Townson Reid W, Zavgorodni Sergei
Department of Physics and Astronomy, University of Victoria, Victoria, British Columbia, Canada. Department of Medical Physics, BC Cancer Agency, Vancouver Island Centre, Victoria, British Columbia, Canada.
Phys Med Biol. 2014 Dec 21;59(24):7919-35. doi: 10.1088/0031-9155/59/24/7919.
In GPU-based Monte Carlo simulations for radiotherapy dose calculation, source modelling from a phase-space source can be an efficiency bottleneck. Previously, this has been addressed using phase-space-let (PSL) sources, which provided significant efficiency enhancement. We propose that additional speed-up can be achieved through the use of a hybrid primary photon point source model combined with a secondary PSL source. A novel phase-space derived and histogram-based implementation of this model has been integrated into gDPM v3.0. Additionally, a simple method for approximately deriving target photon source characteristics from a phase-space that does not contain inheritable particle history variables (LATCH) has been demonstrated to succeed in selecting over 99% of the true target photons with only ~0.3% contamination (for a Varian 21EX 18 MV machine). The hybrid source model was tested using an array of open fields for various Varian 21EX and TrueBeam energies, and all cases achieved greater than 97% chi-test agreement (the mean was 99%) above the 2% isodose with 1% / 1 mm criteria. The root mean square deviations (RMSDs) were less than 1%, with a mean of 0.5%, and the source generation time was 4-5 times faster. A seven-field intensity modulated radiation therapy patient treatment achieved 95% chi-test agreement above the 10% isodose with 1% / 1 mm criteria, 99.8% for 2% / 2 mm, a RMSD of 0.8%, and source generation speed-up factor of 2.5.
在基于图形处理器(GPU)的用于放射治疗剂量计算的蒙特卡罗模拟中,从相空间源进行源建模可能是效率瓶颈。此前,已通过使用相空间元(PSL)源来解决这一问题,其显著提高了效率。我们提出,通过使用混合初级光子点源模型与次级PSL源相结合可实现进一步加速。该模型的一种基于相空间推导和直方图的新颖实现方式已集成到gDPM v3.0中。此外,已证明一种从不含可继承粒子历史变量的相空间(LATCH)近似推导靶光子源特征的简单方法,能够成功选择超过99%的真实靶光子,且污染仅约0.3%(对于瓦里安21EX 18兆伏机器)。使用一系列针对不同瓦里安21EX和TrueBeam能量的开放射野对混合源模型进行了测试,所有情况在2%等剂量线以上均达到了大于97%的卡方检验一致性(平均值为99%),标准为1% / 1毫米。均方根偏差(RMSD)小于1%,平均值为0.5%,且源生成时间快4至5倍。一例七野调强放射治疗患者的治疗在10%等剂量线以上达到了95% 的卡方检验一致性,标准为1% / 1毫米,2% / 2毫米时为99.8%,RMSD为0.8%,源生成加速因子为2.5。