Ghorbani Mahdi, Mehrpouyan Mohammad, Davenport David, Ahmadi Moghaddas Toktam
Medical Physics Research Center, Mashhad University of Medical Sciences, Mashhad, Iran.
Bioinformatics Research Center, Sabzevar University of Medical Sciences, Sabzevar, Iran.
Radiol Oncol. 2016 Mar 31;50(2):238-46. doi: 10.1515/raon-2016-0019. eCollection 2016 Jun 1.
The aim of this study is to quantify the influence of the photon energy spectrum of brachytherapy sources on task group No. 43 (TG-43) dosimetric parameters.
Different photon spectra are used for a specific radionuclide in Monte Carlo simulations of brachytherapy sources.
MCNPX code was used to simulate 125I, 103Pd, 169Yb, and 192Ir brachytherapy sources. Air kerma strength per activity, dose rate constant, radial dose function, and two dimensional (2D) anisotropy functions were calculated and isodose curves were plotted for three different photon energy spectra. The references for photon energy spectra were: published papers, Lawrence Berkeley National Laboratory (LBNL), and National Nuclear Data Center (NNDC). The data calculated by these photon energy spectra were compared.
Dose rate constant values showed a maximum difference of 24.07% for 103Pd source with different photon energy spectra. Radial dose function values based on different spectra were relatively the same. 2D anisotropy function values showed minor differences in most of distances and angles. There was not any detectable difference between the isodose contours.
Dosimetric parameters obtained with different photon spectra were relatively the same, however it is suggested that more accurate and updated photon energy spectra be used in Monte Carlo simulations. This would allow for calculation of reliable dosimetric data for source modeling and calculation in brachytherapy treatment planning systems.
本研究旨在量化近距离放射治疗源的光子能谱对任务组43(TG - 43)剂量学参数的影响。
在近距离放射治疗源的蒙特卡罗模拟中,针对特定放射性核素使用了不同的光子能谱。
使用MCNPX代码模拟125I、103Pd、169Yb和192Ir近距离放射治疗源。计算了每活度的空气比释动能强度、剂量率常数、径向剂量函数和二维(2D)各向异性函数,并针对三种不同的光子能谱绘制了等剂量曲线。光子能谱的参考依据为:已发表论文、劳伦斯伯克利国家实验室(LBNL)和国家核数据中心(NNDC)。比较了由这些光子能谱计算得到的数据。
对于103Pd源,不同光子能谱的剂量率常数值显示出最大24.07%的差异。基于不同能谱的径向剂量函数值相对相同。二维各向异性函数值在大多数距离和角度上显示出微小差异。等剂量轮廓之间未发现任何可检测到的差异。
使用不同光子能谱获得的剂量学参数相对相同,然而建议在蒙特卡罗模拟中使用更准确和更新的光子能谱。这将有助于在近距离放射治疗治疗计划系统中为源建模和计算得出可靠的剂量学数据。