测定眼内人工晶状体度数

Jack T. Holladay M.D., Thomas C. Prager Ph.D., Stuart A. Long Ph.D., Charles J. Koester Ph.D., John W. Lewis M.D., Keith A. Bourgeois M.D., Terria L. Winn M.D.
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引用次数: 9

摘要

本文描述了一种方法,通过测量角膜反射图像(Purkinje-Sanson I)和前IOL反射图像(Purkinje-Sanson III)的水平尺寸来确定眼内人工晶状体(IOL)的功率,这是通过一个标准的裂口灯看到的,目标位于生物显微镜焦平面前方68 mm。水平k读数(180°)和前房深度是计算人工晶状体精确度数所需的另外两个参数。已经提供了使用这四种测量的七个表,从而消除了复杂计算的需要。为了确定该技术的准确性,选择10个植入的iol,范围从9屈光度(D)到27屈光度(D),并计算其度数;然后将这些计算值与实际的IOL度数进行比较。最大误差为0.5 D,平均误差为0.17 D。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determining intraocular lens power within the eye

A method is described for determining the power of an intraocular lens (IOL) within the eye by measuring the horizontal dimension of the corneal reflected image (Purkinje-Sanson I) and the anterior IOL reflected image (Purkinje-Sanson III) as seen through a standard slitlamp with a target positioned 68 mm anterior to the focal plane of the biomicroscope. The horizontal K-reading (at 180°) and the anterior chamber depth are the two other parameters necessary to calculate the exact power of the IOL. Seven tables that use these four measurements have been provided, eliminating the need for complex calculations. To determine the accuracy of this technique, ten implanted IOLs ranging from 9 diopters (D) to 27 D were chosen and their powers calculated; these calculated values were then compared to the actual IOL powers. The largest error was 0.5 D and the average error was 0.17 D.

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