Department of Man-Made Fibres, Lodz University of Technology, Lodz, Poland.
Phys Med Biol. 2018 May 4;63(9):095012. doi: 10.1088/1361-6560/aabbb6.
This work is a follow-up study for a recently-proposed 3D radiochromic gel dosimeter that contains a tetrazolium salt and a physical gel matrix made of poly(ethylene oxide)-block-poly(propylene oxide)-block-poly(ethylene oxide) (Pluronic F-127). Several tetrazolium salts were examined in this work, including tetrazolium violet, blue tetrazolium chloride, nitro blue tetrazolium chloride (NBT), tetranitro blue tetrazolium chloride (tNBT) and thiazolyl blue tetrazolium bromide (TBTB). The salt-containing gel dosimeters were compared with the first Pluronic gel composition that contained 2,3,5-triphenyltetrazolium chloride (TTC) as the radiation-sensitive component (dose sensitivity of 0.0023 (Gy cm)). The Pluronic gels with NBT and tNBT outperformed the other gels, including the TTC-containing gel, with respect to their dose sensitivity and low dose-response. The NBT gels were found to have better stability over time than tNBT gels. Sensitization of the gels to ionizing radiation was examined by addition of tert-butyl alcohol and sodium formate. The best composition was 0.0818% NBT (1 mM), 25% Pluronic F-127 and 0.136 × 10% sodium formate. This gel dosimeter was insensitive to changes in dose rate for photons of different energies. The mean dose sensitivity amounted to 0.0047 ± 0.1 × 10 (Gy cm). A diversion in the dose-response was observed for the gel irradiated with electrons. Additional characteristics of the NBT gel were a linear-dose range and a dynamic-dose range between <1 and ⩾150 Gy and a dose threshold of <1 Gy. The dose distribution registered for the NBT-Pluronic gel was stable after irradiation for over 7 d with no visible diffusion of the irradiated part, which is analogous to the original TTC-Pluronic gel.
这项工作是对最近提出的一种 3D 放射变色凝胶剂量计的后续研究,该剂量计包含一种四唑盐和由聚(氧化乙烯)-嵌段-聚(氧化丙烯)-嵌段-聚(氧化乙烯)(Pluronic F-127)制成的物理凝胶基质。在这项工作中检查了几种四唑盐,包括四唑紫、氯化蓝四唑、硝基氯化蓝四唑(NBT)、四硝基氯化蓝四唑(tNBT)和噻唑蓝四唑溴盐(TBTB)。含盐凝胶剂量计与第一种含有 2,3,5-三苯基氯化四唑(TTC)作为辐射敏感成分的 Pluronic 凝胶组成进行了比较(剂量灵敏度为 0.0023(Gy cm))。与包含 TTC 的凝胶相比,NBT 和 tNBT 凝胶在剂量灵敏度和低剂量响应方面表现更好。与 tNBT 凝胶相比,NBT 凝胶发现随着时间的推移具有更好的稳定性。通过添加叔丁醇和甲酸钠来研究凝胶对电离辐射的敏化作用。最佳组成是 0.0818% NBT(1mM)、25% Pluronic F-127 和 0.136×10% 甲酸钠。这种凝胶剂量计对不同能量光子的剂量率变化不敏感。平均剂量灵敏度为 0.0047±0.1×10(Gy cm)。观察到用电子照射的凝胶的剂量响应出现偏差。NBT 凝胶的其他特性是线性剂量范围和动态剂量范围在 1 至 150 Gy 之间以及剂量阈值为 1 Gy 以下。用 NBT-Pluronic 凝胶记录的剂量分布在辐照后超过 7 天保持稳定,没有可见的辐照部分扩散,这与原始 TTC-Pluronic 凝胶类似。