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测量的X射线束数据的质量控制。

Quality control of measured x-ray beam data.

作者信息

Bjärngard B E, Vadash P, Ceberg C P

机构信息

University of Pennsylvania, Philadelphia 19104, USA.

出版信息

Med Phys. 1997 Sep;24(9):1441-4. doi: 10.1118/1.598032.

Abstract

The purpose of this study was to examine whether the quality of measured x-ray beam data can be judged from how well the data agree with a semiempirical formula. Tissue-phantom ratios (TPR) and output factors for several accelerators in the energy range 4-25 MV were fitted to the formula, separating the dose contributions from primary and phantom-scattered photons. The former was described by exponential attenuation in water, with beam hardening, and the latter by the scatter-to-primary dose ratio using two parameters related to the probability and the directional distribution of the scattered photons. Electron disequilibrium was not considered. Two approaches were evaluated. In one, the attenuation and hardening coefficients were determined from measurements in a narrow-beam geometry; in the other, they were extracted by the fitting procedure. Measured and fitted data agreed within +/- 2% in both cases. The differences were randomly distributed and had a standard deviation of typically 0.7%. Singular points with errors were easily identified. Systematic errors were revealed by increased standard deviation. However, when the attenuation was derived by the fitting algorithm, the attenuation coefficient deviated significantly from the experimental value. It is concluded that the semiempirical formula can serve to evaluate and verify beam data measured in water and that the physically most accurate description requires that the attenuation and hardening coefficients be determined in a narrow-beam geometry. The attenuation coefficient is an excellent measure of both the primary and the scatter dose component, i.e., of beam quality.

摘要

本研究的目的是检验能否根据测量的X射线束数据与半经验公式的吻合程度来判断数据质量。将能量范围在4 - 25 MV的几种加速器的组织体模比(TPR)和输出因子拟合到该公式中,分离出原发射线光子和体模散射光子的剂量贡献。前者通过水中指数衰减并考虑束硬化来描述,后者通过使用与散射光子概率和方向分布相关的两个参数的散射与原发射线剂量比来描述。未考虑电子非平衡。评估了两种方法。一种方法是从窄束几何条件下的测量中确定衰减系数和硬化系数;另一种方法是通过拟合过程提取这些系数。在两种情况下,测量数据与拟合数据的吻合度均在±2%以内。差异呈随机分布,标准差通常为0.7%。带有误差的奇异点很容易识别。标准差增加揭示了系统误差。然而,当通过拟合算法推导衰减系数时,该系数与实验值有显著偏差。结论是,半经验公式可用于评估和验证在水中测量的束数据,并且从物理角度最准确的描述要求在窄束几何条件下确定衰减系数和硬化系数。衰减系数是原发射线剂量分量和散射剂量分量两者的优良度量,即束质量的优良度量。

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