Teramoto Atsushi, Kajihara Takahiko, Suzuki Shoichi, Kinoshita Kazuo, Tsuzaka Masatoshi, Fujita Hiroshi
Faculty of Radiological Technology, School of Health Sciences, Fujita Health University, 1-98 Dengakugakubo, Kutsukake-cho, Toyoake, Aichi, Japan.
Radiol Phys Technol. 2011 Jul;4(2):164-72. doi: 10.1007/s12194-011-0117-2. Epub 2011 Mar 17.
The characteristics of flat-panel detectors (FPD) are degraded by exposure to radiation. Degradation in a FPD progresses locally and has a nonlinear relationship to the radiation dose. In order to manage FPD systems properly, one must perform quality control (QC) such as evaluation of image degradation. However, no evaluation method for degradation has been established. In this paper, we first review the structure and degradation mechanism of FPDs, and then we propose a daily QC system for FPDs. To evaluate the degradation of FPDs, we investigated the number of defective pixels and lines, as well as the offset level of the pixel output. Furthermore, we developed daily QC software for FPD that can evaluate the image quality and is operationally simple. In the experiments, an indirect-conversion type FPD was evaluated by our proposed system. The offset level of FPD increased exponentially with X-ray exposure; no trends were seen for the number of defective pixels and defective lines. The required time for the evaluation of an FPD was about 1 min, and no special skills were needed for the analysis. These results indicate that our system may be useful for daily QC of FPDs.
平板探测器(FPD)的特性会因辐射照射而退化。FPD的退化是局部发生的,并且与辐射剂量呈非线性关系。为了正确管理FPD系统,必须进行质量控制(QC),例如评估图像退化情况。然而,尚未建立退化评估方法。在本文中,我们首先回顾了FPD的结构和退化机制,然后提出了一种FPD的日常QC系统。为了评估FPD的退化情况,我们研究了缺陷像素和线条的数量以及像素输出的偏移水平。此外,我们开发了用于FPD的日常QC软件,该软件可以评估图像质量且操作简单。在实验中,通过我们提出的系统对间接转换型FPD进行了评估。FPD的偏移水平随X射线照射呈指数增加;缺陷像素和缺陷线条的数量未呈现出趋势。评估一个FPD所需的时间约为1分钟,分析不需要特殊技能。这些结果表明我们的系统可能对FPD的日常QC有用。