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Commissioning a fast Monte Carlo dose calculation algorithm for lung cancer treatment planning

机译:调试用于肿瘤治疗计划的快速蒙特卡洛剂量计算算法

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摘要

A commercial Monte Carlo simulation package, NXEGS 1.12 (NumeriX LLC, New York, NY), was commissioned for photon‐beam dose calculations. The same sets of measured data from 6‐MV and 18‐MV beams were used to commission NXEGS and Pinnacle 6.2b (Philips Medical Systems, Andover, MA). Accuracy and efficiency were compared against the collapsed cone convolution algorithm implemented in Pinnacle 6.2b, together with BEAM simulation (BEAMnrc 2001: National Research Council of Canada, Ottawa, ON). We investigated a number of options in NXEGS: the accuracy of fast Monte Carlo, the re‐implementation of EGS4, post‐processing technique (dose de‐noising algorithm), and dose calculation time. Dose distributions were calculated with NXEGS, Pinnacle, and BEAM in water, lung‐slab, and air‐cylinder phantoms and in a lung patient plan. We compared the dose distributions calculated by NXEGS, Pinnacle, and BEAM. In a selected region of interest (7725 voxels) in the lung phantom, all but 1 voxel had a γ (3% and 3 mm thresholds) of 1 or less for the dose difference between the NXEGS re‐implementation of EGS4 and BEAM, and 99% of the voxels had a γ of 1 or less for the dose difference between NXEGS fast Monte Carlo and BEAM. Fast Monte Carlo with post‐processing was up to 100 times faster than the NXEGS re‐implementation of EGS4, while maintaining ±2% statistical uncertainty. With air inhomogeneities larger than 1 cm, post‐processing preserves the dose perturbations from the air cylinder. When 3 or more beams were used, fast Monte Carlo with post‐processing was comparable to or faster than Pinnacle 6.2b collapsed cone convolution.PACS numbers: 87.18.Bb, 87.53.Wz
机译:委托商业蒙特卡罗模拟软件包NXEGS 1.12(NumeriX LLC,纽约,纽约)进行光子束剂量计算。使用6-MV和18-MV光束的同一组测量数据来调试NXEGS和Pinnacle 6.2b(飞利浦医疗系统公司,马萨诸塞州安多弗)。将准确性和效率与Pinnacle 6.2b中实现的折叠圆锥卷积算法以及BEAM仿真(BEAMnrc 2001:加拿大国家研究委员会,安大略省渥太华)进行了比较。我们研究了NXEGS中的许多选项:快速蒙特卡洛的精度,EGS4的重新实现,后处理技术(剂量降噪算法)和剂量计算时间。使用NXEGS,Pinnacle和BEAM在水,肺板和气缸体模中以及在肺部患者计划中计算剂量分布。我们比较了NXEGS,Pinnacle和BEAM计算的剂量分布。在选定的感兴趣区域(7725体素)中,除NXEGS重新实现EGS4和BEAM之间的剂量差异外,除1个体素外,所有其他体素的γ(3%和3 mm阈值)均为1或更小。对于NXEGS快速蒙特卡洛和BEAM之间的剂量差异,99%的体素的γ等于或小于1。具有后处理功能的快速蒙特卡洛算法比重新实现EGS4的NXEGS快100倍,同时保持了±2%的统计不确定性。如果空气不均匀度大于1厘米,则后处理可保留来自气缸的剂量扰动。当使用3束或更多束光束时,具有后处理的快速蒙特卡洛性能与Pinnacle 6.2b塌缩圆锥卷积相当或更快.PACS编号:87.18.Bb,87.53.Wz

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