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Imaging of primary and secondary radiation-Modelling and experimental results of a radioactive source and a water phantom

机译:一次和二次辐射的成像-放射源和水体模型的建模和实验结果

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In this paper the contribution of primary and secondary radiation from a water phantom to a pinhole volume, as a result of three neutron sources (Cf, AmBe and 5 MeV mono-energetic) and two gamma sources (Cs and Co), is separately estimated using the PTRAC particle tracking option available in MCNP. Also in this paper imaging of the mixed radiation field produced by a Van de Graaf accelerator (when a water phantom is present) is described. In the model, a spherical tally volume, 2 cm in diameter, was placed equidistantly from a radioactive source and 30 × 30 × 15 cm~3 water phantom. Monte Carlo simulations have been carried out to investigate the level of primary and secondary radiation contributing to the pinhole volume directly from the source and from interactions in the phantom respectively. The spatial distribution of counts clearly discriminated the source and the phantom. The results have shown that the percentage of neutrons reflected from the phantom with energies above 1 MeV increases with mean energy of the source. This method has significant potential to characterise secondary radiation in proton therapy, where it would help to verify the location and the energy delivered during the treatment.
机译:本文分别估计了由于三个中子源(Cf,AmBe和5 MeV单能)和两个伽马源(Cs和Co)导致的水幻影的一次和二次辐射对针孔体积的贡献。使用MCNP中可用的PTRAC粒子跟踪选项。同样在本文中,还描述了Van de Graaf加速器(当存在水体模时)产生的混合辐射场的成像。在该模型中,将一个直径为2 cm的球形理货体积与放射源等距放置,并放置30×30×15 cm〜3水幻影。进行了蒙特卡洛模拟研究,分别研究了直接和间接产生于针孔体积的主要和次要辐射水平,这些辐射分别来自光源和体模中的相互作用。计数的空间分布清楚地区分了源和幻像。结果表明,能量高于1 MeV的幻影反射的中子百分比随源平均能量的增加而增加。这种方法在表征质子治疗中的二次辐射方面具有巨大的潜力,它将有助于验证治疗过程中的位置和传递的能量。

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