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Dosimetric Effect of Beam Angle on the Unflattened and Flattened Photon Beams: A Monte Carlo study

机译:光束角对非扁平和扁平光子梁的射频效应:蒙特卡罗研究

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This study compared the variations of depth and surface dose on beam angle between the unflattened and flattened photon beams. Monte Carlo simulation based on the EGSnrc code was used in dose calculation. Phase-space files of the 6 MV photon beams (field size = 10 x 10 cm2) were generated with and without the flattening filter based on a Varian TrueBeam Linac. Depth and surface doses were calculated in a water phantom with angles of the photon beams turning from 0° to 15°, 30°, 45°, 60°, 75° and 90°. Our results showed that compared to the flattened photon beam, the unflattened beam had a higher dose in the build-up region but lower dose beyond the depth of maximum dose. With the Monte Carlo beams cross-calibrated to the machine monitor unit in simulations, dose ratios of the unflattened to flattened beams were in the range of 1.6-2.6 with beam angles varying from 0° to 90° in water. In addition, higher surface doses of about 2.5 times were found with beam angles equal to 0° and 15°. However, surface dose deviation between the unflattened and flattened beam became smaller with an increase of beam angle. Using the photon fluence incorporated to the monitor unit, variations of depth and surface dose on the beam angle were investigated and compared. For the unflattened and flattened photon beams, the surface dose and range of depth dose ratios (unflattened to flattened beam) decreased with an increase of beam angle.
机译:该研究比较了未平坦和扁平的光子束之间的光束角上的深度和表面剂量的变化。基于EGSNRC代码的Monte Carlo仿真用于剂量计算。通过基于Varian Truebeam Linac的展平滤波器产生6mV光子光束的相位空间文件(字段大小= 10×10cm2)。在水体模型中计算深度和表面剂量,光子束的角度从0°到0°,30°,45°,60°,75°和90°的角度。我们的结果表明,与扁平光子束相比,未扁平的光束在堆积区域中具有更高的剂量,但远低于最大剂量深度的剂量。对于模拟的蒙特卡罗梁与机器监测单元交叉校准,未扁平的扁平梁的剂量比在1.6-2.6的范围内,光束角在水中变化0°至90°。此外,发现较高的表面剂量为约2.5次,光束角等于0°和15°。然而,随着光束角度的增加,未平坦和扁平梁之间的表面剂量偏差变小。使用掺入监视器单元的光子注射量,研究了光束角度上的深度和表面剂量的变化并进行比较。对于未平坦和平坦的光子束,随着光束角度的增加,表面剂量和深度剂量比(未变平的光束)的表面剂量和范围减小。

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