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晶状体像差对人工晶状体自适应光学模拟的影响。

Effect of Crystalline Lens Aberrations on Adaptive Optics Simulation of Intraocular Lenses.

作者信息

Villegas Eloy A, Manzanera Silvestre, Lago Carmen M, Hervella Lucía, Sawides Lucie, Artal Pablo

出版信息

J Refract Surg. 2019 Feb 1;35(2):126-131. doi: 10.3928/1081597X-20181212-02.

Abstract

PURPOSE

To evaluate the impact of the lens aberrations on the adaptive optics visual simulation of pseudophakic intraocular lens (IOL) profiles.

METHODS

In 20 right phakic eyes, lens higher order aberrations (HOAs) were calculated as the whole eye minus the corneal aberrations. Visual simulation using low and high contrast corrected distance visual acuity (CDVA) testing was carried out with the VAO instrument (Voptica, SL, Murcia, Spain), considering three optical conditions of the lens: removing HOA (no lens-HOA), removing spherical aberration (no lens-SA), and with lens HOA (natural condition). In addition, a through-focus visual simulation of a trifocal diffractive IOL profile with high contrast CDVA was also measured in two conditions: no lens-HOA and natural condition. Three different pupil sizes (3, 4.5, and 6 mm) were tested for all conditions.

RESULTS

There were no significant intersubject differences between the three optical conditions and in the IOL simulation for all pupil sizes (P > .05). For 4.5- and 6-mm pupils, mean VA values of the no-lens SA and no lens-HOA conditions were similar and slightly worse than those of the natural condition. Individual differences between the no lens-HOA condition and the other two optical conditions, estimated as 95% limits of agreement, were acceptable for 3-mm pupil but worse as pupil diameter increased.

CONCLUSIONS

The effect of lens aberrations on visual simulation is imperceptible for a small pupil diameter of 3 mm. Although the increment of pupil size increases the probability of patients with significant visual impact of lens HOAs, the mean intersubject VA differences are negligible. [J Refract Surg. 2019;35(2):126-131.].

摘要

目的

评估晶状体像差对人工晶状体(IOL)轮廓的自适应光学视觉模拟的影响。

方法

在20只正视眼的右眼,将晶状体高阶像差(HOA)计算为全眼像差减去角膜像差。使用VAO仪器(Voptica,SL,穆尔西亚,西班牙)进行低对比度和高对比度矫正远视力(CDVA)测试的视觉模拟,考虑晶状体的三种光学条件:去除HOA(无晶状体-HOA)、去除球差(无晶状体-SA)和存在晶状体HOA(自然状态)。此外,还在两种条件下测量了三焦点衍射IOL轮廓的全聚焦视觉模拟与高对比度CDVA:无晶状体-HOA和自然状态。对所有条件测试了三种不同的瞳孔大小(3、4.5和6毫米)。

结果

对于所有瞳孔大小,三种光学条件之间以及IOL模拟中受试者间均无显著差异(P>.05)。对于4.5毫米和6毫米的瞳孔,无晶状体SA和无晶状体-HOA条件下的平均视力值相似,且略低于自然状态。无晶状体-HOA条件与其他两种光学条件之间的个体差异,以95%一致性界限估计,对于3毫米瞳孔是可接受的,但随着瞳孔直径增加而变差。

结论

对于3毫米的小瞳孔直径,晶状体像差对视觉模拟的影响难以察觉。尽管瞳孔大小增加会增加晶状体HOA对患者产生显著视觉影响的可能性,但受试者间平均视力差异可忽略不计。[《屈光手术杂志》。2019;35(2):126 - 131。]

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