OPTICAL DESIGN OF LOW INDEX INTRAOCULAR LENSES

被引:5
作者
ATCHISON, DA
机构
关键词
aberration; asphericity; decentration; image quality; intraocular lens; optical design; pseudophakia; tilt;
D O I
10.1016/S0886-3350(13)80825-5
中图分类号
R77 [眼科学];
学科分类号
100212 ;
摘要
The effect of shape of low index (1.43) intraocular lenses on optical performance of pseudophakic eyes was investigated. A range of image quality criteria was used. The optimum lens for on-axis vision was biconvex, with the more curved surface facing the cornea. For small off-axis angles, optimum lens shape varied with the ocular parameters. A recommended range of intraocular lenses is plano-convex (with the curved shape facing the cornea) to equi-convex. Compared with conventional poly(methyl methacrylate) lenses (1.492 index), optimum lens shapes of low index lenses were less sensitive to changes in eye parameters and lens fitting position. The magnitudes of aberration of pseudophakic eyes varied more with changes in lens shape and lens position in low index lenses than in conventional lenses.
引用
收藏
页码:292 / 300
页数:9
相关论文
共 11 条
[1]  
Atchison DA, Refractive errors induced by displacement of intraocular lenses within the pseudophakic eye, Optom Vis Sci, 66, pp. 146-152, (1989)
[2]  
Atchison DA, Third-order aberrations of pseudophakic eyes, Ophthalmic Physiol Opt, 9, pp. 205-211, (1989)
[3]  
Atchison DA, Optical design of intraocular lenses. I. Onaxis performance, Optom Vis Sci, 66, pp. 492-506, (1989)
[4]  
Atchison DA, Optical design of intraocular lenses. II. Off axis performance, Optom Vis Sci, 66, pp. 579-590, (1989)
[5]  
Atchison DA, Optical design of intraocular lenses. III. Off axis performance in the presence of lens displacement, Optom Vis Sci, 66, pp. 671-681, (1989)
[6]  
Atchison DA, Optical design of poly(methyl methacrylate) intraocular lenses, J Cataract Refract Surg, 16, pp. 178-187, (1990)
[7]  
Allarakhia L, Knoll RL, Lindstrom RL, Soft intraocular lenses, Journal of Cataract & Refractive Surgery, 13, pp. 607-620, (1987)
[8]  
Gullstrand A, Appendix, Helmholtz's Handbuch der Physiologischen Optik, 1, (1924)
[9]  
Sorsby A, Leary GA, Richards MJ, Correlation ametropia and component ametropia, Vision Res, 2, pp. 309-313, (1962)
[10]  
Kiely PM, Smith G, Carney LG, The mean shape of the human cornea, Optica Acta, 26, pp. 1027-1040, (1982)