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首页> 外文期刊>Medical Physics >Three-dimensional electron dose calculation using an improved hybrid pencil beam model.
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Three-dimensional electron dose calculation using an improved hybrid pencil beam model.

机译:使用改进的混合笔形束模型进行三维电子剂量计算。

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摘要

An improved hybrid-pencil beam model (HPBM) for electron-beam three-dimensional dose calculation has been studied. The model is based on the fact that away from the edges of a large field, the electron distribution function exactly equals that for an infinitely wide electron beam. In the present model, we use the bipartition model to calculate the longitudinal part of the pencil-beam distribution function, and Fermi-Eyges multiple-scattering theory to calculate its transverse part. In order to describe the electron beam characteristics accurately, we introduce a new parameter, which is extracted from measured profile data near the surface of a water phantom, to correct the transverse distribution determined by the Fermi-Eyges theory. Furthermore, we introduce an effective energy spectrum to describe the effect on the collimated electron beam of the accelerator head. The dose distributions calculated with the improved HPBM were compared with the experimental data, and the agreement was within 1% in mostof cases. This preliminary study has demonstrated the potential for use of the model in the clinical therapy.
机译:研究了一种用于电子束三维剂量计算的改进混合铅笔束模型(HPBM)。该模型基于以下事实:远离大场的边缘,电子分布函数恰好等于无限宽电子束的电子分布函数。在本模型中,我们使用二分模型来计算铅笔束分布函数的纵向部分,并使用费米-艾格斯多重散射理论来计算其横向部分。为了准确地描述电子束特性,我们引入了一个新参数,该参数是从水体模型表面附近的实测轮廓数据中提取的,以校正费米-艾格斯理论确定的横向分布。此外,我们引入了有效能谱来描述对加速器头的准直电子束的影响。用改进的HPBM计算出的剂量分布与实验数据进行了比较,在大多数情况下,一致性在1%以内。这项初步研究证明了该模型在临床治疗中的潜力。

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