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Output correction factors for nine small field detectors in 6 MV radiation therapy photon beams: A PENELOPE Monte Carlo study

机译:6 MV放射治疗光子束中九个小场检测器的输出校正因子:PENELOPE蒙特卡洛研究

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摘要

Purpose: To determine detector-specific output correction factors, k_(Q_clin,Q_msr)~(f_clin, f_msr) , in 6 MV small photon beams for air and liquid ionization chambers, silicon diodes, and diamond detectors from two manufacturers. Methods: Field output factors, defined according to the international formalism published by Alfonso et al. [Med. Phys. 35, 5179-5186 (2008)], relate the dosimetry of small photon beams to that of the machine-specific reference field; they include a correction to measured ratios of detector readings, conventionally used as output factors in broad beams. Output correction factors were calculated with the PENELOPE Monte Carlo (MC) system with a statistical uncertainty (type-A) of 0.15% or lower. The geometries of the detectors were coded using blueprints provided by the manufacturers, and phase-space files for field sizes between 0.5 x 0.5 cm~2 and 10 x 10 cm~2 from a Varian Clinac iX 6 MV linac used as sources. The output correction factors were determined scoring the absorbed dose within a detector and to a small water volume in the absence of the detector, both at a depth of 10 cm, for each small field and for the reference beam of 10 x 10 cm~2. Results: The Monte Carlo calculated output correction factors for the liquid ionization chamber and the diamond detector were within about ±1% of unity even for the smallest field sizes. Corrections were found to be significant for small air ionization chambers due to their cavity dimensions, as expected. The correction factors for silicon diodes varied with the detector type (shielded or unshielded), confirming the findings by other authors; different corrections for the detectors from the two manufacturers were obtained. The differences in the calculated factors for the various detectors ,. were analyzed thoroughly and whenever possible the results were compared to published data, often calculated for different accelerators and using the EGSnrc MC system. The differences were used to estimate a type-B uncertainty for the correction factors. Together with the type-A uncertainty from the Monte Carlo calculations, an estimation of the combined standard uncertainty was made, assigned to the mean correction factors from various estimates. Conclusions: The present work provides a consistent and specific set of data for the output correction factors of a broad set of detectors in a Varian Clinac iX 6 MV accelerator and contributes to improving the understanding of the physics of small photon beams. The correction factors cannot in general be neglected for any detector and, as expected, their magnitude increases with decreasing field size. Due to the reduced number of clinical accelerator types currently available, it is suggested that detector output correction factors be given specifically for linac models and field sizes, rather than for a beam quality specifier that necessarily varies with the accelerator type and field size due to the different electron spot dimensions and photon collimation systems used by each accelerator model.
机译:目的:在两个制造商的空气和液体电离室,硅二极管和金刚石探测器的6 MV小光子束中,确定探测器特定的输出校正因子k_(Q_clin,Q_msr)〜(f_clin,f_msr)。方法:场输出因子,根据Alfonso等人发表的国际形式主义定义。 [医生。物理35,5179-5186(2008)],将小光子束的剂量与机器特定参考场的剂量相关;它们包括对检测器读数的测量比率的校正,该读数通常用作宽光束的输出因子。使用PENELOPE Monte Carlo(MC)系统计算出输出校正因子,其统计不确定度(A型)为0.15%或更低。使用制造商提供的蓝图对探测器的几何形状进行编码,并使用Varian Clinac iX 6 MV直线加速器作为源,将相空间文件用于场大小在0.5 x 0.5 cm〜2和10 x 10 cm〜2之间。确定输出校正因子,以在探测器内的吸收剂量和没有探测器的情况下在小水量上的得分为准,每个深度为10 cm,每个小视野和参考光束为10 x 10 cm〜2 。结果:即使对于最小的场大小,蒙特卡洛计算的液体电离室和金刚石检测器的输出校正因子也都在±1%的范围内。如预期的那样,由于其空气腔尺寸,对小型空气电离室的校正非常重要。硅二极管的校正因子随检测器类型(屏蔽或非屏蔽)而变化,这证实了其他作者的发现;对两家制造商的检测器进行了不同的校正。各种检测器的计算因子差异。进行了彻底的分析,并尽可能将结果与已发布的数据进行了比较,这些数据通常针对不同的加速器并使用EGSnrc MC系统进行计算。差异用于估计校正因子的B型不确定性。结合蒙特卡洛计算的A型不确定度,对组合标准不确定度进行了估算,并将其分配给各种估算的平均校正因子。结论:目前的工作为Varian Clinac iX 6 MV加速器中的一系列检测器的输出校正因子提供了一致且特定的数据集,并有助于增进对小光子束物理学的理解。通常对于任何检测器都不能忽略校正因子,并且正如所期望的,校正因子的大小随场大小的减小而增加。由于目前可使用的临床加速器类型数量减少,建议针对直线加速器模型和场大小,而不是针对光束质量说明符而指定检测器输出校正因子,因为光束质量说明符必须随加速器类型和场大小而变化每个加速器模型使用不同的电子点尺寸和光子准直系统。

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