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Monte carlo simulation of varian clinac iX 10 MV photon beam for small field dosimetry

机译:Monte Carlo模拟Varian Clinac IX 10 MV光子梁的小型田间剂量测定

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Background: The lack of lateral electronic disequilibrium (LED) becomes a main problem in small field. This factor affects the dose in target volume cannot predict correctly. In addition, utilization of high-energy linear accelerator (10 MV) can emit some unwanted particles (electron contamination). Therefore, the aim of this study was to characterize head linear accelerator (linac) Varian Clinac iX 10 MV photon beam for square small field size (1x1, 2x2, 3x3, 4x4 and 5x5 cm2) using Monte Carlo (MC) simulation. Materials and Methods: The commissioning process for this linac, has been conducted for field size 6x6, 10x10 and 20x20 cm2 by comparing the measurement and MC simulation data. Head linac simulation was performed with BEAMnrc and dose calculation with DOSXYZnrc. The phase space (phsp) data from BEAMnrc was analyzed using BEAMDP to get the particles information in scoring plane. Results and Discussion: The scatter angle of particles depends on the field size. This factor affects the penumbra width in water phantom. On the other hand, PDD data show that the depth of maximum dose and penumbra width in small field shifted correspond with the number of scatter particle. The difference of relative output factor between measurement and MC results were found less than 2%. However, the 2% difference was still acceptable in photon beam dosimetry. Conclusion: From this simulation, the electron contamination give contribution in surface dose of water phantom about 13.0581% and less than 1% for field size 10x10 cm2 and small field size, respectively.
机译:背景:缺乏横向电子不平衡(LED)成为小型领域的主要问题。该因素影响目标体积中的剂量无法预测正确。此外,利用高能线性加速器(10mV)可以发出一些不需要的颗粒(电子污染)。因此,本研究的目的是使用Monte Carlo(MC)模拟来表征用于方形小场尺寸(1×1,2×2,3×3,4×4和5x5cm2)的头线性加速器(LINAC)Varian Clarac IX 10 MV光子束。材料和方法:通过比较测量和MC仿真数据,对该LINAC的调试过程进行了现场大小6x6,10x10和20x20cm2。用ChapNRC和DosxyzNRC进行头部LINAC模拟。使用ChabDP分析来自BeamNRC的相位空间(PHSP)数据,以在评分平面中获取粒子信息。结果与讨论:粒子的散射角度取决于场尺寸。这个因素会影响水幻影的半影宽度。另一方面,PDD数据表明,小场的最大剂量和半影宽度的深度与散射粒子的数量相对应。发现测量和MC结果之间的相对输出因子的差异小于2%。然而,光子束剂量法仍然可以接受2%的差异。结论:从该模拟中,电子污染分别为场尺寸10x10cm 2和小场大小的水体模型的表面剂量贡献为约13.0581%且小于1%。

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