眼和多焦隐形眼镜引起的像差对视觉表现的综合影响:中心距离与中心近距离设计

D. Lopes-Ferreira, P. Fernandes, A. Queirós, J. González-Méijome
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引用次数: 17

摘要

目的:评价老花眼受试者在高、低对比度条件下配戴多焦软性接触镜(MFCL) 15天后固有眼像差和诱发性眼像差的综合影响及其对远近视力的影响。方法:选取40名平均年龄为48.7±3.4岁,平均视差为1.53±0.58 D的老花眼患者,安装百富美多焦(CooperVision)视镜。测量包括距离和近单眼高(100%)和低对比度(10%)logMAR视力(VA)。用Hartmann-Shack像差仪(IRX3, Imagine Eyes)测量眼像差,并对2 mm和最大圆形自然瞳孔进行分析。结果:优势眼近距离视差显著高于优势眼远距离视差,而非优势眼近距离视差显著高于优势眼(P<0.05)。在2 mm的优势眼中,球样像差(P=0.027)和高阶像差(HOA)显著增加(P=0.002)。非主视眼的球样像差(P=0.001)、彗形像差(P=0.006)和HOA (P=0.004)也显著增加。在最大圆形自然瞳孔大小下,优势眼垂直彗差显著降低(P=0.018),而非优势眼球形和彗差显著增加(P=0.007)。优势眼垂直昏迷与高对比度VA呈显著负相关(Rho= - 0.405, P=0.011);而在非优势眼,高对比度(Rho=0.556, P<0.001)和低对比度(Rho=0.448, P=0.005)下,继发性散光与距离VA有显著相关。结论:MFSCL的眼内视觉表现取决于显性和非显性设计引起的高阶像差以及佩戴者的固有像差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combined Effect of Ocular and Multifocal Contact Lens Induced Aberrations on Visual Performance: Center-Distance Versus Center-Near Design
Purpose: To evaluate the combined effects of inherent ocular aberrations and induced aberrations with a multifocal soft contact lens (MFCL) after 15 days of lens wear in presbyopic participants and their influence on visual performance at distance and near under high and low contrast conditions. Methods: Forty presbyopic participants (mean age, 48.7±3.4) presenting a mean addition of 1.53±0.58 D were fitted with Biofinity Multifocal (CooperVision) and included in the study. Measurements comprised distance and near monocular high (100%) and low contrast (10%) logMAR visual acuity (VA). Ocular aberrations were obtained with Hartmann–Shack aberrometer (IRX3, Imagine Eyes) and analyzed for 2 mm and maximum round natural pupil. Results: Distance VA was significantly higher in dominant eye, whereas near VA was significantly better in the non-dominant eye (P<0.05 in all conditions). For a 2-mm pupil in the dominant eye fitted with MFCL, spherical-like aberration significantly increased (P=0.027) so as higher-order aberrations (HOA) (P=0.002). A significant increase was also observed in spherical-like aberrations (P=0.001), coma-like aberrations (P=0.006) and HOA (P=0.004) in non-dominant eye. For the maximum round natural pupil size, a significant decrease in vertical coma was observed (P=0.018) in dominant eye, whereas a significant increase in spherical-like (P<0.001) and coma-like aberrations (P=0.007) was observed in non-dominant eye. A negative significant correlation was found between vertical coma and high contrast VA (Rho=−0.405, P=0.011) in dominant eye; whereas in non-dominant eye, a significant correlation was found between induced secondary astigmatism and distance VA under high (Rho=0.556, P<0.001) and low contrast (Rho=0.448, P=0.005). Conclusions: On-eye visual performance of MFSCL is dependent on the high-order aberrations induced by dominant and non-dominant design coupled with the wearer's inherent aberrations.
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