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眼内透镜的视觉相关台架上焦点分析

Visually relevant on-bench through-focus analysis of intraocular lenses.

作者信息

Ginis Harilaos S, Tsoukalas Spyridon, Christaras Dimitrios, Artal Pablo

机构信息

Diestia Systems PC, Athens, Greece.

Laboratorio de Óptica, Universidad de Murcia, Campus de Espinardo, 30100 Murcia, Spain.

出版信息

Biomed Opt Express. 2024 Nov 27;15(12):7056-7065. doi: 10.1364/BOE.540034. eCollection 2024 Dec 1.

Abstract

Cataract surgery involves the implantation of an intraocular lens (IOL) to replace the opacified crystalline lens. Monofocal IOLs, the most common type, are intended to have the eye in focus at a given distance, usually at infinity. Simultaneous vision IOLs (SVIOLs) and extended depth of focus (EDOF) aim to minimize postoperative dependence on spectacles by providing either multiple foci or an extended depth of focus. These lenses utilize a variety of diffractive and refractive designs to achieve varied focal depths. While common optical testing methods based on the IOL's modulation transfer function (MTF) or resolving power at best focus are essential for quality control, they do not fully address the lenses' performance requirements in daily visual tasks such as reading in a variety of distances. The purpose of this work was to introduce a visually relevant on-bench test method, which includes an image analysis technique and a visual acuity-related image quality metric, to evaluate the through-focus performance of different commercially available IOLs. This method consists of recording a series of optotype images in a realistic eye model with the IOL, adjusting the stimulus vergence through a focus-tunable lens. We compare the results obtained with mono-focal, enhanced mono-focal, EDOF, and (diffractive) trifocal IOLs.

摘要

白内障手术需要植入人工晶状体(IOL)以替代混浊的晶状体。单焦点人工晶状体是最常见的类型,旨在使眼睛在给定距离(通常为无穷远)聚焦。同步视觉人工晶状体(SVIOL)和扩展焦深(EDOF)人工晶状体旨在通过提供多个焦点或扩展焦深来最大程度地减少术后对眼镜的依赖。这些晶状体采用各种衍射和折射设计来实现不同的焦深。虽然基于人工晶状体调制传递函数(MTF)或最佳焦点处分辨力的常见光学测试方法对于质量控制至关重要,但它们并未完全满足诸如在各种距离阅读等日常视觉任务中晶状体的性能要求。这项工作的目的是引入一种与视觉相关的台架测试方法,该方法包括图像分析技术和与视力相关的图像质量指标,以评估不同市售人工晶状体的全焦深性能。该方法包括在带有该人工晶状体的逼真的眼模型中记录一系列视标图像,通过可调节焦点的透镜调整刺激聚散度。我们比较了单焦点、增强型单焦点、EDOF和(衍射)三焦点人工晶状体获得的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/feaf/11640569/ce592508b99d/boe-15-12-7056-g001.jpg

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