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首页> 外文期刊>Physics of particles and nuclei letters >Validation of Monte Carlo Simulation of 6 MV Photon Beam Produced by Varian Clinac 2100 Linear Accelerator Using BEAMnrc Code and DOSXYZnrc Code1
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Validation of Monte Carlo Simulation of 6 MV Photon Beam Produced by Varian Clinac 2100 Linear Accelerator Using BEAMnrc Code and DOSXYZnrc Code1

机译:验证Monte Carlo模拟6 MV光子梁的varian Clarac 2100线性加速器使用ChaiNRC代码和DosxyzNRC Code1

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摘要

The Monte Carlo model for the photon-beam output from the Varian Clinac 2100 linear accelerator was validated to compare the calculated to measured PDD and beam dose profiles The Monte Carlo calculation method is considered to be the most accurate method for dose calculation in radiotherapy. The objective of this study is to build a Monte Carlo geometry of Varian Clinac 2100 linear accelerator as realistically as possible. The Monte Carlo codes used in this work were the BEAMnrc code to simulate the photons beam and the DOSXYZnrc code to examinate the absorbed dose in the water phantom. We have calculated percentage depth dose (PDD) and beam profiles of the 6 MV photon beam for the 6 × 6 cm~2, 10 × 10 cm~2 and 15 × 15 cm~2 field sizes. We have used the gamma index technique for the quantitative evaluation to compare the measured and calculated distributions. Good agreement was found between calculated PDD and beam profile compared to measured data. The comparison was evaluated using the gamma index method and the criterions were 3% for dose difference and 3 mm for distance to agreement. The gamma index acceptance rate was more than 97% of both distribution comparisons PDDs and dose profiles and our results were more developed and accurate. The Varian Clinac 2100 linear accelerator was accurately modeled using Monte Carlo codes: BEAMnrc and DOSXYZnrc codes package.
机译:验证了来自Varian Clarac 2100线性加速器的光子束输出的蒙特卡罗模型,以比较测量的PDD和梁剂量分布,蒙特卡罗计算方法被认为是放射治疗中剂量计算的最准确方法。本研究的目的是尽可能地逼真地构建Varian Clarac 2100线性加速器的蒙特卡罗几何形状。本作工作中使用的蒙特卡罗代码是用于模拟光子束和DOSXYZNRC代码的BEAMNRC代码,以检查水体幻影中的吸收剂量。我们已经计算了6×6cm〜2,10×10cm〜2和15×15cm〜2场尺寸的6 mV光子束的百分比深度剂量(PDD)和光束轮廓。我们使用了伽玛指数技术进行定量评估以比较测量和计算的分布。与测量数据相比,计算的PDD和光束轮廓之间发现了良好的协议。使用伽玛指数法评估比较,并且剂量差的标准为3%,距离距离3 mm。伽玛指数验收率超过分布比较PDDS和剂量型材的97%,我们的结果更加开发和准确。 Varian Clarac 2100线性加速器使用Monte Carlo Codes精确建模:BeamNRC和DosxyZNRC码包装。

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