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An analytical method to calculate equivalent fields to irregular symmetric and asymmetric photon fields

机译:一种计算不规则对称和非对称光子场等效场的解析方法

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Equivalent field is frequently used for central axis depth-dose calculations of rectangular- and irregular-shaped photon beams. As most of the proposed models to calculate the equivalent square field are dosimetry based, a simple physical-based method to calculate the equivalent square field size was used as the basis of this study. The table of the sides of the equivalent square or rectangular fields was constructed and then compared with the well-known tables by BJR and Venselaar, et al. with the average relative error percentage of 2.5 ± 2.5% and 1.5 ± 1.5%, respectively. To evaluate the accuracy of this method, the percentage depth doses (PDDs) were measured for some special irregular symmetric and asymmetric treatment fields and their equivalent squares for Siemens Primus Plus linear accelerator for both energies, 6 and 18. MV. The mean relative differences of PDDs measurement for these fields and their equivalent square was approximately 1% or less. As a result, this method can be employed to calculate equivalent field not only for rectangular fields but also for any irregular symmetric or asymmetric field.
机译:等效场经常用于矩形和不规则形状的光子束的中心轴深度剂量计算。由于大多数提议的用于计算等效平方场的模型都是基于剂量法的,因此,一种基于物理的简单方法来计算等效平方场的大小被用作本研究的基础。构造了等效正方形或矩形字段的边表,然后与BJR和Venselaar等人的著名表进行了比较。平均相对误差百分比分别为2.5±2.5%和1.5±1.5%。为了评估该方法的准确性,针对某些特殊的不规则对称和不对称处理场以及西门子Primus Plus线性加速器的两种能量(6和18),测量了深度剂量百分比(PDD)及其等效平方。这些场及其等效平方的PDD测量的平均相对差约为1%或更小。结果,该方法不仅可以用于计算矩形场的等效场,而且可以用于计算任何不规则对称或不对称场的等效场。

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