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Development of a fast Monte Carlo dose calculation system for online adaptive radiation therapy quality assurance

机译:在线自适应放射治疗质量保证的快速蒙特卡罗剂量计算系统的开发

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Online adaptive radiation therapy (ART) based on real-time magnetic resonance imaging represents a paradigm-changing treatment scheme. However, conventional quality assurance (QA) methods based on phantom measurements are not feasible with the patient on the treatment couch. The purpose of this work is to develop a fast Monte Carlo system for validating online re-optimized tri-Co-60 IMRT adaptive plans with both high accuracy and speed. The Monte Carlo system is based on dose planning method (DPM) code with further simplification of electron transport and consideration of external magnetic fields. A vendor-provided head model was incorporated into the code. Both GPU acceleration and variance reduction were implemented. Additionally, to facilitate real-time decision support, a C++ GUI was developed for visualizing 3D dose distributions and performing various analyses in an online adaptive setting. A thoroughly validated Monte Carlo code (gPENELOPE) was used to benchmark the new system, named GPU-accelerated DPM with variance reduction (gDPMvr). The comparison using 15 clinical IMRT plans demonstrated that gDPMvr typically runs 43 times faster with only 0.5% loss in accuracy. Moreover, gDPMvr reached 1% local dose uncertainty within 2.3 min on average, and thus is well-suited for ART QA.
机译:基于实时磁共振成像的在线自适应放射治疗(技术)代表了一种矛盾的改变处理方案。然而,基于幻像测量的常规质量保证(QA)方法与治疗沙发上的患者不可行。这项工作的目的是开发一个快速的蒙特卡罗系统,用于验证在线重新优化的Tri-Co-60 IMRT自适应计划,具有高精度和速度。蒙特卡罗系统基于剂量计划方法(DPM)代码,进一步简化电子传输和对外磁场的考虑。提供了一个供应商的头部模型被纳入代码。实施了GPU加速度和方差减少。另外,为了促进实时决策支持,开发了一种用于可视化3D剂量分布并在在线自适应设置中进行各种分析的C ++ GUI。彻底验证的蒙特卡罗代码(GPEnelope)用于基准测试新系统,名为GPU-CONCELERATED DPM,具有方差减少(GDPMVR)。使用15个临床IMRT计划的比较表明,GDPMVR通常速度快43倍,精度损耗仅0.5%。此外,GDPMVR平均达到2.3分钟内的局部剂量不确定性,因此非常适合艺术QA。

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