Department of Radiation Oncology and Experimental Cancer Research, Ghent University Hospital, Ghent, Belgium.
Phys Med Biol. 2011 Feb 7;56(3):627-51. doi: 10.1088/0031-9155/56/3/007. Epub 2011 Jan 10.
Recently, novel radiochromic leucodye micelle hydrogel dosimeters were introduced in the literature. In these studies, gel measured electron depth dose profiles were compared with ion chamber depth dose data, from which it was concluded that leucocrystal violet-type dosimeters were independent of dose rate. Similar conclusions were drawn for leucomalachite green-type dosimeters, only after pre-irradiating the samples to a homogeneous radiation dose. However, in our extensive study of the radio-physical properties of leucocrystal violet- and leucomalachite green-type dosimeters, a significant dose rate dependence was found. For a dose rate variation between 50 and 400 cGy min(-1), a maximum difference of 75% was found in optical dose sensitivity for the leucomalachite green-type dosimeter. Furthermore, the measured optical dose sensitivity of the leucomalachite green-type dosimeter was four times lower than the value previously reported in the literature. For the leucocrystal violet-type dosimeter, a maximum difference in optical dose sensitivity of 55% was found between 50 and 400 cGy min(-1). A modified composition of the leucomalachite green-type dosimeter is proposed. This dosimeter is composed of gelatin, sodium dodecyl sulfate, chloroform, trichloroacetic acid and leucomalachite green. The optical dose sensitivity amounted to 4.375 × 10(-5) cm(-1) cGy(-1) (dose rate 400 cGy min(-1)). No energy dependence for photon energies between 6 and 18 MV was found. No temperature dependence during readout was found notwithstanding a temperature dependence during irradiation of 1.90 cGy °C(-1) increase on a total dose of 100 cGy. The novel gel dosimeter formulation exhibits an improved spatial stability (2.45 × 10(-7) cm(2) s(-1) (= 0.088 mm(2) h(-1))) and good water/soft tissue equivalence. Nevertheless, the novel formulation was also found to have a significant, albeit reduced, dose rate dependence, as a maximum difference of 33% was found in optical dose sensitivity when the dose rate varied between 50 and 400 cGy min(-1). By pre-irradiating the novel leucomalachite green-type dosimeter to 500 cGy, the apparent difference in dose response between 200 and 400 cGy min(-1) was eliminated, similar to earlier findings. However, a dose response difference of 38% between 50 and 200 cGy min(-1) was still measured. On the basis of these experimental results it is concluded that the leucodye micelle gel dosimeter is not yet optimal for dose verifications of high precision radiation therapy treatments. This study, however, indicates that the dose rate dependence has a potential for improvement. Future research is necessary to further minimize the dose rate dependence through extensive chemical analysis and optimization of the gel formulation. Some insights into the physicochemical mechanisms were obtained and are discussed in this paper.
最近,新型放射性比色亮氨酸胶束水凝胶剂量计在文献中被介绍。在这些研究中,凝胶测量的电子深度剂量分布与电离室深度剂量数据进行了比较,从中得出结论,亮氨酸晶体紫型剂量计与剂量率无关。对于亮氨酸孔雀绿型剂量计,只有在将样品预辐照到均匀的辐射剂量后,才能得出类似的结论。然而,在我们对亮氨酸晶体紫和亮氨酸孔雀绿型剂量计的放射性物理特性进行广泛研究后,发现了显著的剂量率依赖性。对于剂量率在 50 到 400 cGy min(-1) 之间的变化,亮氨酸孔雀绿型剂量计的光剂量灵敏度最大差异为 75%。此外,亮氨酸孔雀绿型剂量计的测量光剂量灵敏度比文献中先前报道的值低四倍。对于亮氨酸晶体紫型剂量计,在 50 到 400 cGy min(-1) 之间发现光剂量灵敏度的最大差异为 55%。提出了亮氨酸孔雀绿型剂量计的改良组成。该剂量计由明胶、十二烷基硫酸钠、氯仿、三氯乙酸和亮氨酸孔雀绿组成。光剂量灵敏度达到 4.375×10(-5)cm(-1) cGy(-1)(剂量率为 400 cGy min(-1))。在光子能量为 6 到 18 MV 之间没有发现能量依赖性。尽管在辐照期间存在 1.90 cGy°C(-1)的温度依赖性,在总剂量为 100 cGy 的情况下,在读取期间没有发现温度依赖性。新型凝胶剂量计配方表现出改进的空间稳定性(2.45×10(-7)cm(2) s(-1)=0.088 mm(2) h(-1))和良好的水/软组织等效性。然而,新型配方也被发现具有显著的、尽管是降低的剂量率依赖性,当剂量率在 50 到 400 cGy min(-1) 之间变化时,在光剂量灵敏度方面发现最大差异为 33%。通过将新型亮氨酸孔雀绿型剂量计预辐照至 500 cGy,消除了在 200 和 400 cGy min(-1) 之间剂量响应的明显差异,类似于早期的发现。然而,在 50 到 200 cGy min(-1) 之间仍然测量到 38%的剂量响应差异。基于这些实验结果,得出结论,亮氨酸胶束凝胶剂量计对于高精度放射治疗治疗的剂量验证还不够理想。然而,本研究表明,剂量率依赖性具有改进的潜力。需要进一步的化学分析和凝胶配方的优化来进一步减小剂量率依赖性。本文获得了一些对物理化学机制的见解,并进行了讨论。