Matsuo Satoru, Morishita Junji, Katafuchi Tetsuro, Fujita Hiroshi
Department of Radiology, Shiga University of Medical Science.
Nihon Hoshasen Gijutsu Gakkai Zasshi. 2012;68(5):563-72. doi: 10.6009/jjrt.2012_jsrt_68.5.563.
We investigated whether the use of a newly developed columnar-crystal-type photostimulable-phosphor plate (CP1M200, referred to as system C) helps to provide improved edge-enhanced effect in phase contrast imaging. Physical characteristics of 2 conventional particulate-crystal-type photostimulable-phosphor plates (RP-5PM, referred to as system A and RP-6M, referred to as system B) and system C were measured. Then, an acrylic plate phantom and RMI152 phantom were imaged using 3 types of plates, and the edge-enhancement effects were evaluated based on the profile curve of the acrylic plate phantom. Visual evaluation of the RMI152 phantom images was conducted. The results showed that the modulation transfer function (MTF) of system C was superior to those of the other systems. The WS of system C was superior to those of the other systems in the low frequency band region, and inferior to those of the other systems in the high frequency band region. The presence of an edge-enhanced image was not detectable in the profile curve of the acrylic plate in system A, although that was shown in systems B and C due to their excellent sharpness. In the visual image evaluation of the RMI152 phantom, image quality of system C was superior to those of the other systems. Phase contrast imaging with a digital detector of a columnar-crystal-type photostimulable-phosphor plate is considered to provide improved edge-enhancement over that of conventional plates.
我们研究了使用新开发的柱状晶体型光激励发光板(CP1M200,称为系统C)是否有助于在相衬成像中提供更好的边缘增强效果。测量了2种传统颗粒晶体型光激励发光板(RP - 5PM,称为系统A和RP - 6M,称为系统B)以及系统C的物理特性。然后,使用这3种板对丙烯酸板模型和RMI152模型进行成像,并基于丙烯酸板模型的轮廓曲线评估边缘增强效果。对RMI152模型图像进行了视觉评估。结果表明,系统C的调制传递函数(MTF)优于其他系统。系统C的维纳频谱(WS)在低频带区域优于其他系统,在高频带区域则低于其他系统。在系统A的丙烯酸板轮廓曲线中未检测到边缘增强图像,而在系统B和C中由于其出色的清晰度则显示出边缘增强图像。在对RMI152模型的视觉图像评估中,系统C的图像质量优于其他系统。与传统板相比,使用柱状晶体型光激励发光板的数字探测器进行相衬成像被认为能提供更好的边缘增强效果。