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Quantitative assessment of corneal biomechanical properties using optical coherence elastography and a modified Rayleigh Lamb-frequency model

机译:光学相干弹性成像和改进的瑞利·兰姆-频率模型定量评估角膜的生物力学性能

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This study reports the application of a modified Rayleigh-Lamb frequency equation (RLFE) to a noncontact optical coherence elastography (OCE) method for quantitative assessment of the biomechanical properties of a porcine cornea. A focused air-pulse induced an elastic wave in the cornea, which was imaged by a phase-stabilized optical coherence tomography (OCT) system. From the displacement data acquired by the OCT system, phase velocities of the mechanical wave were extracted by spectral analysis using a fast Fourier transform. Experiments were conducted on 2% agar phantom samples, and the Young's moduli were assessed by the Rayleigh-Lamb frequency equation, which was validated using uniaxial mechanical compression testing. The Rayleigh-Lamb frequency equation was then applied to OCE data from a normal porcine cornea, in which the fluid-solid effect was considered. The Young's modulus of the porcine cornea was measured to be ~60 kPa and the shear viscosity was ~0.33 Pa·s. The combination of OCE and RLFE is a promising noninvasive method for the estimation of the biomechanical properties of the cornea in vivo.
机译:这项研究报告了改进的瑞利-兰姆频率方程(RLFE)在非接触光学相干弹性成像(OCE)方法中的应用,用于定量评估猪角膜的生物力学性能。聚焦的空气脉冲在角膜中引起弹性波,该弹性波由相位稳定的光学相干断层扫描(OCT)系统成像。从OCT系统获取的位移数据中,使用快速傅里叶变换通过频谱分析来提取机械波的相速度。在2%的琼脂体模样品上进行了实验,并通过Rayleigh-Lamb频率方程评估了杨氏模量,该方程已使用单轴机械压缩测试进行了验证。然后将瑞利-兰姆频率方程应用于来自正常猪角膜的OCE数据,其中考虑了流固效应。猪角膜的杨氏模量测得为〜60 kPa,剪切粘度为〜0.33 Pa·s。 OCE和RLFE的组合是用于评估体内角膜生物力学特性的有前途的无创方法。

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