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利用多线程 Geant4 模拟开发 Leksell Gamma Knife PerfexionTM 的 IAEA 相空间数据集。

Development of an IAEA phase-space dataset for the Leksell Gamma Knife Perfexion™ using multi-threaded Geant4 simulations.

机构信息

Department of Nuclear Engineering, Hanyang University, Seoul, Republic of Korea.

Department of Biomedical Engineering, College of Medicine, Catholic University of Korea, Seoul, Republic of Korea.

出版信息

Phys Med. 2019 Aug;64:222-229. doi: 10.1016/j.ejmp.2019.07.002. Epub 2019 Jul 26.

Abstract

This study was conducted to develop a phase-space dataset in the International Atomic Energy Agency (IAEA) format for Monte Carlo (MC) simulations of the Leksell Gamma Knife (LGK, Elekta Instrument AB, Stockholm, Sweden) Perfexion™ (PFX). An open-source MC code, namely, the Geant4 toolkit with a recently updated multi-threaded mode, was used to maximize the efficiency of the developed IAEA phase-space dataset. The absorbed dose profiles for single shots of the LGK PFX were calculated using the developed dataset and compared with those from radiochromic film measurements and Leksell GammaPlan version 11.0.3 (LGP, Elekta Instruments) for verification. The mean relative absorbed dose differences in all single shots were less than 3.6% compared with the films and less than 4.0% compared with LGP. The collimator output factors were also calculated for all single shots and compared with the LGP results. The simulated collimator output factor was 0.816 ± 0.003 for a 4-mm shot and 0.903 ± 0.001 for an 8-mm shot in a spherical water phantom. The efficiency of the developed dataset was evaluated by comparing the times required for various simulations. Simulations with the phase-space dataset ran 25, 8.2 and 3.2 times faster than simulations without the phase-space dataset for 4-, 8-, and 16-mm shots, respectively. Using the dataset developed in this study, MC simulations of the LGK PFX can be performed more efficiently for various purposes, such as treatment plan verification and beam quality factor calculations.

摘要

这项研究旨在开发国际原子能机构(IAEA)格式的相空间数据集,用于蒙特卡罗(MC)模拟 Leksell Gamma Knife(LGK,瑞典斯德哥尔摩 Elekta Instrument AB)的 Perfexion™(PFX)。使用开源 MC 代码,即带有最近更新的多线程模式的 Geant4 工具包,以最大程度地提高开发的 IAEA 相空间数据集的效率。使用开发的数据集计算了 LGK PFX 的单次照射的吸收剂量分布,并与放射色迹胶片测量和 Leksell GammaPlan 版本 11.0.3(LGP,Elekta Instruments)的结果进行了比较以进行验证。与胶片相比,所有单次照射的平均相对吸收剂量差异均小于 3.6%,与 LGP 相比则小于 4.0%。还计算了所有单次照射的准直器输出因子,并与 LGP 结果进行了比较。在球形水模体中,对于 4-mm 射束和 8-mm 射束,模拟的准直器输出因子分别为 0.816±0.003 和 0.903±0.001。通过比较各种模拟所需的时间来评估开发的数据集的效率。对于 4-mm、8-mm 和 16-mm 射束,分别具有和不具有相空间数据集的情况下的模拟,使用相空间数据集的模拟速度分别提高了 25 倍、8.2 倍和 3.2 倍。使用本研究中开发的数据集,可以更有效地进行 LGK PFX 的 MC 模拟,以用于各种目的,例如治疗计划验证和束质因子计算。

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