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Dose enhancement in brachytherapy in the presence of gold nanoparticles:a Monte Carlo study on the size of gold nanoparticles and method of modelling

机译:金纳米粒子存在下近距离放射治疗中的剂量增强:金纳米粒子尺寸和建模方法的蒙特卡洛研究

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摘要

The aim of this study was to evaluate the effect of the size of gold nanoparticles (GNPs) on dose enhancement in brachytherapy with photon emitting sources. Four photon emitting sources, ~(125)I, ~(169)Yb, ~(103)Pd, and ~(192)Ir were simulated and dose rate constant and radial dose functions were compared with published corresponding data for these sources. Dose enhancement factor in the presence of gold nanoparticles of 30 mg/ml concentration was calculated separately for nanoparticles with a diameter of 50,100 and 200 nm. Gold nanoparticles were simulated precisely as nanospheres utilizing a lattice option in the MCNPX Monte Carlo code and the results were compared with those obtained with a simple model in which gold atoms are distributed uniformly in tumor volume as a simple mixture. Among the four mentioned sources, the dose enhancement related to ~(125)I source is higher. Our results have shown that with gold nanoparticles of higher diameter, the level of dose enhancement is higher in the tested tumor. It has been also observed that the simple model overestimates the dose enhancement factor when compared with the precise model in which nanoparticles are defined according to the Monte Carlo code. In the energy range produced by the brachytherapy sources, the dose enhancement is higher when using brachytherapy sources with lower energy. Among the size range of gold nanoparticles used in medicine, it is predicted that nanoparticles with higher diameter can be more useful when are utilized in brachytherapy. It is also recommended that when calculating dose enhancements, a precise model be used for modelling of nanoparticles in the Monte Carlo simulations.
机译:这项研究的目的是评估金纳米粒子(GNPs)大小对光子发射源近距离放射治疗剂量增加的影响。模拟了四个光子发射源〜(125)I,〜(169)Yb,〜(103)Pd和〜(192)Ir,并将剂量率常数和径向剂量函数与已发布的相应数据进行了比较。对于直径为50,100和200 nm的纳米粒子,分别计算了存在30 mg / ml浓度的金纳米粒子时的剂量增强因子。使用MCNPX蒙特卡洛代码中的晶格选项,将金纳米颗粒精确地模拟为纳米球,并将结果与​​通过简单模型获得的结果进行比较,在简单模型中,金原子作为简单混合物均匀地分布在肿瘤体积中。在提到的四个来源中,与〜(125)I来源相关的剂量增强更高。我们的结果表明,使用直径更大的金纳米颗粒,被测肿瘤的剂量增强水平更高。还已经观察到,与根据蒙特卡洛法定义纳米颗粒的精确模型相比,该简单模型高估了剂量增加因子。在近距离放射源产生的能量范围内,当使用能量较低的近距离放射源时,剂量增加较高。在医学中使用的金纳米颗粒的大小范围内,可以预测,当用于近距离放射治疗时,具有较大直径的纳米颗粒会更有用。还建议在计算剂量增加时,在蒙特卡洛模拟中使用精确的模型对纳米颗粒进行建模。

著录项

  • 来源
    《Nukleonika》 |2012年第3期|p.401-406|共6页
  • 作者单位

    Iranian Applied Research Center for Public Health and Sustainable Development (IRCPHD),North Khorasan University of Medical Sciences,Bojnurd, Iran;

    Medical Physics Department,Faculty of Medicine,Mashhad University of Medical Sciences,Mashhad, Iran;

    Iranian Applied Research Center for Public Health and Sustainable Development (IRCPHD),North Khorasan University of Medical Sciences,Bojnurd, Iran;

    Comprehensive Cancer Center of Nevada,Las Vegas, Nevada, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    brachytherapy; dose enhancement; gold nanoparticles; monte carlo (MC);

    机译:近距离放射治疗;剂量增加;金纳米粒子蒙特卡洛(MC);

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