Cowen A R, Workman A, Price J S
University of Leeds, Academic Unit of Medical Physics, Leeds General Infirmary, UK.
Br J Radiol. 1993 Apr;66(784):332-45. doi: 10.1259/0007-1285-66-784-332.
Currently photostimulable phosphor computed radiography (PPCR) promises to be the digital X-ray image acquisition technology of choice for classical radiography (i.e. X-ray examinations of natural anatomy). For the last two years we have been carrying out a physical evaluation of modern PPCR technology and some of our findings relevant to general radiographic applications are reviewed here. Topics covered include the function of the auto-reader system and the reliability of image reproduction, the radiation exposure requirement and physical image quality. The latter is based upon both objective and subjective measures of image quality. These studies have yielded a favourable comparison of the image quality of modern PPCR technology with that of medium-speed and fast radiographic screen-film combinations. The major advantages of PPCR appear to be the maintenance of high imaging efficiency (DQE) over a much wider range of signal levels than film and consistent image acquisition and presentation independent of exposure level. In general radiographic applications no major limitations due to the comparatively modest limiting spatial resolution of PPCR [maximum limiting resolution = 5 line-pair mm-1] have been experienced. Digital image enhancement is a central element of PPCR image reproduction. The authors believe that advances in image enhancement algorithms remain a potential area for further improving the presented quality of PPCR images.
目前,光激励荧光体计算机X线摄影(PPCR)有望成为传统放射摄影(即对自然解剖结构进行X线检查)首选的数字X线图像采集技术。在过去两年里,我们一直在对现代PPCR技术进行物理评估,在此回顾一些我们与一般放射摄影应用相关的研究结果。涵盖的主题包括自动读取系统的功能和图像再现的可靠性、辐射暴露要求和物理图像质量。后者基于图像质量的客观和主观测量。这些研究对现代PPCR技术与中速和高速放射摄影增感屏-胶片组合的图像质量进行了有利的比较。PPCR的主要优点似乎是在比胶片宽得多的信号水平范围内保持高成像效率(量子检测效率),并且图像采集和呈现与曝光水平无关。在一般放射摄影应用中,尚未遇到因PPCR相对适中的极限空间分辨率[最大极限分辨率 = 5线对/mm]而产生的重大限制。数字图像增强是PPCR图像再现的核心要素。作者认为,图像增强算法的进步仍然是进一步提高PPCR图像呈现质量的潜在领域。