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基于Corvis ST探索人眼角膜的生物力学特性

Exploring the Biomechanical Properties of the Human Cornea Based on Corvis ST.

作者信息

Zhang Di, Zhang Haixia, Tian Lei, Zheng Yan, Fu Caiyun, Zhai Changbin, Li Lin

机构信息

Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application, Capital Medical University, Beijing, China.

School of Biomedical Engineering, Capital Medical University, Beijing, China.

出版信息

Front Bioeng Biotechnol. 2021 Nov 17;9:771763. doi: 10.3389/fbioe.2021.771763. eCollection 2021.

Abstract

The aim of this study was to provide a method to determine corneal nonlinear viscoelastic properties based on the output data of corneal visualization Scheimpflug technology (Corvis ST). The Corvis ST data from 18 eyes of 12 healthy humans were collected. Based on the air-puff pressure and the corneal displacement from the Corvis ST test of normal human eyes, the work done by the air-puff attaining the whole corneal displacement was obtained. By applying a visco-hyperelastic strain energy density function of the cornea, in which the first-order Prony relaxation function and the first-order Ogden strain energy were employed, the corneal strain energy during the Corvis ST test was calculated. Then the work done by the air-puff attaining the whole corneal displacement was completely regarded as the strain energy of the cornea. The identification of the nonlinear viscoelastic parameters was carried out by optimizing the sum of difference squares of the work and the strain energy using the genetic algorithm. The visco-hyperelastic model gave a good fit to the data of corneal strain energy with time during the Corvis ST test ( > 0.95). The determined Ogden model parameter ranged from 0.42 to 0.74 MPa, and ranged from 32.76 to 55.63. The parameters and in the first-order Prony function were 0.09-0.36 and 1.21-1.95 ms, respectively. It is feasible to determine the corneal nonlinear viscoelastic properties based on the corneal contour information and air-puff pressure of the Corvis ST test.

摘要

本研究的目的是提供一种基于角膜可视化Scheimpflug技术(Corvis ST)输出数据来确定角膜非线性粘弹性特性的方法。收集了12名健康人的18只眼睛的Corvis ST数据。根据正常人眼Corvis ST测试中的吹气压力和角膜位移,获得了达到整个角膜位移时吹气所做的功。通过应用角膜的粘弹性超弹性应变能密度函数,其中采用一阶Prony松弛函数和一阶Ogden应变能,计算了Corvis ST测试期间的角膜应变能。然后将达到整个角膜位移时吹气所做的功完全视为角膜的应变能。使用遗传算法通过优化功和应变能的差平方和来进行非线性粘弹性参数的识别。粘弹性超弹性模型对Corvis ST测试期间角膜应变能随时间的数据拟合良好(>0.95)。确定的Ogden模型参数α范围为0.42至0.74 MPa,β范围为32.76至55.63。一阶Prony函数中的参数τ1和G1分别为0.09 - 0.36和1.21 - 1.95 ms。基于Corvis ST测试的角膜轮廓信息和吹气压力来确定角膜非线性粘弹性特性是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f74c/8637821/402fdca3dc35/fbioe-09-771763-g001.jpg

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