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玻璃剂量计在质子束中的剂量响应:LET 依赖性和修正因子。

Dosimetric response of a glass dosimeter in proton beams: LET-dependence and correction factor.

机构信息

Fujita Health University, Faculty of Radiological Technology, School of Health Sciences, Japan.

Nagoya Proton Therapy Center, Nagoya City West Medical Center, Japan.

出版信息

Phys Med. 2021 Jan;81:147-154. doi: 10.1016/j.ejmp.2020.12.001. Epub 2021 Jan 15.

Abstract

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.

摘要

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。

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