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基于像差数据解析的人眼近视角膜补偿模拟

Simulation of the Human Myopic Eye Cornea Compensation Based on the Analysis of Aberrometric Data.

作者信息

Khorin Pavel A, Khonina Svetlana N

机构信息

Samara National Research University, Samara 443086, Russia.

Image Processing Systems Institute of RAS-Branch of the FSRC "Crystallography and Photonics" RAS, Samara 443001, Russia.

出版信息

Vision (Basel). 2023 Mar 12;7(1):21. doi: 10.3390/vision7010021.

Abstract

Various diffractive, refractive and holographic optical elements, such as diffraction gratings; microlens raster; phase plates; multi-order diffractive optical elements; adaptive mirrors; diffractive and refractive axicons; holographic multiplexes and many others are used to analyze wavefront aberrations. We shortly discuss the features (advantages and disadvantages) of various wavefront aberration sensors in the Introduction. The main part of the paper is devoted to the analysis of the weight coefficients of Zernike polynomials obtained during medical examinations of the cornea in the human eye. Using data obtained by aberrometers, the average values of the Zernike polynomial coefficients for the anterior and posterior surfaces of the healthy eye cornea and a myopic one were calculated. The original wavefront for the anterior and posterior surfaces of the cornea was restored separately, as well as the total wave aberration. For an objective assessment of the quality of vision, the corresponding point spread functions (PSFs) were calculated. We propose to compensate for the aberrations of the myopic eye, taking into account the physical features of the corneal surface. The results of numerical simulation showed that in order to improve the quality of the patient's vision, it is necessary to take into account high-order aberrations of the anterior surface of the cornea in the form of a coma of the third order and aberrations of the fourth order.

摘要

各种衍射、折射和全息光学元件,如衍射光栅;微透镜阵列;相位板;多阶衍射光学元件;自适应镜;衍射和折射轴锥镜;全息复用器等等,都被用于分析波前像差。在引言部分,我们简要讨论了各种波前像差传感器的特点(优点和缺点)。本文的主要部分致力于分析在人眼角膜医学检查过程中获得的泽尼克多项式的权重系数。利用像差仪获得的数据,计算了健康眼角膜和近视眼角膜前表面和后表面泽尼克多项式系数的平均值。分别恢复了角膜前表面和后表面的原始波前以及总波像差。为了客观评估视力质量,计算了相应的点扩散函数(PSF)。考虑到角膜表面的物理特征,我们建议对近视眼的像差进行补偿。数值模拟结果表明,为了提高患者的视力质量,有必要考虑角膜前表面以三阶彗差和四阶像差形式存在的高阶像差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abf0/10051312/1edec572a3b7/vision-07-00021-g001.jpg

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