School of Engineering, Macquarie University, North Ryde, Sydney, Australia. The authors M J Wheatley and Y De Deene contributed equally to the work presented in this paper. Authors to whom any correspondence should be addressed.
Phys Med Biol. 2018 Nov 7;63(21):215028. doi: 10.1088/1361-6560/aae7e7.
Deformable 3D radiation dosimetry is receiving growing interest for the validation of image-guided radiotherapy treatments (IGRT) of moving and deformable targets. Previously, a proof-of-concept of a flexible anthropomorphic 3D dosimeter called 'FlexyDos3D' has been demonstrated. One of the concerns with respect to the FlexyDos3D dosimeter is its dose-response instability. The effect of different formulations of the dosimeter on its stability were investigated. A stable formulation for the dosimeter was found by optimising the ratios of curing agent and base of the silicone matrix between 3% and 4.5% [w/w] curing agent. The effects of elevated curing temperatures and times upon the dosimetric properties were also investigated and the dose-response was found to be independent of curing times for curing times over an hour at 120 °C. H NMR spectra of the dosimeter chemical constituents and the effect of radiation dose were determined. The evaporation and diffusion rates of chloroform in the dosimeter were determined and are the likely cause of the dosimeters depth-dose profile uncertainties. A composition for a stable silicone dosimeter which can be cured quickly at elevated temperatures was found, demonstrating the potential for 3D printing of patient-specific dosimeters. However, it is suggested that another radical initiator be used in future formulations of the dosimeter.
用于验证运动和变形靶区图像引导放射治疗 (IGRT) 的可变形 3D 辐射剂量学正受到越来越多的关注。此前,已经证明了一种名为“FlexyDos3D”的灵活仿生人形 3D 剂量计的概念验证。FlexyDos3D 剂量计的一个关注点是其剂量响应不稳定性。研究了不同配方的剂量计对其稳定性的影响。通过优化硅酮基质的固化剂和基础之间的比例在 3%到 4.5%[w/w]之间,找到了一种稳定的剂量计配方。还研究了升高的固化温度和时间对剂量计性能的影响,发现对于在 120°C 下超过 1 小时的固化时间,剂量响应与固化时间无关。确定了剂量计化学组成物的 H NMR 谱图以及辐射剂量的影响。测定了氯仿在剂量计中的蒸发和扩散速率,这可能是剂量计深度剂量分布不确定度的原因。找到了一种可以在高温下快速固化的稳定硅酮剂量计的配方,展示了用于 3D 打印患者特异性剂量计的潜力。但是,建议在未来的剂量计配方中使用另一种自由基引发剂。