Graduate School of Health Sciences, Fujita Health University, Toyoake, Japan.
Faculty of Radiological Technology, School of Health Sciences, Fujita Health University, Toyoake, Japan.
J Appl Clin Med Phys. 2021 Aug;22(8):265-272. doi: 10.1002/acm2.13378. Epub 2021 Aug 2.
A radiophotoluminescent glass dosimeter (RGD) is used for a postal audit of a photon beam because of its various excellent characteristics. However, it has not been used for scanning proton beams because its response characteristics have not been verified. In this study, the response of RGD to scanning protons was investigated to develop a dosimetry protocol using the linear energy transfer (LET)-based correction factor. The responses of RGD to four maximum-range-energy-pattern proton beams were verified by comparing it with ionization chamber (IC) dosimetry. The LET at each measurement depth was calculated via Monte Carlo (MC) simulation. The LET correction factor ( ) was the ratio between the uncorrected RGD dose ( ) and the IC dose at each measurement depth. can be represented as a function of LET using the following equation: . showed a linear under-response with increasing LET, and the maximum dose difference between the IC dose and was 15.2% at an LET of 6.07 keV/μm. The LET-based correction dose ( ) conformed within 3.6% of the IC dose. The mean dose difference (±SD) of and was -2.5 ± 6.9% and 0.0 ± 1.6%, respectively. To achieve accurate dose verification for scanning proton beams using RGD, we derived a linear regression equation based on LET. The results show that with appropriate LET correction, RGD can be used for dose verification of scanning proton beams.
放射性光致发光玻璃剂量计(RGD)因其各种优异特性而被用于光子束的邮政审核。然而,由于其响应特性尚未得到验证,因此尚未用于扫描质子束。在这项研究中,研究了 RGD 对扫描质子的响应,以开发基于线性能量转移(LET)的校正因子的剂量测定协议。通过与电离室(IC)剂量测定法进行比较,验证了 RGD 对四种最大射程能量模式质子束的响应。通过 Monte Carlo(MC)模拟计算了每个测量深度处的 LET。LET 校正因子( )是未经校正的 RGD 剂量( )与每个测量深度处的 IC 剂量之比。 可以表示为以下方程中 LET 的函数: 。 随着 LET 的增加呈现出线性欠响应,在 LET 为 6.07keV/μm 时,IC 剂量和 之间的最大剂量差异为 15.2%。基于 LET 的校正剂量( )与 IC 剂量相符,相差不超过 3.6%。 和 的平均剂量差异(±SD)分别为-2.5±6.9%和 0.0±1.6%。为了使用 RGD 对扫描质子束进行准确的剂量验证,我们基于 LET 推导出了一个线性回归方程。结果表明,通过适当的 LET 校正,RGD 可用于扫描质子束的剂量验证。