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Evaluation of MCNP5 and EGS4 for the simulation of in vivo strontium XRF measurements

机译:评估MCNP5和EGS4以模拟体内锶XRF测量

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In order to optimize x-ray fluorescence (XRF) experiments, Monte Carlo (MC) simulations provide a valuable tool that allows different system setups and experimental conditions to be explored in a controlled way. Electron gamma shower (EGS4) and Monte Carlo N-Particle5 (MCNP5) are two widely used MC programs that simulate the photon and electron transport in great detail and allow for the simulation of an arbitrary experimental geometry. Tested in 2001 by Al-Ghorabie et al.,(1) earlier versions of these programs failed in reproducing the outcome of a platinum XRF in vivo measurement. The authors found that the discrepancy between measured and simulated results could be attributed to the free electron approximation made by the programs in simulating the Compton scattering. More recent versions of EGS4 and MCNP have updated their treatment for photon transport at low energies and have included Doppler broadening in the Compton profile. In this study we test the capability of these new versions of EGS4 and MCNP in reproducing the outcome of an in vivo strontium XRF measurement. Copyright (C) 2007 John Wiley & Sons, Ltd.
机译:为了优化X射线荧光(XRF)实验,蒙特卡洛(MC)模拟提供了一种有价值的工具,允许以受控方式探索不同的系统设置和实验条件。电子伽玛阵雨(EGS4)和蒙特卡洛N粒子5(MCNP5)是两个广泛使用的MC程序,它们可以非常详细地模拟光子和电子传输,并可以模拟任意实验几何形状。 Al-Ghorabie等人在2001年进行了测试,(1)这些程序的早期版本未能重现铂XRF体内测量的结果。作者发现,测量结果与模拟结果之间的差异可能归因于程序在模拟康普顿散射时所进行的自由电子近似。 EGS4和MCNP的最新版本已更新了其在低能量下进行光子传输的方法,并在康普顿剖面中包括了多普勒展宽。在这项研究中,我们测试了这些新版本的EGS4和MCNP在再现体内锶XRF测量结果中的能力。版权所有(C)2007 John Wiley&Sons,Ltd.

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