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医用直线加速器产生的光子的能量和角分布。

Energy and angular distributions of photons from medical linear accelerators.

作者信息

Mohan R, Chui C, Lidofsky L

出版信息

Med Phys. 1985 Sep-Oct;12(5):592-7. doi: 10.1118/1.595680.

Abstract

For accurate three-dimensional treatment planning, new models of dose calculations are being developed which require the knowledge of the energy spectra and angular distributions of the photons incident on the surface of the patient. Knowledge of the spectra is also useful in other applications, including the design of filters and beam modifying devices and determination of factors to convert ionization chamber measurements to dose. We have used Monte Carlo code (EGS) to compute photon spectra for a number of different linear accelerators. Both the target and the flattening filter have been accurately modeled. We find the mean photon energy to have a value lower than the generally perceived value of one-third the maximum energy. As expected, the spectra become softer as the distance from the central axis increases. Verification of the spectra is performed by computing dose distributions and half-value layers in water using the calculated spectra and comparing the results with measured data. We also examined the angular distributions of photons incident on the surface of the phantom. In currently used models of dose computations, it is assumed that the angular distribution of photons with respect to fan lines emanating from the source is negligible. Although the angular spread of photons with respect to the incident direction has been found to be small, its contribution to the diffuseness of the beam boundaries is significant.

摘要

为了进行精确的三维治疗计划,正在开发新的剂量计算模型,这些模型需要了解入射到患者体表的光子的能谱和角分布。能谱知识在其他应用中也很有用,包括滤波器和射束修正装置的设计以及将电离室测量值转换为剂量的因子的确定。我们使用蒙特卡罗代码(EGS)来计算多种不同直线加速器的光子能谱。靶和均整滤过器都已被精确建模。我们发现平均光子能量的值低于通常认为的最大能量三分之一的值。正如预期的那样,随着离中心轴距离的增加,能谱变得更软。通过使用计算得到的能谱计算水中的剂量分布和半价层,并将结果与测量数据进行比较,来验证能谱。我们还研究了入射到模体表面的光子的角分布。在当前使用的剂量计算模型中,假定相对于从源发出的扇形线束的光子角分布可忽略不计。尽管已发现相对于入射方向的光子角展宽很小,但其对射束边界扩散的贡献却很显著。

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