Department of Radiology, School of Medicine, Iwate Medical University, 2-1-1 Idaidori, Yahaba, Iwate 028-3695, Japan.
Department of Radiation Oncology, Iwate Medical University Hospital, Iwate Medical University, 2-1-1 Idaidori, Yahaba, Iwate 028-3695, Japan.
Rev Sci Instrum. 2021 Dec 1;92(12):123101. doi: 10.1063/5.0061061.
Herein, we evaluated a capacitor dosimeter under development by a manufacturer, which is designed to monitor the entrance dose in x-ray diagnosis and comprises a silicon x-ray diode (Si-XD), a 0.1 µF capacitor, and a dosimeter dock. The Si-XD is a high-sensitivity photodiode optimized for x-ray detection. The dosimeter was charged to 3.30 V using the dock before x-ray irradiation. The charging voltage was reduced by photocurrents flowing through the Si-XD during irradiation, and the discharging voltage was measured. For the fundamental characterization of this capacitor dosimeter, we investigated the x-ray tube-current and tube-voltage dependences of the measured dose using an industrial x-ray tube; the angular dependence was also investigated. A commercially available semiconductor dosimeter (RaySafe ThinX) was used for dose calibration. The doses were proportional to the tube current at a constant tube voltage of 100 kV and increased with increasing tube voltage at a constant tube current of 1.0 mA. The dose difference with respect to the commercially available semiconductor dosimeter was within 1.0% when the tube current was varied and it was within 3.0% when the tube voltage was varied. In the angular dependence measurement, a difference of up to 6.0% was observed as the angle varied from 0° to 355° in steps of 5°. The dose-calibration results indicated that the determination of the initial charging voltage was important for dose conversion using the capacitor dosimeter.
在此,我们评估了制造商正在开发的一种电容器剂量计,该剂量计旨在监测 X 射线诊断中的入射剂量,由硅 X 射线二极管 (Si-XD)、0.1 µF 电容器和剂量计基座组成。Si-XD 是一种针对 X 射线检测进行了优化的高灵敏度光电二极管。在 X 射线照射之前,使用基座将剂量计充电至 3.30 V。在照射过程中,通过 Si-XD 中的光电流对充电电压进行了降低,并测量了放电电压。为了对这种电容器剂量计进行基本特性表征,我们使用工业 X 射线管研究了测量剂量与 X 射线管电流和管电压的关系;还研究了角度依赖性。使用市售半导体剂量计(RaySafe ThinX)进行剂量校准。在管电压为 100 kV 恒定的情况下,剂量与管电流成正比,在管电流为 1.0 mA 恒定的情况下,剂量随管电压的增加而增加。当管电流变化时,与市售半导体剂量计的剂量差异在 1.0%以内,当管电压变化时,剂量差异在 3.0%以内。在角度依赖性测量中,当角度从 0°以 5°的步长变化到 355°时,观察到最大 6.0%的差异。剂量校准结果表明,对于使用电容器剂量计进行剂量转换,确定初始充电电压非常重要。