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MCNP 模拟在治疗计划中的应用:一项比较研究。

Applications of MCNP simulation in treatment planning: a comparative study.

机构信息

Department of Energy Engineering and Physics, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Iran.

出版信息

Radiat Environ Biophys. 2020 May;59(2):307-319. doi: 10.1007/s00411-020-00841-2. Epub 2020 Apr 2.

Abstract

Monte Carlo codes have been used for approximately 80 years to solve various problems in medical physics. In this paper, the importance of the MCNPX code in treatment planning is highlighted. As illustrative examples of the role of MCNPX in this field, some dosimetric parameters, isodose distribution curves, and figures of merit (FOMs) were considered for photon beams of various energies. To the best of the authors' knowledge, such a systematic study has not been done before. Tissue-air ratio values were obtained as a function of depth in tissue as well as field size. The results of the simulations were in agreement within 3.5% with experimental results reported in the literature. Backscatter factor values were calculated as a function of beam energy, and found to be in agreement with published experimental values within 5.9%. The isodose curves for different conditions and beam arrangements were also simulated. Besides, FOMs were calculated for different radiation energies. All the results were in agreement with related data in the literature. It is concluded that the MCNPX code and the models developed in the present study can be used in different conditions where these parameters are involved, improving individualized treatment planning for individual patients.

摘要

蒙特卡罗代码已经被使用了大约 80 年,用于解决医学物理学中的各种问题。在本文中,突出了 MCNPX 代码在治疗计划中的重要性。作为 MCNPX 在该领域作用的说明性例子,考虑了各种能量的光子束的一些剂量学参数、等剂量分布曲线和性能指标(FOMs)。据作者所知,以前没有进行过这样的系统研究。获得了组织-空气比作为组织深度和射野大小的函数的值。模拟结果与文献中报道的实验结果的偏差在 3.5%以内。还计算了作为束能函数的反向散射因子值,并发现与发表的实验值在 5.9%以内一致。不同条件和射束布置的等剂量曲线也进行了模拟。此外,还计算了不同辐射能量的 FOMs。所有结果都与文献中的相关数据一致。结论是,MCNPX 代码和本研究中开发的模型可以用于涉及这些参数的不同条件,从而改进针对个体患者的个体化治疗计划。

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