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采用动态Scheimpflug分析仪测量年轻健康成年人角膜的生物力学特性。

Biomechanical Properties of the Cornea Measured With the Dynamic Scheimpflug Analyzer in Young Healthy Adults.

作者信息

Lee Hun, Kang David Sung Yong, Ha Byoung Jin, Choi Jin Young, Kim Eung Kweon, Seo Kyoung Yul, Kim Ha Yan, Kim Tae-Im

机构信息

*Department of Ophthalmology, International St. Mary's Hospital, Catholic Kwandong University College of Medicine, Incheon, South Korea; †The Institute of Vision Research, Department of Ophthalmology, Yonsei University College of Medicine, Seoul, South Korea; ‡Eyereum Eye Clinic, Seoul, South Korea; §Corneal Dystrophy Research Institute, Department of Ophthalmology, Yonsei University College of Medicine, Seoul, South Korea; and ¶Biostatistics Collaboration Unit, Yonsei University College of Medicine, Seoul, South Korea.

出版信息

Cornea. 2017 Jan;36(1):53-58. doi: 10.1097/ICO.0000000000001001.

Abstract

PURPOSE

To investigate the biomechanical properties of the cornea using the dynamic Scheimpflug analyzer in young healthy adults.

METHODS

This prospective cross-sectional population study included 944 eyes of 472 participants aged 20 to 40 years. Participants underwent ophthalmic investigations, including evaluation of biomechanical properties of the cornea using the dynamic Scheimpflug analyzer, manifest refraction, and measurements of keratometric values by autokeratometry, intraocular pressure (IOP) by noncontact tonometer, central corneal thickness (CCT) by ultrasound, and white-to-white distance by Scheimpflug tomography. Statistical analyses included determination of the reference interval with a bootstrapping method, linear quantile mixed-effects model, and Spearman correlation analysis between the corneal biomechanical parameters and other variables (age, manifest refraction spherical equivalent, CCT, IOP, white-to-white, and keratometric values).

RESULTS

The 90% CIs of all corneal biomechanical parameters demonstrated that the ranges of the 90% CIs for the reference data were almost identical with and without bootstrapping. Quantile regression to determine the fifth, 50th, and 95th percentiles of each corneal biomechanical parameter supported the findings from the nonparametric method with the 90% CIs. Correlation analysis showed significant correlations between the parameters and variables, but there was a relatively high Spearman correlation coefficient in the case of the correlations with the CCT and IOP.

CONCLUSIONS

Using data from a large population of young healthy adults, we developed a database of normal values for multiple corneal biomechanical parameters obtained from the dynamic Scheimpflug analyzer. We conclude that the biomechanical properties of the cornea are influenced by the CCT and IOP.

摘要

目的

使用动态Scheimpflug分析仪研究年轻健康成年人角膜的生物力学特性。

方法

这项前瞻性横断面人群研究纳入了472名年龄在20至40岁之间参与者的944只眼睛。参与者接受了眼科检查,包括使用动态Scheimpflug分析仪评估角膜的生物力学特性、显验光、自动角膜曲率计测量角膜曲率值、非接触眼压计测量眼压(IOP)、超声测量中央角膜厚度(CCT)以及Scheimpflug断层扫描测量白到白距离。统计分析包括使用自抽样法确定参考区间、线性分位数混合效应模型以及角膜生物力学参数与其他变量(年龄、显验光球镜等效值、CCT、IOP、白到白距离和角膜曲率值)之间的Spearman相关性分析。

结果

所有角膜生物力学参数的90%置信区间表明,有和没有自抽样时参考数据的90%置信区间范围几乎相同。用于确定每个角膜生物力学参数的第五、第50和第95百分位数的分位数回归支持了采用90%置信区间的非参数方法的结果。相关性分析显示参数与变量之间存在显著相关性,但与CCT和IOP的相关性情况下Spearman相关系数相对较高。

结论

利用大量年轻健康成年人的数据,我们建立了一个从动态Scheimpflug分析仪获得的多个角膜生物力学参数正常值的数据库。我们得出结论,角膜的生物力学特性受CCT和IOP的影响。

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