[Simple method to estimate object to image magnification and aniseikonia following cataract surgery].

4区 医学 Q3 Medicine
Ophthalmologe Pub Date : 2022-01-01 Epub Date: 2021-06-01 DOI:10.1007/s00347-021-01412-6
Achim Langenbucher, Peter Hoffmann, Jascha Wendelstein, Nóra Szentmáry
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引用次数: 0

Abstract

Background and purpose: Aniseikonia as one of the major risk factors for asthenopic problems is mostly overlooked in modern cataract surgery. The purpose of this study was to develop a simple calculation scheme for clinicians to predict the object to image magnification in a pseudophakic eye with biometric data.

Methods: The calculation scheme for object to image magnification in the pseudophakic eye is based on a vergence calculation of the lens power with theoretical optical formulae. From the biometric data, which are typically derived from both eyes during lens power calculation, the vergences in front of and behind the 3 or 4 refractive surfaces of the pseudophakic eye model are used to predict the magnification for objects at infinity or objects located at a finite measurement distance (e.g. 5 m).

Results: With a formula-based lens power calculation a pseudophakic eye model is set up with 3 or 4 refractive surfaces (postoperative spectacle refraction; thick cornea described by anterior surface or thick cornea characterized by anterior and posterior surfaces; intraocular lens). The vergence in front of and behind each refractive surface is derived by means of linear Gaussian optics. The quotient of the product of all vergences in front of the surfaces and the product of all vergences behind the respective surfaces describes the object to image magnification of the eye. A comparison of the object to image magnification of both eyes yields the retinal image size disparity or aniseikonia. This calculation strategy is shown in a step-by-step approach exemplarily for the Haigis and Hoffer‑Q formulae (3 surfaces) and the Castrop formula (4 surfaces).

Conclusion: If during planning and lens power calculation biometry is performed for both eyes, ocular magnification of both eyes can be easily derived with this calculation scheme and aniseikonia can be extracted from a comparison of magnification of both eyes. Such a simple prediction should be established as a standard for precataract biometry and lens power calculation for early detection and avoidance of asthenopic complaints after cataract surgery.

Abstract Image

Abstract Image

Abstract Image

[白内障手术后物镜放大率和参差的简单估计方法]。
背景与目的:斜视是现代白内障手术中常被忽视的弱视问题的主要危险因素之一。本研究的目的是开发一个简单的计算方案,为临床医生预测物体的图像放大在假晶状眼与生物特征数据。方法:采用理论光学公式计算晶状体放大率的散度,计算假晶状体对像的放大倍率。根据生物特征数据,这些数据通常是在透镜功率计算过程中从双眼获得的,假眼模型的3或4个折光面前后的辐角用于预测无限远处物体或位于有限测量距离(例如5 m)的物体的放大倍率。结果:通过基于公式的晶状体度数计算,建立了具有3个或4个屈光面(术后眼镜屈光;以前表面为特征的厚角膜或以前后表面为特征的厚角膜;人工晶状体)。利用线性高斯光学推导出各折射率面前后的会聚。面前所有顶点的乘积和各自面后所有顶点的乘积的商描述了物体对眼睛图像放大的影响。将物体与两只眼睛的图像放大倍率进行比较,会产生视网膜图像大小的差异或参差。该计算策略以Haigis和Hoffer‑Q公式(3个面)和Castrop公式(4个面)的逐步方法为例进行了演示。结论:如果在规划和晶状体度数计算时对双眼进行生物计量,该计算方案可以很容易地推导出双眼的放大倍率,并可以从双眼放大倍率的比较中提取出等差。这样一个简单的预测应该作为白内障前生物测量和晶状体度数计算的标准,以早期发现和避免白内障术后的弱视主诉。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Ophthalmologe
Ophthalmologe 医学-眼科学
CiteScore
1.80
自引率
0.00%
发文量
95
审稿时长
4-8 weeks
期刊介绍: Der Ophthalmologe is an internationally recognized journal dealing with all aspects of ophthalmology. The journal serves both the scientific exchange and the continuing education of ophthalmologists. Freely submitted original papers allow the presentation of important clinical studies and serve scientific exchange. Case reports feature interesting cases and aim at optimizing diagnostic and therapeutic strategies. Comprehensive reviews on a specific topical issue focus on providing evidenced based information on diagnostics and therapy. Review articles under the rubric ''Continuing Medical Education'' present verified results of scientific research and their integration into daily practice.
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