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Neutron track length estimator for GATE Monte Carlo dose calculation in radiotherapy

机译:放射疗法门蒙特卡罗剂量计算的中子轨道长度估计

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The out-of-field dose in radiation therapy is a growing concern in regards to the late side-effects and secondary cancer induction. In high-energy x-ray therapy, the secondary neutrons generated through photonuclear reactions in the accelerator are part of this secondary dose. The neutron dose is currently not estimated by the treatment planning system while it appears to be preponderant for distances greater than 50 cm from the isocenter. Monte Carlo simulation has become the gold standard for accurately calculating the neutron dose under specific treatment conditions but the method is also known for having a slow statistical convergence, which makes it difficult to be used on a clinical basis. The neutron track length estimator, a neutron variance reduction technique inspired by the track length estimator method has thus been developped for the first time in the Monte Carlo code GATE to allow a fast computation of the neutron dose in radiotherapy. The details of its implementation, as well as the comparison of its performances against the analog MC method, are presented here. A gain of time from 15 to 400 can be obtained by our method, with a mean difference in the dose calculation of about 1% in comparison with the analog MC method.
机译:放射治疗的外场剂量是对晚期副作用和继发性癌症诱导的越来越令人担忧。在高能X射线疗法中,通过加速器中的光子反应产生的二级中子是该二次剂量的一部分。目前未通过治疗计划系统估算中子剂量,而距离Isocenter大于50厘米的距离似乎是优势。 Monte Carlo模拟已成为在特定处理条件下准确计算中子剂量的金标准,但该方法也已知具有缓慢的统计收敛,这使得难以在临床基础上使用。中子轨道长度估计器,由轨道长度估计器方法启发的中子方差减少技术已经在蒙特卡罗码门中首次开发出来,以允许在放射疗法中快速计算中子剂量。此处提供了其实施的细节,以及对模拟MC方法的性能的比较。通过我们的方法可以获得15至400的时间的增益,与模拟MC法相比,在剂量计算中的平均差异为约1%。

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