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首页> 外文期刊>Journal of Ophthalmology >Quantitative Multiparameter Evaluation of Vacuoles in Intraocular Lenses Employing a High-Magnification Digital Microscopy Method
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Quantitative Multiparameter Evaluation of Vacuoles in Intraocular Lenses Employing a High-Magnification Digital Microscopy Method

机译:采用高倍率数字显微镜法的人工晶状体液泡的定量多道琼布评价

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摘要

As small imperfections with micrometric sizes, fluid-filled vacuoles, also referred to as glistenings, in intraocular lenses (IOLs) have been known to induce significant unwanted light scattering that in several cases presumably cause complaints and sometimes lead to IOL explantation and replacement. This unwanted scatter is of particular concern for patients viewing bright light in reduced-light conditions such as when driving at night, as the scattered light toward the retina can cause temporary blindness. In this study, we have developed and implemented an accurate test methodology based on a high-magnification digital microscopy approach for quantitative multiparameter evaluation and classification of IOL vacuoles depending on their critical optical characteristics including vacuole size, density, shape, and orientation within the IOL material. Using the multiparameter database developed by evaluating vacuole characteristics, we established a classification grading system that can be used to evaluate vacuole effects on light scattering.
机译:作为小型缺陷,已经已知已经已知有流体填充的空泡,也称为闪闪发光,在眼内透镜(IOL)中诱导显着的不希望的光散射,即在几种情况下可能导致投诉,有时导致IOL促进和更换。这种不需要的散射对于在夜间在夜间驾驶时观察亮光的患者特别关注,因为朝向视网膜的散射光可能导致暂时失明。在这项研究中,我们基于高倍率数字显微镜方法开发并实施了一种准确的测试方法,用于根据其临界光学特性,根据其临界光学特性,IOL真空分类,包括液压尺寸,密度,形状和IOL内取向材料。使用通过评估液泡特性开发的多辐射数据库,我们建立了一种分类分级系统,可用于评估光散射的液压效应。

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