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Modeling the extrafocal radiation and monitor chamber backscatter for photon beam dose calculation.

机译:对焦点外辐射建模并监视腔室后向散射,以进行光子束剂量计算。

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A simple analytical approach has been developed to model extrafocal radiation and monitor chamber backscatter for clinical photon beams. Model parameters for both the extrafocal source and monitor chamber backscatter are determined simultaneously using conventional measured data, i.e., in-air output factors for square and rectangular fields defined by the photon jaws. The model has been applied to 6 MV and 15 MV photon beams produced by a Varian Clinac 2300C/D accelerator. Contributions to the in-air output factor from the extrafocal radiation and monitor chamber backscatter, as predicted by the model, are in good agreement with the measurements. The model can be used to calculate the in-air output factors analytically, with an accuracy of 0.2% for symmetric or asymmetric rectangular fields defined by jaws when the calculation point is at the isocenter and 0.5% when the calculation point is at an extended SSD. For MLC-defined fields, with the jaws at the recommended positions, calculated in-air output factors agree with the measured data to within 0.3% at the isocenter and 0.7% at off-axis positions. The model has been incorporated into a Monte Carlo dose algorithm to calculate the absolute dose distributions in patients or phantoms. For three MLC-defined irregular fields (triangle shape, C-shape, and L-shape), the calculations agree with the measurements to about 1% even for points at off-axis positions. The model will be particularly useful for IMRT dose calculations because it accurately predicts beam output and penumbra dose.
机译:已经开发出一种简单的分析方法来对聚焦外辐射进行建模,并监视用于临床光子束的腔室后向散射。使用常规测量数据(即,光子钳口定义的正方形和矩形场的空气输出因子)同时确定焦点外源和监视室后向散射的模型参数。该模型已应用于由Varian Clinac 2300C / D加速器产生的6 MV和15 MV光子束。由模型预测,聚焦外辐射和监测室后向散射对空气输出因子的贡献与测量值吻合良好。该模型可用于分析计算空中输出因子,当计算点位于等角点时,由钳口定义的对称或非对称矩形场的精度为0.2%,而当计算点为扩展SSD时,精度为0.5% 。对于MLC定义的磁场,在钳口处于推荐位置的情况下,计算出的空中输出因子与测得的数据一致,在等中心点处为0.3%以内,在离轴位置处为0.7%以内。该模型已合并到Monte Carlo剂量算法中,以计算患者或体模中的绝对剂量分布。对于三个由MLC定义的不规则场(三角形,C形和L形),即使对于离轴位置的点,计算结果也与大约1%的测量值一致。该模型对于IMRT剂量计算特别有用,因为它可以准确预测光束输出和半影剂量。

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