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小鼠和大鼠眼睛光学参数的变分分析。

Variational analysis of the mouse and rat eye optical parameters.

作者信息

Bawa Gurinder, Tkatchenko Tatiana V, Avrutsky Ivan, Tkatchenko Andrei V

机构信息

Department of Electrical and Computer Engineering, Wayne State University, Detroit, MI 48201 USA.

出版信息

Biomed Opt Express. 2013 Oct 23;4(11):2585-95. doi: 10.1364/BOE.4.002585. eCollection 2013.

Abstract

Rodent models are increasingly used to study refractive eye development and development of refractive errors; however, there is still some uncertainty regarding the accuracy of the optical models of the rat and mouse eye primarily due to high variability in reported ocular parameters. In this work, we have systematically evaluated the contribution of various ocular parameters, such as radii of curvature of ocular surfaces, thicknesses of ocular components, and refractive indices of ocular refractive media, using variational analysis and a computational model of the rodent eye. Variational analysis revealed that not all variation in ocular parameters has critical impact on the refractive status of the eye. Variation in the depth of the vitreous chamber, thickness of the lens, radius of the anterior surface of the cornea, radius of the anterior surface of the lens, as well as refractive indices for the lens and vitreous, appears to have the largest impact on the refractive error. The radii of the posterior surfaces of the cornea and lens have much smaller contributions to the refractive state. These data provide the framework for further refinement of the optical models of the rat and mouse eye and suggest that extra efforts should be directed towards increasing the linear resolution of the rodent eye biometry and obtaining more accurate data for the refractive indices of the lens and vitreous.

摘要

啮齿动物模型越来越多地用于研究屈光性眼发育和屈光不正的发展;然而,大鼠和小鼠眼睛光学模型的准确性仍存在一些不确定性,主要是由于所报道的眼部参数存在很大差异。在这项工作中,我们使用变分分析和啮齿动物眼睛的计算模型,系统地评估了各种眼部参数的贡献,如眼表面的曲率半径、眼内各部分的厚度以及眼屈光介质的折射率。变分分析表明,并非所有眼部参数的变化都会对眼睛的屈光状态产生关键影响。玻璃体腔深度、晶状体厚度、角膜前表面半径、晶状体前表面半径以及晶状体和玻璃体的折射率变化,似乎对屈光不正的影响最大。角膜和晶状体后表面的半径对屈光状态的贡献要小得多。这些数据为进一步完善大鼠和小鼠眼睛的光学模型提供了框架,并表明应额外努力提高啮齿动物眼睛生物测量的线性分辨率,并获取晶状体和玻璃体折射率更准确的数据。

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