常规富氧交联后角膜生物力学评价。

Jia Wang, Lijun Wang, Zhi-wei Li, Yu Meng Wang, Kai‐di Zhu, Guoying Mu
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引用次数: 9

摘要

目的观察富氧和不富氧条件下角膜交联(CXL)术后角膜的生物力学变化。方法将60只新鲜猪角膜随机分为高氧环境下UVA照射下的1组(对照组)、2组(常规CXL)和3组(常规CXL)。交联后,从12点到6点用双刃刀取出5毫米宽的角膜条。每个带材的杨氏模量是通过应力应变测量确定的。三组间的比较采用单因素方差分析。结果在4%应变下,1、2、3组角膜杨氏模量分别为:0.68±0.20兆帕斯卡(MPa)、1.01±0.23 MPa、1.12±0.24 MPa。2、3组的杨氏模量值差异无统计学意义(P<0.05),但2、3组均显著高于1组(P<0.05)。在6%应变下,1、2、3组角膜的杨氏模量分别为:0.97±0.21、1.35±0.25、1.64±0.44 MPa;在8%应变下,杨氏模量分别为:1.29±0.26、1.72±0.45、2.20±0.74 MPa。在6%和8%应变下,3组角膜的杨氏模量显著高于1组和2组(P<0.05)。结论UVA照射时增加氧浓度可提高常规CXL的疗效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Corneal Biomechanical Evaluation After Conventional Corneal Crosslinking With Oxygen Enrichment.
PURPOSE To assess corneal biomechanical changes after conventional corneal crosslinking (CXL), with and without oxygen enrichment. METHODS Sixty fresh porcine corneas were randomly divided into group 1 (control), group 2 (conventional CXL), and group 3 (conventional CXL in a high-oxygen environment during ultraviolet A [UVA] irradiation). After crosslinking, a 5-mm wide corneal strip was extracted using a double-bladed knife from 12 to 6'o clock. The Young's modulus of each strip was determined by stress-strain measurements. A comparison between the three groups was performed with a one-way analysis of variance. RESULTS At 4% strain, the Young's modulus of the corneas in groups 1, 2, and 3 were: 0.68±0.20 megapascal (MPa), 1.01±0.23 MPa, and 1.12±0.24 MPa, respectively. The Young's modulus values for groups 2 and 3 showed no statistical significance (P>0.05), However, both groups 2 and 3 were significantly higher than group 1 (P<0.05). At 6% strain, the Young's modulus of the corneas in groups 1, 2, and 3 were: 0.97±0.21, 1.35±0.25, and 1.64±0.44 MPa, respectively, and at 8% strain, the Young's modulus was: 1.29±0.26, 1.72±0.45, 2.20±0.74 MPa, respectively. At 6% and 8% strain, the Young's modulus for the corneas in group 3 was significantly higher than those in both group 1 and group 2 (P<0.05). CONCLUSIONS Increasing oxygen concentration during UVA irradiation may improve the efficacy of conventional CXL.
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