剂量计
材料科学
辐照
航程(航空)
梁(结构)
光束能量
剂量学
阴极射线
电子束处理
电子
放射化学
光学
核医学
化学
物理
核物理学
医学
复合材料
作者
Tiancheng Zhang,Yasir Q. Аlmajidi,Sameer A. Awad,Firas Rahi Alhachami,M. Abdulfadhil Gatea,Wesam R. Kadhum
摘要
Several physical factors such as photon beam energy, electron beam energy, and dose rate may affect the dosimetric properties of polymer gel dosimeters. The photon beam energy and dose rate dependence of PASSAG gel dosimeter were previously evaluated.This study aims to assess the dosimetric properties of the optimized PASSAG gel samples in various electron beam energies.The optimized PASSAG gel samples are first fabricated and irradiated to various electron energies (5, 7, 10 and 12 MeV). Then, the response (R2) and sensitivity of gel samples are analyzed by magnetic resonance imaging technique at a dose range of 0 to 10 Gy, scanning room temperature range of 15 to 22 °C, and post-irradiation time range of 1 to 30 days.The R2-dose response and sensitivity of gel samples do not change under the evaluated electron beam energies (the differences are less than 5%). Furthermore, a dose resolution range of 11 to 38 cGy is obtained for the gel samples irradiated to different electron beam energies. Moreover, the findings show that the R2-dose response and sensitivity dependence of gel samples on electron beam energy varies over different scanning room temperatures and post-irradiation times.The dosimetric assessment of the optimized PASSAG gel samples provides the promising data for this dosimeter during electron beam radiotherapy.
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