Qin Zhuang, Hu Yaosheng, Ma Yu, Lin Wei, Luo Xianping, Zhao Wenhui, Sun Weimin, Zhang Daxin, Chen Ziyin, Wang Boran, Lewis Elfed
Key Lab of In-fiber Integrated Optics, Ministry Education of China, Harbin Engineering University, Harbin 150001, China.
Comprehensive Cancer Center, First Affiliated Hospital of Harbin Medical University, Harbin 150001, China.
Biomed Opt Express. 2016 Nov 3;7(12):4919-4927. doi: 10.1364/BOE.7.004919. eCollection 2016 Dec 1.
An inorganic scintillating material plastic optical fiber (POF) dosimeter for measuring ionizing radiation during radiotherapy applications is reported. It is necessary that an ideal dosimeter exhibits many desirable qualities, including water equivalence, energy independence, reproducibility, dose linearity. There has been much recent research concerning inorganic dosimeters. However, little reference has been made to date of the depth-dose characteristics of dosimeter materials. In the case of inorganic scintillating materials, they are predominantly non water-equivalent, with their effective atomic weight (Z) being typically much greater than that of water. This has been a barrier in preventing inorganic scintillating material dosimeter from being used in actual clinical applications. In this paper, we propose a parallel-paired fiber light guide structure to solve this problem. Two different inorganic scintillating materials are embedded separately in the parallel-paired fiber. It is shown that the information of water depth and absorbed dose at the point of measurement can be extracted by utilizing their different depth-dose properties.
报道了一种用于在放射治疗应用中测量电离辐射的无机闪烁材料塑料光纤(POF)剂量计。理想的剂量计需要具备许多理想特性,包括水等效性、能量独立性、可重复性、剂量线性。最近有很多关于无机剂量计的研究。然而,迄今为止,关于剂量计材料的深度剂量特性的参考文献很少。对于无机闪烁材料,它们主要是非水等效的,其有效原子量(Z)通常远大于水的有效原子量。这一直是阻碍无机闪烁材料剂量计在实际临床应用中使用的一个障碍。在本文中,我们提出了一种平行配对光纤光导结构来解决这个问题。两种不同的无机闪烁材料分别嵌入平行配对光纤中。结果表明,利用它们不同的深度剂量特性,可以提取测量点处的水深和吸收剂量信息。