叶片材料密度和邻接气隙,以使模拟泄漏曲线与在固态水体模中进行的EBT2薄膜测量结果之间达到良好的一致性。为了验证HDMLC的实现,还模拟了其他MLC静态模式,并将其与其他测量结果进行比较。此外,在HDMLC CM中实现了模拟动态MLC字段的功能。将这些场的模拟结果与在固体水体模中执行的EBT2膜测量进行了比较。结果:总体而言,在进行水场模拟后,在有场和无场的情况下,在开场模拟与使用电离室的测量之间的差异,离轴剖面小于2%,深度剂量剖面小于2%。最大剂量深度,并且在积聚区域低于4%。在这些模拟的条件下,这种基于钨的MLC的密度为18.7 g cm-3,总泄漏约为1.1±0.03%。测得的胶片与模拟的闭合场和封闭场之间的差异分别低于2%和8%。对交替的叶型进行了其他测量,一致性令人满意(在4%以内)。实施了该MLC的动态模式,胶片测量和模拟之间的差异在4%以内。结论:瓦里安?三部曲?通过开发静态和动态模式下的独立CM HDMLC CM,成功地使用Monte Carlo BEAMNRC代码对包括HD120 MLC的(2300 C / D)线性加速器进行了建模和仿真。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号