Wei Junchao, Chen Peng, Han Pengfei, Liu Xiaona, Hou Jie, Wu Ce, Song Jie, Chen Weiyi, Li Xiaona
College of Biomedical Engineering, Taiyuan University of Technology, Taiyuan 030024, P. R. China.
Shanxi Aier Eye Hospital, Taiyuan 030012, P. R. China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2024 Feb 25;41(1):129-135. doi: 10.7507/1001-5515.202312022.
The mechanical properties of the cornea in corneal ectasia disease undergo a significant reduction, yet the alterations in mechanical properties within distinct corneal regions remain unclear. In this study, we established a rabbit corneal ectasia model by employing collagenase II to degrade the corneal matrix within a central diameter of 6 mm. Optical coherence tomography was employed for the assessment of corneal morphology (corneal thickness and corneal curvature) one month after operation. Anisotropy and viscoelastic characteristics of corneal tissue were evaluated through biaxial and uniaxial testing, respectively. The results demonstrated a marked decrease in central corneal thickness, with no significant changes observed in corneal curvature. Under different strains, the elastic modulus of the cornea exhibited no significant differences in the up-down and naso-temporal directions between the control and model groups. However, the cornea in the model group displayed a significantly lower elastic modulus compared to the control group. Specifically, the elastic modulus of the central region cornea in the model group was significantly lower than that of the entire cornea within the same group. Moreover, in comparison to the control group, the cornea in the model group exhibited a significant increase in both creep rate and overall deformation rate. The instantaneous modulus and equilibrium modulus were significantly reduced in the model cornea. No significant differences were observed between the entire cornea and the central cornea concerning these parameters. The results indicate that corneal anisotropy remains unchanged in collagenase-induced ectatic cornea. However, a significant reduction in viscoelastic properties is noticed. This study provides valuable insights for investigating changes in corneal mechanical properties within different regions of ectatic corneal disease.
角膜扩张症中角膜的力学性能显著降低,但不同角膜区域力学性能的变化仍不清楚。在本研究中,我们通过使用胶原酶II降解6mm中心直径内的角膜基质建立了兔角膜扩张模型。术后1个月采用光学相干断层扫描评估角膜形态(角膜厚度和角膜曲率)。分别通过双轴和单轴测试评估角膜组织的各向异性和粘弹性特征。结果显示中央角膜厚度显著降低,角膜曲率未见明显变化。在不同应变下,对照组和模型组角膜的弹性模量在上下方向和鼻颞方向均无显著差异。然而,模型组角膜的弹性模量明显低于对照组。具体而言,模型组中央区域角膜的弹性模量明显低于同组整个角膜的弹性模量。此外,与对照组相比,模型组角膜的蠕变率和总体变形率均显著增加。模型角膜的瞬时模量和平衡模量显著降低。在这些参数方面,整个角膜和中央角膜之间未观察到显著差异。结果表明,胶原酶诱导的扩张性角膜中角膜各向异性保持不变。然而,粘弹性特性显著降低。本研究为研究扩张性角膜疾病不同区域角膜力学性能的变化提供了有价值的见解。