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采用无约束压缩试验测量人眼和猪眼眼旁巩膜的耗散割线模量。

Drained secant modulus for human and porcine peripapillary sclera using unconfined compression testing.

机构信息

Department of Aerospace and Mechanical Engineering, University of Arizona, 1130 N Mountain Ave. Tucson, AZ 85721-0119, USA.

出版信息

Exp Eye Res. 2009 Dec;89(6):892-7. doi: 10.1016/j.exer.2009.07.011. Epub 2009 Jul 25.

Abstract

Glaucoma is an ocular disease characterized by damage of the optic nerve head (ONH) resulting in blindness. Recent research has identified the material properties of the sclera as being an important factor in the biomechanics of major load bearing tissues near the ONH. Most mechanical investigations performed on sclera have focused on the tensile behavior of this tissue, neglecting its compressive stiffness. The present study characterized the compressive moduli of peripapillary sclera using an unconfined compression (UCC) technique, for both human and porcine sources. UCC stress-relaxation tests were performed on human and porcine peripapillary scleral samples at 5%, 10% and 15% sequential compressive strain. Our results indicate a linearly decreasing drained equilibrium stress (at 5%) with age in male human samples, ranging from 79.4 Pa at 78 yrs to 40.1 Pa at 89 yrs of age. The drained secant modulus (E(5)) of human and porcine sclera was found to be 1.1 +/- 0.08 kPa and 3.9 +/- 0.57 kPa, respectively. Our experimental results also reveal a non-linear increase in drained equilibrium stress with increasing compressive strain. The compressive stiffness of sclera, as reported here, provides important information on the mechanical response of peripapillary ocular tissues. This information will be useful in future computational simulations of the sclera, especially as they relate to understanding mechanical damage near the ONH. Furthermore, our results indicate that age-related changes in the biomechanical response of the sclera occur, suggesting that these factors may be playing a role in the increasing prevalence of glaucoma with age.

摘要

青光眼是一种眼部疾病,其特征是视神经头部(ONH)受损,导致失明。最近的研究已经确定巩膜的材料特性是 ONH 附近主要承重组织生物力学的重要因素。大多数对巩膜进行的力学研究都集中在该组织的拉伸行为上,而忽略了其压缩刚度。本研究使用无约束压缩(UCC)技术对人眼和猪眼巩膜的周边巩膜的压缩模量进行了特征描述。在 5%、10%和 15%的顺序压缩应变下,对人眼和猪眼巩膜周边的 UCC 应力松弛测试进行了测试。我们的结果表明,男性人眼样本中的排空平衡应力(在 5%时)随年龄呈线性下降,从 78 岁时的 79.4Pa 下降到 89 岁时的 40.1Pa。人眼和猪眼巩膜的排空割线模量(E(5))分别为 1.1+/-0.08kPa 和 3.9+/-0.57kPa。我们的实验结果还表明,排空平衡应力随压缩应变的增加呈非线性增加。这里报告的巩膜压缩刚度提供了有关周边眼部组织力学响应的重要信息。这些信息将有助于未来对巩膜的计算模拟,特别是在理解 ONH 附近的机械损伤方面。此外,我们的结果表明,巩膜的生物力学响应随年龄发生变化,这表明这些因素可能在年龄相关性青光眼的发病率增加中发挥作用。

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