首页> 外文期刊>Medical Physics >Simple beam models for Monte Carlo photon beam dose calculations in radiotherapy.
【24h】

Simple beam models for Monte Carlo photon beam dose calculations in radiotherapy.

机译:用于放射治疗中蒙特卡洛光子束剂量计算的简单束模型。

获取原文
获取原文并翻译 | 示例
           

摘要

Monte Carlo (code GEANT) produced 6 and 15 MV phase space (PS) data were used to define several simple photon beam models. For creating the PS data the energy of starting electrons hitting the target was tuned to get correct depth dose data compared to measurements. The modeling process used the full PS information within the geometrical boundaries of the beam including all scattered radiation of the accelerator head. Scattered radiation outside the boundaries was neglected. Photons and electrons were assumed to be radiated from point sources. Four different models were investigated which involved different ways to determine the energies and locations of beam particles in the output plane. Depth dose curves, profiles, and relative output factors were calculated with these models for six field sizes from 5x5 to 40x40cm2 and compared to measurements. Model 1 uses a photon energy spectrum independent of location in the PS plane and a constant photon fluence in this plane. Model 2 takes into account the spatial particle fluence distribution in the PS plane. A constant fluence is used again in model 3, but the photon energy spectrum depends upon the off axis position. Model 4, finally uses the spatial particle fluence distribution and off axis dependent photon energy spectra in the PS plane. Depth dose curves and profiles for field sizes up to 10x10cm2 were not model sensitive. Good agreement between measured and calculated depth dose curves and profiles for all field sizes was reached for model 4. However, increasing deviations were found for increasing field sizes for models 1-3. Large deviations resulted for the profiles of models 2 and 3. This is due to the fact that these models overestimate and underestimate the energy fluence at large off axis distances. Relative output factors consistent with measurements resulted only for model 4.
机译:蒙特卡洛(代码GEANT)产生的6和15 MV相空间(PS)数据用于定义几个简单的光子束模型。为了创建PS数据,与测量值相比,调整了起始电子撞击目标的能量,以获得正确的深度剂量数据。建模过程在光束的几何边界内使用了完整的PS信息,包括加速器头的所有散射辐射。边界外的散射辐射被忽略了。假定光子和电子是从点源辐射出来的。研究了四种不同的模型,这些模型涉及确定输出平面中束粒子的能量和位置的不同方法。使用这些模型针对从5x5到40x40cm2的六个场大小计算了深度剂量曲线,轮廓和相对输出因子,并与测量值进行了比较。模型1使用的光子能谱与PS平面中的位置无关,并且在此平面中具有恒定的光子注量。模型2考虑了PS平面中的空间粒子注量分布。在模型3中再次使用恒定能量密度,但是光子能谱取决于离轴位置。模型4最后使用PS平面中的空间粒子注量分布和轴外光子能谱。对于最大尺寸为10x10cm2的场,深度剂量曲线和轮廓对模型不敏感。对于模型4,在所有场尺寸的测量和计算的深度剂量曲线与剖面之间达成了良好的一致性。但是,对于模型1-3,发现随着场尺寸的增加,偏差增大。模型2和3的轮廓导致较大的偏差。这是由于以下事实:这些模型高估和低估了较大离轴距离下的能量通量。与测量结果一致的相对输出因子仅针对模型4得出。

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