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使用数字图像处理技术对角膜应变、厚度和曲率进行体外测量。

In vitro measurement of corneal strain, thickness, and curvature using digital image processing.

作者信息

Hjortdal J O, Jensen P K

机构信息

Department of Ophthalmology, Arhus University Hospital, Denmark.

出版信息

Acta Ophthalmol Scand. 1995 Feb;73(1):5-11. doi: 10.1111/j.1600-0420.1995.tb00004.x.

Abstract

A video camera, a microscope, and a PC-based digital image processing board were assembled for in vitro studies of corneal biomechanics. Central tangential corneal strain was determined by placing pairs of tiny mercury droplets on the epithelial surface and on the endothelial surface of the cornea. A distance of 3.2 mm could be determined with a standard deviation of 1.2 micron. Central corneal radius of curvature was measured from digital traces of the corneal surface contour. The standard deviation on estimating the radius of an 8 mm steel sphere was 15 microns. Corneal thickness was measured by digital optical pachometry. The standard deviation on measuring a thickness of 1 mm was 4.6 microns. The corneal extensibility was investigated in a total of 10 enucleated human eyes with increased corneal hydration. Tension was applied by varying the intraocular pressure from 2 to 100 mmHg with a column of isotonic saline. The epithelial side corneal strain and the increase in corneal curvature were approximately 1% for a change in intraocular pressure from 2 to 100 mmHg. When a high intraocular pressure was kept constant for 2 h the corneal thickness, radius of curvature, and the epithelial side strain gradually decreased, whereas the endothelial side strain increased. The elastic and visco-elastic behaviour of the human cornea was found to be closely related to changes in corneal hydration. We found digital image processing useful for in vitro biomechanical studies of the cornea.

摘要

组装了一台摄像机、一台显微镜和一块基于个人电脑的数字图像处理板,用于角膜生物力学的体外研究。通过在角膜上皮表面和内皮表面放置成对的微小汞滴来测定中央角膜切线应变。可以确定3.2毫米的距离,标准偏差为1.2微米。从角膜表面轮廓的数字轨迹测量中央角膜曲率半径。估计一个8毫米钢球半径的标准偏差为15微米。通过数字光学测厚法测量角膜厚度。测量1毫米厚度的标准偏差为4.6微米。共对10只角膜水化增加的摘除人眼进行了角膜伸展性研究。通过用等渗盐柱将眼压从2 mmHg改变到100 mmHg来施加张力。眼压从2 mmHg变化到100 mmHg时,上皮侧角膜应变和角膜曲率增加约1%。当高眼压保持2小时不变时,角膜厚度、曲率半径和上皮侧应变逐渐减小,而内皮侧应变增加。发现人角膜的弹性和粘弹性行为与角膜水化的变化密切相关。我们发现数字图像处理对角膜的体外生物力学研究很有用。

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