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首页> 外文期刊>Medical Physics >Benchmarking of the dose planning method (DPM) Monte Carlo code using electron beams from a racetrack microtron.
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Benchmarking of the dose planning method (DPM) Monte Carlo code using electron beams from a racetrack microtron.

机译:剂量计划方法(DPM)蒙特卡罗代码的基准测试,是使用来自跑道微加速器的电子束进行的。

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A comprehensive set of measurements and calculations has been conducted to investigate the accuracy of the Dose Planning Method (DPM) Monte Carlo code for dose calculations from 10 and 50 MeV scanned electron beams produced from a racetrack microtron. Central axis depth dose measurements and a series of profile scans at various depths were acquired in a water phantom using a Scanditronix type RK ion chamber. Source spatial distributions for the Monte Carlo calculations were reconstructed from in-air ion chamber measurements carried out across the two-dimensional beam profile at 100 cm downstream from the source. The in-air spatial distributions were found to have full width at half maximum of 4.7 and 1.3 cm, at 100 cm from the source, for the 10 and 50 MeV beams, respectively. Energy spectra for the 10 and 50 MeV beams were determined by simulating the components of the microtron treatment head using the code MCNP4B. DPM calculations are on average within +/- 2% agreement with measurement for all depth dose and profile comparisons conducted in this study. The accuracy of the DPM code illustrated in this work suggests that DPM may be used as a valuable tool for electron beam dose calculations.
机译:已经进行了一套全面的测量和计算,以研究剂量计划方法(DPM)蒙特卡洛代码的准确性,该剂量计划方法是从跑道微加速器产生的10和50 MeV扫描电子束中进行剂量计算。使用Scanditronix型RK离子室在水模中获取中心轴深度剂量测量值以及在不同深度的一系列轮廓扫描。蒙特卡洛计算的源空间分布是根据在离子源下游100 cm处的二维离子束剖面上进行的空气离子室测量结果重建的。空中空间分布被发现分别在10 MeV光束和50 MeV光束距源100 cm处的半峰全宽分别为4.7和1.3 cm。通过使用代码MCNP4B模拟微加速器处理头的组件,确定10和50 MeV束的能谱。对于本研究中进行的所有深度剂量和轮廓比较的测量,DPM计算平均在+/- 2%的范围内。这项工作中说明的DPM代码的准确性表明DPM可用作电子束剂量计算的有价值的工具。

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