Hamer Okka W, Völk Markus, Zorger Zorger, Feuerbach Stefan, Strotzer Michael
Department of Diagnostic Radiology, University Hospital of Regensburg, Germany.
Invest Radiol. 2003 Apr;38(4):212-20. doi: 10.1097/01.RLI.0000057032.41715.15.
Evaluation of the contrast-detail performance of an active-matrix flat-panel x-ray detector in comparison with a storage phosphor system with special regard to the potential of dose reduction.
A digital x-ray detector based on cesium iodide (CsI) and amorphous silicon (a-Si) technology was compared with a fifth-generation storage phosphor system. A lucite plate with 36 drilled holes of varying diameters and depths was used as contrast-detail phantom. At 45 kVp, 70 kVp, and 113 kVp, images at 8 different detector entrance doses ranging between 0.3 microGy and 40 microGy were obtained. On soft-copy displays, 3 masked observers evaluated the detectability of each aperture in each image according to a 5-point scale. The mean sum scores of corresponding images were compared.
For all tube voltages and detector entrance doses, the images obtained with the CsI/a-Si detector resulted in better observer contrast-detail performance as compared with the images of the storage phosphor system. The CsI/a-Si system allowed a calculated dose reduction of 39% at 45 kVp, 68% at 70 kVp, and 81% at 113 kVp as compared with the storage phosphor system, without loss of contrast-detail detectability.
Under the conditions of the chosen experimental design, the CsI/a-Si system provided a superior contrast-detail performance as compared with the storage phosphor system. The potential of dose reduction increased with rising tube voltage.
评估有源矩阵平板X射线探测器与存储磷光体系统相比的对比细节性能,特别关注剂量降低的潜力。
将基于碘化铯(CsI)和非晶硅(a-Si)技术的数字X射线探测器与第五代存储磷光体系统进行比较。使用一块带有36个不同直径和深度钻孔的有机玻璃板作为对比细节体模。在45 kVp、70 kVp和113 kVp下,获得了8种不同探测器入口剂量(范围在0.3微戈瑞至40微戈瑞之间)的图像。在软拷贝显示器上,3名掩蔽观察者根据5分制评估每个图像中每个孔径的可检测性。比较相应图像的平均总分。
对于所有管电压和探测器入口剂量,与存储磷光体系统的图像相比,使用CsI/a-Si探测器获得的图像具有更好的观察者对比细节性能。与存储磷光体系统相比,CsI/a-Si系统在45 kVp时计算得出的剂量降低了39%,在70 kVp时降低了68%,在113 kVp时降低了81%,且不损失对比细节可检测性。
在所选择的实验设计条件下,与存储磷光体系统相比,CsI/a-Si系统提供了卓越的对比细节性能。剂量降低的潜力随着管电压的升高而增加。