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蒙特卡罗代码PENELOPE中用于放射治疗光子束和射野图像计算的新型虚拟源模型的开发与实现。

Development and implementation in the Monte Carlo code PENELOPE of a new virtual source model for radiotherapy photon beams and portal image calculation.

作者信息

Chabert I, Barat E, Dautremer T, Montagu T, Agelou M, Croc de Suray A, Garcia-Hernandez J C, Gempp S, Benkreira M, de Carlan L, Lazaro D

机构信息

CEA, LIST, F-91191 Gif-sur-Yvette, France.

出版信息

Phys Med Biol. 2016 Jul 21;61(14):5215-52. doi: 10.1088/0031-9155/61/14/5215. Epub 2016 Jun 29.

Abstract

This work aims at developing a generic virtual source model (VSM) preserving all existing correlations between variables stored in a Monte Carlo pre-computed phase space (PS) file, for dose calculation and high-resolution portal image prediction. The reference PS file was calculated using the PENELOPE code, after the flattening filter (FF) of an Elekta Synergy 6 MV photon beam. Each particle was represented in a mobile coordinate system by its radial position (r s ) in the PS plane, its energy (E), and its polar and azimuthal angles (φ d and θ d ), describing the particle deviation compared to its initial direction after bremsstrahlung, and the deviation orientation. Three sub-sources were created by sorting out particles according to their last interaction location (target, primary collimator or FF). For each sub-source, 4D correlated-histograms were built by storing E, r s , φ d and θ d values. Five different adaptive binning schemes were studied to construct 4D histograms of the VSMs, to ensure histogram efficient handling as well as an accurate reproduction of E, r s , φ d and θ d distribution details. The five resulting VSMs were then implemented in PENELOPE. Their accuracy was first assessed in the PS plane, by comparing E, r s , φ d and θ d distributions with those obtained from the reference PS file. Second, dose distributions computed in water, using the VSMs and the reference PS file located below the FF, and also after collimation in both water and heterogeneous phantom, were compared using a 1.5%-0 mm and a 2%-0 mm global gamma index, respectively. Finally, portal images were calculated without and with phantoms in the beam. The model was then evaluated using a 1%-0 mm global gamma index. Performance of a mono-source VSM was also investigated and led, as with the multi-source model, to excellent results when combined with an adaptive binning scheme.

摘要

这项工作旨在开发一种通用的虚拟源模型(VSM),该模型保留存储在蒙特卡罗预计算相空间(PS)文件中的变量之间的所有现有相关性,用于剂量计算和高分辨率射野图像预测。参考PS文件是在Elekta Synergy 6 MV光子束的均整滤过器(FF)之后,使用PENELOPE代码计算得出的。每个粒子在移动坐标系中由其在PS平面中的径向位置(r s )、能量(E)以及极角和方位角(φ d 和θ d )表示,这些参数描述了粒子在轫致辐射后相对于其初始方向的偏差以及偏差方向。通过根据粒子的最后相互作用位置(靶、初级准直器或FF)对粒子进行分类,创建了三个子源。对于每个子源,通过存储E、r s 、φ d 和θ d 值构建了四维相关直方图。研究了五种不同的自适应分箱方案来构建VSM的四维直方图,以确保直方图的高效处理以及E、r s 、φ d 和θ d 分布细节的准确再现。然后将得到的五个VSM在PENELOPE中实现。首先在PS平面中评估它们的准确性,方法是将E、r s 、φ d 和θ d 分布与从参考PS文件获得的分布进行比较。其次,分别使用1.5%-0 mm和2%-0 mm的全局伽马指数,比较在水中使用VSM和位于FF下方的参考PS文件计算得到的剂量分布,以及在水和非均匀体模中准直后计算得到的剂量分布。最后,计算射束中有无体模时的射野图像。然后使用1%-0 mm的全局伽马指数对模型进行评估。还研究了单源VSM的性能,并且与多源模型一样,当与自适应分箱方案结合使用时,也取得了优异的结果。

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