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Monte Carlo simulation of small field electron beams for small animal irradiation (Conference Paper)

机译:小动物辐照小场电子束的蒙特卡罗模拟(会议论文)

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摘要

The volume effect of detectors in the dosimetry of small fields for photon beams has been well studied due to interests in radiosurgery and small beamlets used in IMRT treatments; but there is still an unexplored research field for small electron beams used in small animal irradiation. This study proposes to use the BEAM Monte Carlo (MC) simulation to assess characteristics of small electron beams (4, 6, 14, 30 mm in diameter) with the kinetic energies of 6 and 18 MeV. Three factors influencing beam characteristics were studied (1) AE and ECUT settings, (2) photon jaw settings and (3) simulation pixel sizes. Study results reveal that AE/ECUT settings at 0.7 MeV are adequate for linear accelerator treatment head simulation, while 0.521 MeV is more favorable to be used for the phantom study. It is also demonstrated that voxel size setting at 1/4 of the simulation field width in all directions is sufficient to achieve accurate results. As for the photon jaw setting, it has great impact on the absolute output of different field size setting (i.e. output factor) but with minimum effect on the relative lateral distribution.
机译:由于对放射外科和IMRT治疗中使用的小子束的兴趣,对光子束小场剂量学中检测器的体积效应进行了很好的研究。但是,在小动物辐照中使用小电子束的研究领域仍然有待探索。这项研究建议使用BEAM蒙特卡洛(MC)仿真来评估动能为6和18 MeV的小电子束(直径分别为4、6、14、30毫米)的特性。研究了影响光束特性的三个因素(1)AE和ECUT设置,(2)光子钳口设置和(3)模拟像素大小。研究结果表明,AE / ECUT设置为0.7 MeV足以进行线性加速器治疗头仿真,而0.521 MeV更适合用于幻像研究。还证明了在所有方向上将体素大小设置为模拟场宽度的1/4足以获得准确的结果。对于光子钳口设置,它对不同场大小设置的绝对输出(即输出因数)有很大影响,但对相对横向分布影响最小。

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