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角膜前表面、角膜后表面及晶状体对眼像差的影响。

Anterior Corneal, Posterior Corneal, and Lenticular Contributions to Ocular Aberrations.

作者信息

Atchison David A, Suheimat Marwan, Mathur Ankit, Lister Lucas J, Rozema Jos

机构信息

Institute of Health and Biomedical Innovation and School of Optometry and Vision Sciences, Queensland University of Technology, Kelvin Grove, Queensland, Australia.

Department of Ophthalmology, Antwerp University Hospital, Edegem, Belgium 3Department of Medicine and Health Sciences, University of Antwerp, Wilrijk, Belgium.

出版信息

Invest Ophthalmol Vis Sci. 2016 Oct 1;57(13):5263-5270. doi: 10.1167/iovs.16-20067.

Abstract

PURPOSE

To determine the corneal surfaces and lens contributions to ocular aberrations.

METHODS

There were 61 healthy participants with ages ranging from 20 to 55 years and refractions -8.25 diopters (D) to +3.25 D. Anterior and posterior corneal topographies were obtained with an Oculus Pentacam, and ocular aberrations were obtained with an iTrace aberrometer. Raytracing through models of corneas provided total corneal and surface component aberrations for 5-mm-diameter pupils. Lenticular contributions were given as differences between ocular and corneal aberrations. Theoretical raytracing investigated influence of object distance on aberrations.

RESULTS

Apart from defocus, the highest aberration coefficients were horizontal astigmatism, horizontal coma, and spherical aberration. Most correlations between lenticular and ocular parameters were positive and significant, with compensation of total corneal aberrations by lenticular aberrations for 5/12 coefficients. Anterior corneal aberrations were approximately three times higher than posterior corneal aberrations and usually had opposite signs. Corneal topographic centers were displaced from aberrometer pupil centers by 0.32 ± 0.19 mm nasally and 0.02 ± 0.16 mm inferiorly; disregarding corneal decentration relative to pupil center was significant for oblique astigmatism, horizontal coma, and horizontal trefoil. An object at infinity, rather than at the image in the anterior cornea, gave incorrect aberration estimates of the posterior cornea.

CONCLUSIONS

Corneal and lenticular aberration magnitudes are similar, and aberrations of the anterior corneal surface are approximately three times those of the posterior surface. Corneal decentration relative to pupil center has significant effects on oblique astigmatism, horizontal coma, and horizontal trefoil. When estimating component aberrations, it is important to use correct object/image conjugates and heights at surfaces.

摘要

目的

确定角膜表面和晶状体对眼像差的影响。

方法

61名年龄在20至55岁之间、屈光度在-8.25屈光度(D)至+3.25 D之间的健康参与者。使用Oculus Pentacam获取前后角膜地形图,使用iTrace像差仪获取眼像差。通过角膜模型进行光线追迹,得出直径5毫米瞳孔的总角膜像差和表面成分像差。晶状体的影响通过眼像差和角膜像差之间的差异来表示。理论光线追迹研究了物距对像差的影响。

结果

除了散焦外,最高的像差系数是水平散光、水平彗差和球差。晶状体参数和眼参数之间的大多数相关性为正且显著,5/12的系数中晶状体像差对总角膜像差有补偿作用。前角膜像差大约是后角膜像差的三倍,且通常符号相反。角膜地形图中心相对于像差仪瞳孔中心在鼻侧移位0.32±0.19毫米,在下方移位0.02±0.16毫米;忽略角膜相对于瞳孔中心的偏心对斜散光、水平彗差和水平三叶像差有显著影响。无穷远处的物体,而不是前角膜中的像,会给出后角膜像差的错误估计。

结论

角膜和晶状体的像差大小相似,前角膜表面的像差约为后表面的三倍。角膜相对于瞳孔中心的偏心对斜散光、水平彗差和水平三叶像差有显著影响。在估计成分像差时,使用正确的物/像共轭和表面高度很重要。

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