Mechanical and Industrial Engineering Department, University of Illinois at Chicago, Chicago, IL, USA.
Mechanical and Industrial Engineering Department, University of Illinois at Chicago, Chicago, IL, USA.
J Mech Behav Biomed Mater. 2022 Sep;133:105300. doi: 10.1016/j.jmbbm.2022.105300. Epub 2022 May 31.
The cornea is responsible for most of the refractive power in the eye and acts as a protective layer for internal contents of the eye. The cornea requires mechanical strength for maintaining its precise shape and for withstanding external and internal forces. Corneal collagen crosslinking (CXL) is a treatment option to improve corneal mechanical properties. The primary objective of this study was to characterize CXL effects on viscoelastic shear properties of the porcine cornea as a function of compressive strain. For this purpose, corneal buttons were prepared and divided into three groups: control group (n = 5), pseudo-crosslinked group (n = 5), and crosslinked group (n = 5). A rheometer was used to perform dynamics torsional shear experiments on corneal disks at different levels of compressive strain (0%-40%). Specifically, strain sweep experiments and frequency sweep tests were done in order to determine the range of linear viscoelasticity and frequency dependent shear properties, respectively. It was found that the shear properties of all samples were dependent on the shear strain magnitude, loading frequency, and compressive strain. With increasing the applied shear strain, all samples showed a nonlinear viscoelastic response. Furthermore, the shear modulus of samples increased with increasing the frequency of the applied shear strain and/or increasing the compressive strain. Finally, the CXL treatment significantly increased the shear storage and loss moduli when the compressive strain was varied from 0% to 30% (p < 0.05); larger shear moduli were observed at compressive 40% strain but the difference was not significant (P = 0.12).
角膜负责眼睛的大部分折射力,并作为眼睛内部内容的保护层。角膜需要机械强度来保持其精确的形状并承受外部和内部的力量。角膜胶原交联 (CXL) 是一种改善角膜机械性能的治疗选择。本研究的主要目的是研究 CXL 对猪眼角膜粘弹性剪切性能的影响,作为压缩应变的函数。为此,制备了角膜瓣并分为三组:对照组 (n=5)、伪交联组 (n=5) 和交联组 (n=5)。流变仪用于在不同压缩应变水平 (0%-40%) 下对角膜盘进行动态扭转剪切实验。具体来说,进行了应变扫描实验和频率扫描测试,分别用于确定线性粘弹性和频率相关剪切性能的范围。结果发现,所有样本的剪切性能都取决于剪切应变幅度、加载频率和压缩应变。随着施加的剪切应变增加,所有样本都表现出非线性粘弹性响应。此外,随着施加的剪切应变频率的增加和/或压缩应变的增加,样品的剪切模量增加。最后,当压缩应变从 0%变化到 30%时,CXL 处理显著增加了剪切储能和损耗模量(p<0.05);在压缩 40%应变时观察到较大的剪切模量,但差异不显著(P=0.12)。