Relationship between corneal biomechanical parameters and corneal sublayer thickness measured by Corvis ST and UHR-OCT in keratoconus and normal eyes.

Yong Li, Zhiqiang Xu, Qiaoli Liu, Yuzhou Wang, Kan Lin, Jiahui Xia, Shihao Chen, Liang Hu
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引用次数: 9

Abstract

Background: To explore the relationship between corneal biomechanical parameters and corneal sublayer thickness using corneal visualization Scheimpflug technology (Corvis ST) and ultrahigh-resolution optical coherence tomography (UHR-OCT) in clinical and suspected keratoconus and normal eyes.

Methods: Cross-sectional prospective study. A total of 94 eyes of 70 participants were recruited. Twenty five eyes of 19 keratoconus patients, 52 eyes of 34 patients showing high risk of developing keratoconus according to the Belin/Ambrosio Enhanced Ectasia Display, and each eye of 17 normal subjects were enrolled. All participants underwent Corvis ST, Pentacam, and UHR-OCT examinations at the same time. Stiffness parameter A1 (SP-A1), deformation amplitude ratio (DA ratio), and other biomechanical parameters were recorded using Corvis ST. The vertical and horizontal thickness profiles of central 3 mm corneal epithelium, Bowman's layer, and stroma as measured by the perpendicular distance between the neighboring interfaces were generated using UHR-OCT. The flat keratometry and steep keratometry were obtained using Pentacam. Analysis of correlation was applied to explore the association between variables.

Results: Most of the biomechanical parameters and corneal sublayer thickness profiles showed statistical differences among three groups. A statistically significant linear relationship was noted between SP-A1 and DA ratio in all three groups. SP-A1 was found to be positively correlated with epithelial and Bowman's layer thickness in the keratoconus (KC) group, and with stromal thickness in all three groups. In the normal and suspected keratoconus (SKC) groups, only stromal thickness was included in the stepwise linear regression to predict SP-A1, whereas in the KC group, steep keratometry and Bowman's layer thickness were included.

Conclusions: Significant and different correlations were noted between corneal stiffness and corneal sublayer thickness in different groups, indicating that corneal sublayers may play different roles in maintaining corneal biomechanical stability between keratoconus and normal eyes.

Abstract Image

Abstract Image

Abstract Image

圆锥角膜与正常眼角膜生物力学参数与角膜亚层厚度的关系。
背景:利用角膜可视化技术(Corvis ST)和超高分辨率光学相干断层扫描(UHR-OCT),探讨临床、疑似圆锥角膜和正常眼的角膜生物力学参数与角膜亚层厚度的关系。方法:横断面前瞻性研究。总共招募了70名参与者的94只眼睛。根据Belin/Ambrosio增强扩张显示,19例圆锥角膜患者25只眼,34例圆锥角膜高危患者52只眼,17例正常受试者每只眼。所有参与者同时进行了Corvis ST, Pentacam和UHR-OCT检查。采用Corvis st记录刚度参数A1 (SP-A1)、变形幅度比(DA ratio)等生物力学参数。采用UHR-OCT生成中央3mm角膜上皮、Bowman’s层和基质的垂直和水平厚度分布图(通过相邻界面之间的垂直距离测量)。用Pentacam进行平角和陡角测定。采用相关性分析探讨变量之间的相关性。结果:三组间大部分生物力学参数及角膜亚层厚度分布均有统计学差异。三组SP-A1与DA比值均呈显著的线性关系。SP-A1在圆锥角膜(KC)组与上皮和鲍曼层厚度呈正相关,在三组中均与间质厚度呈正相关。在正常和疑似圆锥角膜(SKC)组中,仅将基质厚度纳入逐步线性回归来预测SP-A1,而在KC组中,则包括陡峭角膜测量和鲍曼层厚度。结论:不同组角膜硬度与角膜亚层厚度之间存在显著且不同的相关性,说明角膜亚层在维持圆锥角膜与正常眼的角膜生物力学稳定性方面可能发挥着不同的作用。
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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