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切尔宁像差测量原理。

Principles of Tscherning aberrometry.

作者信息

Mrochen M, Kaemmerer M, Mierdel P, Krinke H E, Seiler T

机构信息

Department of Ophthalmology at the University of Zurich, Switzerland.

出版信息

J Refract Surg. 2000 Sep-Oct;16(5):S570-1. doi: 10.3928/1081-597X-20000901-16.

Abstract

Higher-order optical errors of the human eye are often responsible for reduced visual acuity in spite of an optimal spherical or cylindrical refraction. These optical aberrations are of natural origin or can result from operations on the eye involving optical structures. The presented wavefront analyzer is based on Tscherning's aberroscope. A collimated laser beam illuminates a mask with regular matrix pin holes which forms a bundle of thin parallel rays. These rays form a retinal spot pattern on the retina that is more or less distorted according to the optical errors of the eye. This retinal spot pattern is imaged onto the sensor of a low-light CCD camera by indirect ophthalmoscopy. The deviations of all spots from their ideal regular positions are measured by means of a personal computer, and from these values the optical aberrations are computed in the form of Zernike polynomials up to the 8th order.

摘要

尽管人眼的球面或柱面屈光处于最佳状态,但高阶光学误差常常导致视力下降。这些光学像差源于自然,也可能由涉及眼部光学结构的手术引起。本文介绍的波前分析仪基于切尔宁像差计。准直激光束照射带有规则矩阵针孔的掩膜,形成一束细平行光线。这些光线在视网膜上形成或多或少因眼睛光学误差而扭曲的视网膜光斑图案。通过间接检眼镜将此视网膜光斑图案成像到低照度CCD相机的传感器上。利用个人计算机测量所有光斑相对于其理想规则位置的偏差,并根据这些值以泽尼克多项式的形式计算高达8阶的光学像差。

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