Department of Mechanical Engineering, The Johns Hopkins University, Baltimore, MD 21218, USA.
Biomech Model Mechanobiol. 2011 Jun;10(3):323-37. doi: 10.1007/s10237-010-0237-3. Epub 2010 Jul 3.
An inverse finite element method was developed to determine the anisotropic properties of bovine cornea from an in vitro inflation experiment. The experiment used digital image correlation (DIC) to measure the three-dimensional surface geometry and displacement field of the cornea at multiple pressures. A finite element model of a bovine cornea was developed using the DIC measured surface geometry of the undeformed specimen. The model was applied to determine five parameters of an anisotropic hyperelastic model that minimized the error between the measured and computed surface displacement field and to investigate the sensitivity of the measured bovine inflation response to variations in the anisotropic properties of the cornea. The results of the parameter optimization revealed that the collagen structure of bovine cornea exhibited a high degree of anisotropy in the limbus region, which agreed with recent histological findings, and a transversely isotropic central region. The parameter study showed that the bovine corneal response to the inflation experiment was sensitive to the shear modulus of the matrix at pressures below the intraocular pressure, the properties of the collagen lamella at higher pressures, and the degree of anisotropy in the limbus region. It was not sensitive to a weak collagen anisotropy in the central region.
从体外膨胀实验中,开发了一种逆有限元方法来确定牛眼角膜的各向异性特性。该实验使用数字图像相关(DIC)技术来测量角膜在多个压力下的三维表面几何形状和位移场。使用 DIC 测量的未变形样本的表面几何形状,开发了牛眼角膜的有限元模型。该模型用于确定各向异性超弹性模型的五个参数,这些参数最小化了测量和计算表面位移场之间的误差,并研究了测量的牛眼角膜膨胀响应对角膜各向异性特性变化的敏感性。参数优化的结果表明,牛眼角膜的胶原结构在角膜缘区域具有高度各向异性,这与最近的组织学发现一致,并且在横向各向同性的中央区域。参数研究表明,牛眼角膜对膨胀实验的响应对低于眼内压的压力下基质的剪切模量、较高压力下胶原层的特性以及角膜缘区域的各向异性程度敏感,但对中央区域较弱的胶原各向异性不敏感。