Karolinska University Hospital and Karolinska Institutet, Stockholm, Sweden.
Phys Med Biol. 2020 May 7;65(9):095011. doi: 10.1088/1361-6560/ab807b.
The IAEA is currently coordinating a multi-year project to update the TRS-398 Code of Practice for the dosimetry of external beam radiotherapy based on standards of absorbed dose to water. One major aspect of the project is the determination of new beam quality correction factors, k , for megavoltage photon beams consistent with developments in radiotherapy dosimetry and technology since the publication of TRS-398 in 2000. Specifically, all values must be based on, or consistent with, the key data of ICRU Report 90. Data sets obtained from Monte Carlo (MC) calculations by advanced users and measurements at primary standards laboratories have been compiled for 23 cylindrical ionization chamber types, consisting of 725 MC-calculated and 179 experimental data points. These have been used to derive consensus k values as a function of the beam quality index TPR with a combined standard uncertainty of 0.6%. Mean values of MC-derived chamber-specific [Formula: see text] factors for cylindrical and plane-parallel chamber types in Co beams have also been obtained with an estimated uncertainty of 0.4%.
IAEA 目前正在协调一个多年项目,以基于水吸收剂量标准更新 TRS-398 外照射放射治疗剂量学实践守则。该项目的一个主要方面是确定新的束质校正因子 k ,以用于兆伏光子束,这与自 2000 年 TRS-398 发布以来放射治疗剂量学和技术的发展一致。具体而言,所有值都必须基于或与 ICRU 报告 90 的关键数据一致。为 23 种圆柱形电离室类型编译了由高级用户进行的蒙特卡罗(MC)计算和主要标准实验室的测量获得的数据,其中包括 725 个 MC 计算和 179 个实验数据点。这些数据已被用于推导出作为束质指数 TPR 的函数的共识 k 值,其合并标准不确定度为 0.6%。钴束中圆柱形和平面平行电离室类型的 MC 衍生的特定于腔室的 k 值的平均值也已获得,其估计不确定度为 0.4%。