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用于减少蒙特卡罗模拟中潜在相空间方差的方位角粒子重新分布。

Azimuthal particle redistribution for the reduction of latent phase-space variance in Monte Carlo simulations.

作者信息

Bush K, Zavgorodni S F, Beckham W A

机构信息

Department of Physics and Astronomy, University of Victoria, PO Box 3055, STN CSC, Victoria, British Columbia V8W 3P6, Canada.

出版信息

Phys Med Biol. 2007 Jul 21;52(14):4345-60. doi: 10.1088/0031-9155/52/14/021. Epub 2007 Jun 21.

Abstract

It is well known that the use of a phase space in Monte Carlo simulation introduces a baseline level of variance that cannot be suppressed through the use of standard particle recycling techniques. This variance (termed latent phase-space variance by Sempau et al) can be a significant limiting factor in achieving accurate, low-uncertainty dose scoring results, especially near the surface of a phantom. A BEAMnrc component module (MCTWIST) has been developed to reduce the presence of latent variance in phase-space-based Monte Carlo simulations by implementing azimuthal particle redistribution (APR). For each recycled use of a phase-space particle a random rotation about the beam's central axis is applied, effectively utilizing cylindrical symmetry of the particle fluence and therefore providing a more accurate representation of the source. The MCTWIST module is unique in that no physical component is actually added to the accelerator geometry. Beam modifications are made by directly transforming particle characteristics outside of BEAMnrc/EGSnrc particle transport. Using MCTWIST, we have demonstrated a reduction in latent phase-space variance by more than a factor of 20, for a 10 x 10 cm(2) field, when compared to standard phase-space particle recycling techniques. The reduction in latent variance has enabled the achievement of dramatically smoother in-water dose profiles. This paper outlines the use of MCTWIST in Monte Carlo simulation and quantifies for the first time the latent variance reduction resulting from exploiting cylindrical phase-space symmetry.

摘要

众所周知,在蒙特卡罗模拟中使用相空间会引入一定程度的基线方差,而使用标准的粒子再循环技术无法抑制这种方差。这种方差(Sempau等人称之为潜在相空间方差)可能是获得准确、低不确定性剂量评分结果的一个重要限制因素,尤其是在模体表面附近。已经开发了一个BEAMnrc组件模块(MCTWIST),通过实施方位角粒子重新分布(APR)来减少基于相空间的蒙特卡罗模拟中潜在方差的存在。对于相空间粒子的每次再循环使用,都会围绕束流的中心轴进行随机旋转,有效地利用粒子注量的柱对称性,从而更准确地表示源。MCTWIST模块的独特之处在于,实际上并没有向加速器几何结构中添加任何物理组件。通过直接在BEAMnrc/EGSnrc粒子输运之外变换粒子特性来进行束流修改。使用MCTWIST,与标准相空间粒子再循环技术相比,对于10×10 cm²的射野,我们已经证明潜在相空间方差降低了20倍以上。潜在方差的降低使得能够获得明显更平滑的水中剂量分布。本文概述了MCTWIST在蒙特卡罗模拟中的应用,并首次量化了利用柱形相空间对称性所导致的潜在方差降低。

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