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与动态Scheimpflug分析仪测量的角膜变形反应相关的因素。

Factors Associated With Corneal Deformation Responses Measured With a Dynamic Scheimpflug Analyzer.

作者信息

Miki Atsuya, Maeda Naoyuki, Ikuno Yasushi, Asai Tomoko, Hara Chikako, Nishida Kohji

机构信息

Department of Ophthalmology, Osaka University Graduate School of Medicine, Osaka, Japan.

出版信息

Invest Ophthalmol Vis Sci. 2017 Jan 1;58(1):538-544. doi: 10.1167/iovs.16-21045.

Abstract

PURPOSE

The purpose of this study was to clarify correlations between corneal deformation parameters measured with a dynamic Scheimpflug analyzer and baseline factors such as axial length, intraocular pressure (IOP), age, central corneal thickness (CCT), and corneal curvature.

METHODS

Ninety-six eyes of 96 healthy subjects (mean 55.2 ± 16.1 years of age) were examined using a dynamic Scheimpflug analyzer. Eighteen of 35 deformation parameters were selected for analyses based on measurement reliability and clinical relevance. The associations between corneal deformation parameters and axial length, IOP, age, CCT, and average corneal power were evaluated using multivariate regression analyses.

RESULTS

Deformation parameters were correlated significantly with axial length (n = 13), IOP (n = 13), age (n = 8), and CCT (n = 6) in the multivariate models. Longer axial length corresponded with greater corneal deformability, less viscous damping, and less movement of the entire eye. Higher IOP was associated with greater corneal resistance and less movement of the entire eye. Older age was associated with less corneal deformability and greater movement of the entire eye. Corneal curvature was correlated significantly with only three deformation parameters.

CONCLUSIONS

This study clarified the substantial impact of axial length, age, and IOP on the biomechanical responses of the cornea and the entire eye. In contrast, corneal curvature did not affect most of the deformation parameters. The current results confirmed the importance of corneal biomechanics, especially in eyes with longer axial length and in older subjects.

摘要

目的

本研究旨在阐明使用动态Scheimpflug分析仪测量的角膜变形参数与诸如眼轴长度、眼压(IOP)、年龄、中央角膜厚度(CCT)和角膜曲率等基线因素之间的相关性。

方法

使用动态Scheimpflug分析仪对96名健康受试者(平均年龄55.2±16.1岁)的96只眼睛进行检查。基于测量可靠性和临床相关性,从35个变形参数中选择了18个进行分析。使用多元回归分析评估角膜变形参数与眼轴长度、眼压、年龄、CCT和平均角膜屈光力之间的关联。

结果

在多元模型中,变形参数与眼轴长度(n = 13)、眼压(n = 13)、年龄(n = 8)和CCT(n = 6)显著相关。眼轴长度越长,角膜可变形性越大,粘性阻尼越小,整个眼睛的运动越少。眼压越高,角膜阻力越大,整个眼睛的运动越少。年龄越大,角膜可变形性越小,整个眼睛的运动越大。角膜曲率仅与三个变形参数显著相关。

结论

本研究阐明了眼轴长度、年龄和眼压对角膜及整个眼睛生物力学反应的重大影响。相比之下,角膜曲率并未影响大多数变形参数。当前结果证实了角膜生物力学的重要性,尤其是在眼轴较长的眼睛和老年受试者中。

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