首页> 外文期刊>Journal of Radiation Research >Monte Carlo modeling of a 60Co MRI-guided radiotherapy system on Geant4 and experimental verification of dose calculation under a magnetic field of 0.35 T
【24h】

Monte Carlo modeling of a 60Co MRI-guided radiotherapy system on Geant4 and experimental verification of dose calculation under a magnetic field of 0.35 T

机译:在Geant4上60Co MRI引导的放射治疗系统的蒙特卡洛建模和在0.35 T磁场下剂量计算的实验验证

获取原文
获取原文并翻译 | 示例
           

摘要

Our purpose was to establish the commissioning procedure of Monte Carlo modeling on a magnetic resonance imaging–guided radiotherapy system (MRIdian, Viewray Inc.) under a magnetic field of 0.345 T through experimental measurements. To do this, we sought (i) to assess the depth–dose and lateral profiles generated by the Geant4 using either EBT3 film or the BJR-25 data; (ii) to assess the calculation accuracy under a magnetic field of 0.345 T. The radius of the electron trajectory caused by the electron return effect (ERE) in a vacuum was obtained both by the Geant4 and the theoretical methods. The surface dose on the phantom was calculated and compared with that obtained from the film measurements. The dose distribution in a phantom having two air gaps was calculated and measured with EBT 3 film. (i) The difference of depth–dose profile generated by the Geant4 from the BJR-25 data was 0.0 ± 0.8% and 0.3 ± 1.5% for field sizes of 4.5 and 27.3 cm2, respectively. Lateral dose profiles generated by Geant4 agreed well with those generated from the EBT3 film data. (ii) The radius of the electron trajectory generated by Geant4 agreed well with the theoretical values. A maximum of ~50% reduction of the surface dose under a magnetic field of 0.345 T was observed due to elimination of the electron contamination caused by the magnetic field, as determined by both the film measurements and the Geant4. Changes in the dose distributions in the air gaps caused by the ERE were observed on the Geant4 and in the film measurements. Gamma analysis (3%/3 mm) showed a pass rate of 95.1%. Commissioning procedures for the MRI-guided radiotherapy system on the Geant4 were established, and we concluded that the Geant4 had provided high calculation accuracy under a magnetic field of 0.345 T.
机译:我们的目的是通过实验测量,在0.345 T的磁场下,在磁共振成像引导放射治疗系统(MRIdian,Viewray Inc.)上建立Monte Carlo建模的调试程序。为此,我们寻求(i)使用EBT3胶片或BJR-25数据评估Geant4产生的深度剂量和侧剖面; (ii)评估在0.345 T磁场下的计算精度。通过Geant4和理论方法获得了真空中由电子返回效应(ERE)引起的电子轨迹的半径。计算体模上的表面剂量,并将其与从薄膜测量中获得的表面剂量进行比较。用EBT 3膜计算并测量具有两个气隙的体模中的剂量分布。 (i)对于4.5和27.3 cm的场,Geant4从BJR-25数据产生的深度剂量分布差异为0.0±0.8%和0.3±1.5% 2 , 分别。 Geant4生成的横向剂量曲线与EBT3胶片数据生成的横向剂量曲线非常吻合。 (ii)Geant4产生的电子轨迹的半径与理论值非常吻合。由于消除了由磁场引起的电子污染,在0.345 T的磁场下,观察到的最大表面剂量减少了约50%,这是由薄膜测量和Geant4共同确定的。在Geant4和薄膜测量中观察到由ERE引起的气隙中剂量分布的变化。伽马分析(3%/ 3 mm)显示合格率为95.1%。建立了在Geant4上进行MRI引导的放射治疗系统的调试程序,我们得出的结论是Geant4在0.345 T的磁场下具有很高的计算精度。

著录项

相似文献

  • 外文文献
  • 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