Clinical College of Ophthalmology, Tianjin Medical University, No 4. Gansu Road, He-ping District, Tianjin, 300020, China.
Tianjin Eye Hospital, Tianjin Eye Institute, Tianjin Key Laboratory of Ophthalmology and Visual Science, Nankai University, Tianjin, China.
Int Ophthalmol. 2021 Aug;41(8):2853-2859. doi: 10.1007/s10792-021-01844-8. Epub 2021 Apr 20.
To investigate the effect of corneal shape parameters on corneal deformation responses measured with a Scheimpflug camera.
A total of 241 eyes of 241 participants were enrolled in this study. The anterior and posterior corneal curvature radii (CCR), anterior and posterior corneal Q-values, and corneal diameters of the participants were measured using the Pentacam HR. A total of 17 corneal deformation parameters including time, velocity, deflection amplitude, length, and area during ingoing applanation, highest concavity, and outgoing applanation were recorded by corneal visualization using Scheimpflug technology (Corvis ST). The effect of corneal shape parameters on corneal deformation responses was evaluated using multivariate regression models.
Multivariate regression analyses showed that six, five, four, and three corneal deformation parameters were significantly correlated with anterior CCR, posterior CCR, anterior Q-value, and posterior Q-value, respectively. Steeper anterior corneal curvature was associated with faster velocity during ingoing applanation and greater deformation during outgoing applanation. Steeper posterior corneal curvature was correlated with faster velocity during outgoing applanation and greater deformation during ingoing applanation. Eyes that had steeper corneal curvatures were associated with less stiff corneas. More negative anterior Q-value corresponded with faster velocity and greater deformation during ingoing applanation. Eyes that had more prolate posterior corneal surfaces showed more resistance to corneal deformation at the highest concavity. However, corneal diameter was not selected in any corneal deformation parameters models.
Corneal deformation response is significantly influenced by anterior and posterior corneal curvature and corneal asphericity, but not corneal diameter.
研究角膜形态参数对 Scheimpflug 相机测量的角膜变形响应的影响。
本研究纳入了 241 名参与者的 241 只眼。使用 Pentacam HR 测量参与者的前、后角膜曲率半径(CCR)、前、后角膜 Q 值和角膜直径。使用 Scheimpflug 技术(Corvis ST)通过角膜可视化记录了 17 个角膜变形参数,包括进入压平、最大凹陷和退出压平过程中的时间、速度、偏转角幅度、长度和面积。使用多元回归模型评估角膜形态参数对角膜变形响应的影响。
多元回归分析显示,六个、五个、四个和三个角膜变形参数分别与前 CCR、后 CCR、前 Q 值和后 Q 值显著相关。较陡的前角膜曲率与进入压平过程中的较快速度和较大变形有关。较陡的后角膜曲率与退出压平过程中的较快速度和较大变形有关。角膜曲率较陡的眼睛与较软的角膜有关。更负的前 Q 值与进入压平过程中的较快速度和较大变形有关。后角膜表面更扁长的眼睛在最大凹陷处表现出对角膜变形的更大阻力。然而,角膜直径并未被选入任何角膜变形参数模型中。
角膜变形响应受前、后角膜曲率和角膜非球面性的显著影响,但不受角膜直径的影响。