Shape visualization of the anterior and posterior human cornea in vivo.

German journal of ophthalmology Pub Date : 1996-11-01
B R Masters
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引用次数: 0

Abstract

A series of 60 reflected-light, rotating slit images of the human cornea in vivo are acquired with a rotating Scheimpflug camera. Each single acquired optical slice on a single meridian contains the shape of the anterior and posterior surfaces of the cornea. These 60 images are mathematically transformed into a three-dimensional volume that can be visualized on any meridian, including those images on meridians that have not been selected during the image-acquisition process. The optical distortions and aberrations of both the camera system and the eye are not included in this study using a rotating slit camera to determine the shape of both anterior and posterior corneal surfaces. The method presents the view of the anterior and posterior cornea (out to the midperipheral region) and a reference plane of the iris reflection. Further development of this technique may find clinical applications in corneal refractive surgery.

活体人角膜前后形态可视化。
用旋转Scheimpflug相机获得了60组人体角膜的反射光、旋转狭缝图像。在单个子午线上获得的每个单独的光学切片包含角膜的前后表面的形状。这60幅图像被数学转换成一个三维体,可以在任何子午线上可视化,包括那些在图像采集过程中未被选中的子午线上的图像。本研究不包括相机系统和眼睛的光学畸变和像差,使用旋转狭缝相机来确定前、后角膜表面的形状。该方法给出了前、后角膜(向外至中外周区)的视图和虹膜反射的参考平面。该技术的进一步发展可能在角膜屈光手术中得到临床应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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