Lam K L, Chan H P, Doi K
Kurt Rossmann Laboratories for Radiologic Image Research, Department of Radiology, University of Chicago, Illinois 60637.
Med Phys. 1988 Nov-Dec;15(6):838-45. doi: 10.1118/1.596199.
We have studied the effect of real-time optical image processing (OIP) in an image intensifier/television (II-TV) radiographic imaging system by using a liquid-crystal display (LCD) placed between the II and the TV camera. The LCD compresses the dynamic range of the transmitted image by modulating the spatial distribution of the light intensity of the image from the output phosphor of the II. The degree of dynamic-range compression can be designed so that the dependence of the signal-to-noise ratio (SNR) of the LCD-TV system on x-ray intensity matches that of the quantum noise. We measured the physical properties of an LCD and evaluated its capability for OIP. Our experimental results demonstrate that it is feasible to use an LCD to compress the dynamic range and to improve the SNR of the image. The advantages of implementing OIP with an LCD in image acquisition systems in which a TV camera is used are discussed.
我们通过在图像增强器/电视(II-TV)射线成像系统中使用置于图像增强器和电视摄像机之间的液晶显示器(LCD),研究了实时光学图像处理(OIP)的效果。该液晶显示器通过调制来自图像增强器输出荧光屏的图像光强空间分布,压缩透射图像的动态范围。动态范围压缩程度可以设计成使液晶显示器-电视系统的信噪比(SNR)对X射线强度的依赖性与量子噪声的依赖性相匹配。我们测量了液晶显示器的物理特性并评估了其光学图像处理能力。我们的实验结果表明,使用液晶显示器压缩动态范围并提高图像信噪比是可行的。文中还讨论了在使用电视摄像机的图像采集系统中采用液晶显示器进行光学图像处理的优点。