Literature DB >> 17466860

Distribution of corneal spherical aberration in a comprehensive ophthalmology practice and whether keratometry can predict aberration values.

George H H Beiko1, Wolfgang Haigis, Andreas Steinmueller.   

Abstract

PURPOSE: To determine the spherical aberration of the cornea in the general population and whether keratometry readings are predictive of corneal spherical aberration values.
SETTING: Private comprehensive ophthalmology practice.
METHODS: Corneal spherical aberration and keratometry readings were measured in 696 normal eyes of patients presenting for ocular examination to a comprehensive ophthalmologist. The Easygraph (Oculus) was used to measure the corneal topography and keratometry readings in patients with healthy corneas. The analysis was performed using software in the Easygraph to determine the Zernike coefficients for each cornea. The keratometry and spherical aberration (Zernike coefficient Z(4)(0)) were then statistically analyzed.
RESULTS: The corneal spherical aberration, analyzed by the Kolmogorov-Smirnov test for normality, fit a normal Gaussian distribution. The spherical aberration value was (+0.274 +/- 0.089) x 10(-3), measured at an optical zone of 6.0 mm. A very weak correlation was found between corneal spherical aberration and central keratometry readings of the cornea: Corneal spherical aberration = {0.017 x (mean keratometry) - 0.457} x 10(-3).
CONCLUSIONS: The corneal spherical aberration distribution was a normal Gaussian curve. However, the mean value was significantly different when the sex of the patient was considered. Corneal keratometry readings could not be reliably used to predict corneal spherical aberration.

Entities:  

Mesh:

Year:  2007        PMID: 17466860     DOI: 10.1016/j.jcrs.2007.01.035

Source DB:  PubMed          Journal:  J Cataract Refract Surg        ISSN: 0886-3350            Impact factor:   3.351


  12 in total

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Review 2.  Personalized aspheric intraocular lens implantation based on corneal spherical aberration: a review.

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3.  Corneal spherical aberration in Saudi population.

Authors:  Tarfah M Al-Sayyari; Samah M Fawzy; Ahmed A Al-Saleh
Journal:  Saudi J Ophthalmol       Date:  2014-03-18

4.  Repeatability of i.Profiler for measuring wavefront aberrations in healthy eyes.

Authors:  Xuan Liao; Mei-Jie Wang; Qing-Qing Tan; Chang-Jun Lan
Journal:  Int Ophthalmol       Date:  2022-04-05       Impact factor: 2.029

5.  Spherical aberration yielding optimum visual performance: evaluation of intraocular lenses using adaptive optics simulation.

Authors:  John S Werner; Sarah L Elliott; Stacey S Choi; Nathan Doble
Journal:  J Cataract Refract Surg       Date:  2009-07       Impact factor: 3.351

6.  Correlation between contrast sensitivity and higher-order aberration based on pupil diameter after cataract surgery.

Authors:  Takefumi Yamaguchi; Kazuno Negishi; Kazuhiko Ohnuma; Kazuo Tsubota
Journal:  Clin Ophthalmol       Date:  2011-12-07

7.  Influences of 27-Gauge Vitrectomy on Corneal Topographic Conditions.

Authors:  Takafumi Hirashima; Takao Utsumi; Miou Hirose; Hideyasu Oh
Journal:  J Ophthalmol       Date:  2017-08-27       Impact factor: 1.909

8.  Distribution of corneal spherical aberration in a Tanzanian population.

Authors:  Hiroki Asano; Takahiro Hiraoka; Yusuke Seki; Teppei Shibata; Hiromi Osada; Takanori Saruta; Natsuko Hatsusaka; Fukumi Fujikake; Yoshiaki Tabata; Cellina Mhina; Anna Sanyiwa; Tetsuro Oshika; Hiroshi Sasaki
Journal:  PLoS One       Date:  2019-09-12       Impact factor: 3.240

9.  Distribution of corneal and ocular spherical aberrations in eyes with cataract in the Taiwanese population.

Authors:  Yung-Jen Lai; Shu-I Yeh; Huey-Chuan Cheng
Journal:  Taiwan J Ophthalmol       Date:  2015-05-12

10.  Factors associated with corneal high-order aberrations before and after femtosecond laser-assisted in situ keratomileusis.

Authors:  Jun Zeng; Gongpu Lan; Min Zhu; Kai Sun; Qun Shi; Guoqing Ma; Quan Liu
Journal:  Ann Transl Med       Date:  2021-06
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