Department of Physics, Queen's University, Kingston, Ontario, Canada.
Phys Med Biol. 2011 Mar 7;56(5):1259-79. doi: 10.1088/0031-9155/56/5/003. Epub 2011 Feb 1.
This work develops imaging protocols for improved dose readout of a Fricke-xylenol orange-gelatin (FXG) gel-filled 1 L polyethylene terephthalate (PETE) jar dosimeter using a commercial Vista(TM) cone-beam optical computed tomography (CT) scanner from Modus Medical Devices Inc. (London, ON, Canada). To ensure good management of light source-detector stability, it was determined that (a) a minimum of 2 h warm-up time is necessary prior to dosimeter scanning, (b) the light source should be kept on until the completion of the last data scan except for the minimum amount of time required to acquire dark field images, and (c) the optional Vista software projection image normalization routine should be used in image reconstruction. The institution of dosimeter scan time and temperature control was strongly indicated from the experiments. A standard post-irradiation wait time of 30 min measured to within ±30 s was established to minimize the measurement uncertainties due to dosimeter development and diffusion. To alleviate thermochromic behavior leading to inaccurate dose readout, holding bath warm up and pre-scan temperature adjustment procedures were developed to control dosimeter temperature to within ±0.2 °C. The possibility of stray light minimizing protocols was also investigated and deemed to be unnecessary. The largest significant sources of stray light in the system were identified as being due to angled scatter from the dosimeter gelatin matrix and refraction from the jar wall interfaces. It was concluded that these phenomena would be better addressed through dosimeter modification and an inter-jar dose-to-attenuation calibration methodology, rather than by setting additional imaging protocols.
这项工作开发了成像协议,以提高使用加拿大伦敦 Modus Medical Devices 公司的商业 Vista(TM)锥形束光计算机断层扫描(CT)系统对填充有 Fricke-二甲苯酚橙-明胶(FXG)凝胶的 1 升聚对苯二甲酸乙二醇酯(PETE)罐剂量计的剂量读出进行改进。为了确保光源-探测器稳定性得到良好管理,确定了(a)在对剂量计进行扫描之前,需要至少预热 2 小时,(b)除了获取暗场图像所需的最短时间外,光源应保持开启,直到最后一个数据扫描完成,以及(c)应在图像重建中使用可选的 Vista 软件投影图像归一化例程。实验强烈表明需要对剂量计扫描时间和温度进行控制。建立了标准的辐照后等待时间为 30 分钟,精度在±30 秒以内,以最大限度地减少由于剂量计的发展和扩散而导致的测量不确定度。为了减轻导致剂量计读数不准确的热致变色行为,开发了保温浴预热和预扫描温度调整程序,以将剂量计温度控制在±0.2°C 以内。还研究了减少杂散光的可能性,并认为这是不必要的。系统中最大的杂散光源被确定为来自剂量计明胶基质的角度散射和罐壁界面的折射。结论认为,这些现象可以通过剂量计修改和罐间剂量衰减校准方法来更好地解决,而不是通过设置额外的成像协议来解决。