Division of Civil Engineering, University of Dundee, Dundee DD1 4HN, UK.
J R Soc Interface. 2010 Oct 6;7(51):1475-85. doi: 10.1098/rsif.2010.0108. Epub 2010 Apr 14.
An experimental study has been conducted to determine the stress-strain behaviour of human corneal tissue and how the behaviour varies with age. Fifty-seven well-preserved ex vivo donor corneas aged between 30 and 99 years were subjected to cycles of posterior pressure up to 60 mm Hg while monitoring their behaviour. The corneas were mechanically clamped along their ring of scleral tissue and kept in physiological conditions of temperature and hydration. The tissue demonstrated hyper-elastic pressure-deformation and stress-strain behaviour that closely matched an exponential trend. Clear stiffening (increased resistance to deformation) with age was observed in all loading cycles, and the rate of stiffness growth was nonlinear with bias towards older specimens. With a strong statistical association between stiffness and age (p < 0.05), it was possible to develop generic stress-strain equations that were suitable for all ages between 30 and 99 years. These equations, which closely matched the experimental results, depicted corneal stiffening with age in a form suitable for implementation in numerical simulations of ocular biomechanical behaviour.
已经进行了一项实验研究,以确定人眼角膜组织的应力-应变行为,以及行为随年龄的变化。将 57 个保存良好的、年龄在 30 至 99 岁之间的离体供体眼角膜置于高达 60mmHg 的后向压力循环中,同时监测其行为。角膜通过巩膜组织的环机械地夹住,并保持在温度和水合作用的生理条件下。组织表现出超弹性的压力-变形和应力-应变行为,与指数趋势非常吻合。在所有加载循环中都观察到明显的随年龄增长的变硬(变形阻力增加),而硬度增长率是非线性的,偏向于较老的样本。由于刚度和年龄之间存在很强的统计学关联(p<0.05),因此可以开发适用于 30 至 99 岁之间所有年龄段的通用应力-应变方程。这些方程与实验结果非常吻合,以适合眼部生物力学行为数值模拟的形式描绘了随年龄增长的角膜变硬。