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首页> 外文期刊>Medical Physics >Monte Carlo evaluation of the convolution/superposition algorithm of Hi-Art tomotherapy in heterogeneous phantoms and clinical cases.
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Monte Carlo evaluation of the convolution/superposition algorithm of Hi-Art tomotherapy in heterogeneous phantoms and clinical cases.

机译:蒙特卡洛对异类体模和临床病例中的高能效Tomotherapy的卷积/叠加算法的评估。

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摘要

The reliability of the convolution/superposition (C/S) algorithm of the Hi-Art tomotherapy system is evaluated by using the Monte Carlo model TomoPen, which has been already validated for homogeneous phantoms. The study was performed in three stages. First, measurements with EBT Gafchromic film for a 1.25 x 2.5 cm2 field in a heterogeneous phantom consisting of two slabs of polystyrene separated with Styrofoam were compared to simulation results from TomoPen. The excellent agreement found in this comparison justifies the use of TomoPen as the reference for the remaining parts of this work. Second, to allow analysis and interpretation of the results in clinical cases, dose distributions calculated with TomoPen and C/S were compared for a similar phantom geometry, with multiple slabs of various densities. Even in conditions of lack of lateral electronic equilibrium, overall good agreement was obtained between C/S and TomoPen results, with deviations within 3%/2 mm, showing that the C/S algorithm accounts for modifications in secondary electron transport due to the presence of a low density medium. Finally, calculations were performed with TomoPen and C/S of dose distributions in various clinical cases, from large bilateral head and neck tumors to small lung tumors with diameter of < 3 cm. To ensure a "fair" comparison, identical dose calculation grid and dose-volume histogram calculator were used. Very good agreement was obtained for most of the cases, with no significant differences between the DVHs obtained from both calculations. However, deviations of up to 4% for the dose received by 95% of the target volume were found for the small lung tumors. Therefore, the approximations in the C/S algorithm slightly influence the accuracy in small lung tumors even though the C/S algorithm of the tomotherapy system shows very good overall behavior.
机译:使用蒙特卡洛模型TomoPen评估了高水平Tomotherapy系统的卷积/叠加(C / S)算法的可靠性,该模型已经针对同质体模进行了验证。该研究分三个阶段进行。首先,将EBT全色薄膜在由两个用聚苯乙烯泡沫塑料分离的聚苯乙烯平板组成的异质模型中,对1.25 x 2.5 cm2场的测量结果与TomoPen的模拟结果进行了比较。在此比较中发现的极好的协议证明了使用TomoPen作为本工作其余部分的参考。其次,为了对临床病例的结果进行分析和解释,比较了用TomoPen和C / S计算的剂量分布,以模拟体模的几何形状,并使用多个密度不同的平板。即使在缺乏横向电子平衡的条件下,C / S和TomoPen结果也获得了总体良好的一致性,偏差在3%/ 2 mm之内,表明C / S算法考虑了存在下二次电子传输的变化低密度介质。最后,使用TomoPen和C / S在各种临床病例中进行剂量分布计算,从大的双侧头颈肿瘤到直径小于3 cm的小肺肿瘤。为了确保“公平”的比较,使用了相同的剂量计算网格和剂量-体积直方图计算器。在大多数情况下都获得了很好的一致性,从两种计算获得的DVH之间没有显着差异。然而,对于小肺肿瘤,发现所接受剂量的最大偏差为目标体积的95%的4%。因此,即使X线断层扫描系统的C / S算法显示出非常好的总体性能,C / S算法中的近似值也会对小肺肿瘤的准确性产生轻微影响。

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