State Key Laboratory of Ophthalmology, Zhongshan Ophthalmic Center, Sun Yat-sen University, Guangzhou, China.
Department of Mechanical and Aerospace Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong.
Transl Vis Sci Technol. 2021 Aug 2;10(9):36. doi: 10.1167/tvst.10.9.36.
To evaluate the ability of the new in vivo corneal indentation device (CID) to measure corneal biomechanical properties.
In total, 186 eyes from 46 healthy subjects, 107 patients with primary open-angle glaucoma, and 33 patients with ocular hypertension were enrolled in a cross-sectional study. Measurements were performed using corneal visualization Scheimpflug technology (Corvis ST) and the CID. The deformation amplitude (DA), inward applanation time, inward applanation velocity (A1V), outward applanation time (A2T), outward applanation velocity (A2V), highest concavity time, DA ratio, max inverse radius (MIR), integrated radius, and stiffness parameter A1 were included as Corvis ST parameters, and stiffness and modulus were included as CID parameters. Associations between the Corvis ST and CID parameters and correlations between central corneal thickness and corneal biomechanical parameters were analyzed. The stiffness was significantly correlated with all the Corvis ST parameters (P < 0.05). The modulus was significantly correlated with the DA, A1V, A2T, A2V, highest concavity time, and MIR (P < 0.05). The DA, inward applanation time, A1V, A2T, A2V, DA ratio, MIR, integrated radius, and stiffness parameter A1 values and both CID-derived values were significantly correlated with central corneal thickness (P < 0.05).
Parameters derived from the CID and Corvis ST demonstrated agreement in the measurement of corneal biomechanical properties. The stiffness and modulus can characterize in vivo corneal biomechanical properties.
Agreeing with the Corvis ST regarding the assessment of corneal biomechanical properties, the CID can be a novel clinical tool for biomechanical evaluation of the cornea.
评估新型活体角膜压平设备(CID)测量角膜生物力学特性的能力。
本研究共纳入了 46 名健康受试者、107 名原发性开角型青光眼患者和 33 名高眼压症患者的 186 只眼。使用角膜可视化Scheimpflug 技术(Corvis ST)和 CID 进行测量。包括角膜变形幅度(DA)、内压平时间、内压平速度(A1V)、外压平时间(A2T)、外压平速度(A2V)、最大凹陷时间、DA 比、最大反转半径(MIR)、整合半径和硬度参数 A1 作为 Corvis ST 参数,以及硬度和模量作为 CID 参数。分析了 Corvis ST 参数和 CID 参数之间的相关性,以及中央角膜厚度与角膜生物力学参数之间的相关性。硬度与所有 Corvis ST 参数均显著相关(P<0.05)。模量与 DA、A1V、A2T、A2V、最大凹陷时间和 MIR 显著相关(P<0.05)。DA、内压平时间、A1V、A2T、A2V、DA 比、MIR、整合半径和硬度参数 A1 值以及 CID 衍生值均与中央角膜厚度显著相关(P<0.05)。
CID 衍生参数与 Corvis ST 在角膜生物力学特性测量方面具有一致性。硬度和模量可以用于描述活体角膜生物力学特性。
温晓慧