Fujita Health University, Faculty of Radiological Technology, School of Health Sciences, Japan.
Nagoya Proton Therapy Center, Nagoya City West Medical Center, Japan.
Phys Med. 2021 Jan;81:147-154. doi: 10.1016/j.ejmp.2020.12.001. Epub 2021 Jan 15.
A radiophotoluminescent glass dosimeter (RGD) is widely used in postal audit system for photon beams in Japan. However, proton dosimetry in RGDs is scarcely used owing to a lack of clarity in their response to beam quality. In this study, we investigated RGD response to beam quality for establishing a suitable linear energy transfer (LET)-corrected dosimetry protocol in a therapeutic proton beam. The RGD response was compared with ionization chamber measurement for a 100-225 MeV passive proton beam. LET of the measurement points was calculated by the Monte Carlo method. An LET-correction factor, defined as a ratio between the non-corrected RGD dose and ionization chamber dose, of 1.226×(LET) was derived for the RGD response. The magnitude of the LET-dependence of RGD increased with LET; for an LET of 8.2 keV/μm, the RGD under-response was up to 16%. The coefficient of determination, mean difference ± SD of non-corrected RGD dose, residual range-corrected RGD dose, and LET-corrected RGD dose to the ionization chamber are 0.923, 3.7 ± 4.2%, -2.4 ± 7.5%, and 0.04 ± 2.1%, respectively. The LET-corrected RGD dose was within 5% of the corresponding ionization chamber dose at all energies until 200 MeV, where it was 5.3% lower than the ionization chamber dose. A corrected LET-dependence of RGD using a correction factor based on a power function of LET and precise dosimetric verification close to the maximum LET were realized here. We further confirmed establishment of an accurate postal audit under various irradiation conditions.
一种放射性光致发光玻璃剂量计(RGD)在日本的光子束邮政审核系统中被广泛使用。然而,由于其对束质的响应不明确,因此在 RGD 中进行质子剂量测定的情况很少。在这项研究中,我们研究了 RGD 对束质的响应,以便在治疗质子束中建立合适的线性能量传递(LET)校正剂量测定协议。通过蒙特卡罗方法计算测量点的 LET,将 RGD 响应与电离室测量进行了比较。对于 100-225 MeV 被动质子束,得出 RGD 响应的 LET 校正因子为 1.226×(LET)。RGD 响应的 LET 依赖性随着 LET 的增加而增加;对于 LET 为 8.2 keV/μm,RGD 的响应不足高达 16%。未校正的 RGD 剂量与电离室剂量的决定系数、未校正的 RGD 剂量、残余射程校正的 RGD 剂量和 LET 校正的 RGD 剂量的平均差异(±SD)分别为 0.923、3.7±4.2%、-2.4±7.5%和 0.04±2.1%。在所有能量下,LET 校正后的 RGD 剂量都在 5%以内,直到 200 MeV,此时比电离室剂量低 5.3%。在此,通过 LET 幂函数的校正因子和接近最大 LET 的精确剂量验证,实现了 RGD 的校正 LET 依赖性。我们进一步确认了在各种照射条件下建立准确的邮政审核。