Corneal aberrations and reading

被引:80
作者
Buehren, T
Collins, MJ
Carney, L
机构
[1] QUT, Sch Optometry, Ctr Eye Res, Contact Lens & Visual Opt Lab, Kelvin Grove, Qld 4059, Australia
[2] Queensland Univ Technol, Brisbane, Qld, Australia
关键词
corneal topography; reading; lid forces; aberrations; refractive error;
D O I
10.1097/00006324-200302000-00012
中图分类号
R77 [眼科学];
学科分类号
100212 ;
摘要
Purpose. To investigate the effects of eyelid pressure on corneal shape and corneal aberrations during reading. Methods. Twenty young subjects with normal ocular health were recruited for the study. The experiment was conducted early in the morning, with subjects instructed not to perform any prolonged reading before the experiment. Corneal topography of one eye was measured with a videokeratoscope before reading and then again after a 60-min reading task. The natural position of the eyelids was photographed in primary gaze and during the reading task. Results. Twelve of the 20 corneas showed significant changes in central topography immediately after reading. The location of the changes corresponded closely to the position and angle of the subject's eyelids during reading. The change in shape was best described as a wave-like distortion that significantly altered some corneal wavefront Zernike coefficients. There was a significant correlation between the changes in primary vertical coma and trefoil (along 30degrees). Within the central 6 mm of the cornea, there were significant changes in the root mean square error, overall refractive power, and astigmatism. Conclusions. The changes we observed in corneal topography appear to be directly related to the force exerted by the eyelids during reading. Because the cornea is the major light-refracting surface of the eye, the optical characteristics of some eyes can be significantly changed during reading by the force of the eyelids. These findings may have important implications for the definition of refractive status and may also aid in the understanding of the relationship between reading and the development of refractive errors.
引用
收藏
页码:159 / 166
页数:8
相关论文
共 65 条
[1]   PREVALENCE OF MYOPIA AND MYOPIC PROGRESSION IN A POPULATION OF CLINICAL MICROSCOPISTS [J].
ADAMS, DW ;
MCBRIEN, NA .
OPTOMETRY AND VISION SCIENCE, 1992, 69 (06) :467-473
[2]   Topography driven photorefractive keratectomy - Results of corneal interactive programmed topographic ablation software [J].
Alessio, G ;
Boscia, F ;
La Tegola, MG ;
Sborgia, C .
OPHTHALMOLOGY, 2000, 107 (08) :1578-1587
[3]   MEASUREMENT OF MONOCHROMATIC OCULAR ABERRATIONS OF HUMAN EYES AS A FUNCTION OF ACCOMMODATION BY THE HOWLAND ABERROSCOPE TECHNIQUE [J].
ATCHISON, DA ;
COLLINS, MJ ;
WILDSOET, CF ;
CHRISTENSEN, J ;
WATERWORTH, MD .
VISION RESEARCH, 1995, 35 (03) :313-323
[4]  
BOWMAN KJ, 1978, AM J OPTOM PHYS OPT, V55, P818
[5]   Prospective analysis of changes in corneal topography after upper eyelid surgery [J].
Brown, MS ;
Siegel, IM ;
Lisman, RD .
OPHTHALMIC PLASTIC AND RECONSTRUCTIVE SURGERY, 1999, 15 (06) :378-383
[6]   Ocular microfluctuations and videokeratoscopy [J].
Buehren, T ;
Lee, BJ ;
Collins, MJ ;
Iskander, DR .
CORNEA, 2002, 21 (04) :346-351
[7]   The stability of corneal topography in the post-blink interval [J].
Buehren, T ;
Collins, MJ ;
Iskander, DR ;
Davis, B ;
Lingelbach, B .
CORNEA, 2001, 20 (08) :826-833
[8]   Corneal aberrations, monocular diplopia, and ghost images: Analysis using corneal topographical data [J].
Campbell, C .
OPTOMETRY AND VISION SCIENCE, 1998, 75 (03) :197-207
[9]  
Carney LG, 1997, INVEST OPHTH VIS SCI, V38, P311
[10]  
CARNEY LG, 1981, ACTA OPHTHALMOL, V59, P271