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

机译:光学相干弹性造影的角膜生物力学性能的定量评估和改进的瑞利兰伯频模型

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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:该研究报告了改进的瑞利 - 羊羔频率方程(RLF)在非接触光学相干弹性摄影(OCE)方法中的应用,用于定量评估猪角膜的生物力学性质。聚焦气脉诱导角膜中的弹性波,其通过相位稳定的光学相干断层扫描(OCT)系统成像。根据OCT系统获取的位移数据,使用快速傅里叶变换通过光谱分析提取机械波的相速度。在2%琼脂幻影样品上进行实验,通过瑞利 - 兰姆频率方程评估杨氏的Moduli,其使用单轴机械压缩测试验证。然后将Rayleigh-Lamb频率方程施加到来自正常猪角膜的OCE数据,其中考虑了流体固体效果。测量猪角膜的杨氏模量为〜60kPa,剪切粘度为约0.33 pa·s。 OCE和RLFE的组合是估计体内角膜的生物力学特性的有前途的非侵入性方法。

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