梯度折射率晶体透镜结构对其外围光功率分布的影响

IF 2.3 Q2 OPTICS Advanced Optical Technologies Pub Date : 2022-05-02 DOI:10.1515/aot-2022-0003
Qing Li, F. Fang
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引用次数: 0

摘要

摘要晶状体对人眼外周屈光有重要作用,影响近视的发生和发展。然而,人们对晶状体的外周光学特性及其对眼外周屈光度的影响知之甚少。本研究旨在探讨在大视野范围内晶体透镜的结构参数与其周边功率分布之间的关系。外围功率轮廓是根据沿主射线的入口和出口瞳孔中心来定义的。通过基于测量数据建立的梯度折射率透镜模型进行三维光线追踪分析。在每个视场角度下,透镜入口处和出口瞳孔中心处的波前辐散度呈近似的线性相关关系。轴向折射率分布和轴向曲率分布的指数参数以及透镜后表面的非球面度是影响周边功率分布的主要参数。研究还表明,与具有相同外部几何形状的相应GRIN模型相比,均匀透镜模型中的功率分布可能存在显着差异,有时甚至是不现实的。周边晶状体特性的理论研究结果为实现正常周边视觉的大视场眼建模和人工晶状体设计提供了新的视角。
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Impacts of the gradient-index crystalline lens structure on its peripheral optical power profile
Abstract The crystalline lens makes an important contribution to the peripheral refraction of the human eye, which may affect the development and progression of myopia. However, little has been known about the peripheral optical features of the crystalline lens and its impacts on the peripheral ocular refraction. This study aims to investigate the relationship between the structural parameters of the crystalline lens and its peripheral power profile over a wide visual field. The peripheral power profile is defined with respect to the entrance and exit pupil centers along the chief rays. Analysis is performed by three-dimensional ray tracing through the gradient refractive index (GRIN) lens models built from measurement data. It has been found that the vergence of the wavefronts at the entrance and the exit pupil centers of the lens show an approximate linear correlation to each other for each field angle. The exponent parameters of the axial refractive index profile and the axial curvature profile, and the asphericity of the posterior lens surface are found to be the most influential parameters in the peripheral power profiles. The study also shows that there can be significantly different, sometimes unrealistic, power profiles in the homogeneous lens model compared with its corresponding GRIN model with the same external geometry. The theoretical findings on the peripheral lens properties provide a new perspective for both wide-field eye modelling and the design of intraocular lenses to achieve normal peripheral vision.
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来源期刊
CiteScore
4.40
自引率
0.00%
发文量
23
期刊介绍: Advanced Optical Technologies is a strictly peer-reviewed scientific journal. The major aim of Advanced Optical Technologies is to publish recent progress in the fields of optical design, optical engineering, and optical manufacturing. Advanced Optical Technologies has a main focus on applied research and addresses scientists as well as experts in industrial research and development. Advanced Optical Technologies partners with the European Optical Society (EOS). All its 4.500+ members have free online access to the journal through their EOS member account. Topics: Optical design, Lithography, Opto-mechanical engineering, Illumination and lighting technology, Precision fabrication, Image sensor devices, Optical materials (polymer based, inorganic, crystalline/amorphous), Optical instruments in life science (biology, medicine, laboratories), Optical metrology, Optics in aerospace/defense, Simulation, interdisciplinary, Optics for astronomy, Standards, Consumer optics, Optical coatings.
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