Medical Radiation Physics, Stockholm University and Karolinska Institutet, Box 260, SE-171 76 Stockholm, Sweden.
Phys Med Biol. 2010 Mar 21;55(6):N161-6. doi: 10.1088/0031-9155/55/6/N03. Epub 2010 Mar 2.
The IAEA standard thermoluminescent dosimeter (TLD) holder has been developed for the IAEA/WHO TLD postal dose program for audits of high-energy photon beams, and it is also employed by the ESTRO-QUALity assurance network (EQUAL) and several national TLD audit networks. Factors correcting for the influence of the holder on the TL signal under reference conditions have been calculated in the present work from Monte Carlo simulations with the PENELOPE code for (60)Co gamma-rays and 4, 6, 10, 15, 18 and 25 MV photon beams. The simulation results are around 0.2% smaller than measured factors reported in the literature, but well within the combined standard uncertainties. The present study supports the use of the experimentally obtained holder correction factors in the determination of the absorbed dose to water from the TL readings; the factors calculated by means of Monte Carlo simulations may be adopted for the cases where there are no measured data.
IAEA 标准热释光剂量计(TLD)探测器已为 IAEA/WHO TLD 邮寄剂量计划开发,用于高能光子束的审计,ESTRO-QUAL 质量保证网络(EQUAL)和几个国家 TLD 审计网络也在使用。本工作采用 PENELOPE 代码,对(60)Coγ射线和 4、6、10、15、18 和 25MV 光子束进行蒙特卡罗模拟,计算了在参考条件下探测器对 TL 信号影响的修正因子。模拟结果比文献中报道的实测修正因子小约 0.2%,但仍在总标准不确定度范围内。本研究支持在 TLD 读数测定水吸收剂量时使用实验获得的探测器修正因子;在没有实测数据的情况下,可以采用通过蒙特卡罗模拟计算的修正因子。