Picot P A, Cardinal H N, Fenster A
Imaging Research Laboratories, John P. Robarts Research Institute, University of Western Ontario, London, Canada.
Med Phys. 1990 Nov-Dec;17(6):983-8. doi: 10.1118/1.596550.
Many applications in radiography require, or would benefit from, the ability to translate, i.e. move, an optical image in the detector plane. In this paper, we describe the design and characterization of a prism-based optical image translator for insertion into existing XRII-video imaging systems. A pair of prisms rotatable about the optical axis form a very compact in-line optical image translator for installation in the parallel light path between an x-ray image intensifier and its video camera. Rotation of the prisms translates the XRII optical image on the camera target. With the addition of x-ray and light collimators to limit the image to a single video line, x-ray streak images may be acquired. By rotating an object in the x-ray beam during a streak, a complete computed tomography (CT) data set may be acquired. This image translator can translate an image anywhere in the focal plane of a 50-mm-output lens within a 40-mm-diam circle. The prisms have an aperture of 50 mm, permitting an optical speed of F/2 with a 50-mm output lens. The design is insensitive to angular alignment errors. This image translator is achromatic, since the spectral width of the output phosphorus of image intensifiers is sufficient to introduce blurring in a nonacrhomatic design. A prism-based image translator introduces image distortion, since the prisms do not operate at minimum deviation. The distortion is less than 4% over all parts of a typical detector area, and less than 1% in the central region of the image.(ABSTRACT TRUNCATED AT 250 WORDS)
许多射线照相应用都需要能够在探测器平面内平移(即移动)光学图像,或者会从中受益。在本文中,我们描述了一种基于棱镜的光学图像平移器的设计与特性,该平移器可插入现有的X射线影像增强器 - 视频成像系统中。一对可绕光轴旋转的棱镜构成了一个非常紧凑的同轴光学图像平移器,用于安装在X射线影像增强器与其摄像机之间的平行光路中。棱镜的旋转可使X射线影像增强器的光学图像在摄像机靶面上平移。通过添加X射线和光准直器将图像限制在单条视频线上,便可采集X射线条纹图像。在条纹采集过程中,通过在X射线束中旋转物体,可采集完整的计算机断层扫描(CT)数据集。该图像平移器可在直径为40毫米的圆内,将图像平移至50毫米输出镜头焦平面内的任何位置。棱镜的孔径为50毫米,搭配50毫米输出镜头时可实现F/2的光学速度。该设计对角度对准误差不敏感。由于图像增强器输出磷光体的光谱宽度足以在非消色差设计中引入模糊,所以该图像平移器是消色差的。基于棱镜的图像平移器会引入图像失真,因为棱镜并非在最小偏向角下工作。在典型探测器区域的所有部分,失真小于4%,在图像中心区域则小于1%。(摘要截取自250字)