首页> 外文期刊>Journal of Radiation Research: Official Organ of the Japan Radiation Research Society >An investigation of the depth dose in the build-up region, and surface dose for a 6-MV therapeutic photon beam: Monte Carlo simulation and measurements
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An investigation of the depth dose in the build-up region, and surface dose for a 6-MV therapeutic photon beam: Monte Carlo simulation and measurements

机译:研究6-MV治疗性光子束在累积区域的深度剂量和表面剂量:蒙特卡洛模拟和测量

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摘要

The percentage depth dose in the build-up region and the surface dose for the 6-MV photon beam from a Varian Clinac 23EX medical linear accelerator was investigated for square field sizes of 5 × 5, 10 × 10, 15 × 15 and 20 × 20 cm~2using the EGS4nrc Monte Carlo (MC) simulation package. The depth dose was found to change rapidly in the build-up region, and the percentage surface dose increased proportionally with the field size from approximately 10% to 30%. The measurements were also taken using four common detectors: TLD chips, PFD dosimeter, parallel-plate and cylindrical ionization chamber, and compared with MC simulated data, which served as the gold standard in our study. The surface doses obtained from each detector were derived from the extrapolation of the measured depth doses near the surface and were all found to be higher than that of the MC simulation. The lowest and highest over-responses in the surface dose measurement were found with the TLD chip and the CC13 cylindrical ionization chamber, respectively. Increasing the field size increased the percentage surface dose almost linearly in the various dosimeters and also in the MC simulation. Interestingly, the use of the CC13 ionization chamber eliminates the high gradient feature of the depth dose near the surface. The correction factors for the measured surface dose from each dosimeter for square field sizes of between 5 × 5 and 20 × 20 cm~2are introduced.
机译:对于5×5、10×10、15×15和20×4的方形场尺寸,研究了Varian Clinac 23EX医用线性加速器在6 MV光子束集束区域的深度剂量和表面剂量使用EGS4nrc蒙特卡洛(MC)仿真程序包20 cm〜2。发现深度剂量在堆积区域快速变化,并且表面剂量百分比与场大小成比例地从大约10%增加到30%。还使用四种常见的检测器进行了测量:TLD芯片,PFD剂量计,平行板和圆柱电离室,并与MC模拟数据进行了比较,MC模拟数据是我们研究中的金标准。从每个检测器获得的表面剂量是从对表面附近测得的深度剂量的推算得出的,并且发现它们都高于MC模拟的剂量。在TLD芯片和CC13圆柱电离室中,分别发现了最低和最高的表面剂量过响应。在各种剂量计中以及在MC模拟中,增大场大小都会几乎线性增加表面剂量百分比。有趣的是,使用CC13电离室可消除表面附近深度剂量的高梯度特征。介绍了在5×5到20×20 cm〜2的正方形场中,从每个剂量计测量的表面剂量的校正​​因子。

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