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Experimental assessment of corneal anisotropy.

机译:角膜各向异性的实验评估。

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摘要

PURPOSE: To determine the variation of corneal biomechanical properties with anatomical orientation. METHODS: Strip specimens extracted from fresh porcine corneas were tested under uniaxial tension with strain rates representing static and dynamic loading conditions. The specimens were extracted from the vertical, horizontal, and 45 degrees diagonal directions. The load elongation results were used to derive the stress-strain behavior of each specimen. The average behavior for specimens taken in each anatomical direction was determined along with the effect of strain rate. Specimens from a small number of human corneas were included in the study to verify the findings. RESULTS: Specimens extracted from the vertical direction of porcine and human corneas demonstrated the highest strength (fracture stress) followed by horizontal then diagonal specimens. Vertical specimens were 10% to 20% stronger than horizontal specimens in porcine and human corneas. At low strain rates (1%/min), vertical specimens displayed similar stiffness (resistance to deformation) to horizontal specimens but greater stiffness than diagonal specimens. On increasing the strain rate to 500%/min, the stiffness behavior matched that of strength with vertical specimens being 10% to 20% stiffer than horizontal specimens in porcine and human corneas. CONCLUSIONS: The corneal anisotropic behavior is compatible with the preferential orientation of stromal fibrils in the vertical and horizontal directions. Quantifying the effect of this nonuniform fibril organization on corneal anisotropic behavior will be useful in developing numerical models of the cornea for applications where its integrity is compromised such as in simulating refractive surgery procedures.
机译:目的:确定角膜生物力学特性随解剖方向的变化。方法:从新鲜猪角膜提取的带状标本在单轴张力下进行测试,应变率代表静态和动态加载条件。从垂直,水平和45度对角线方向提取样本。载荷伸长结果被用来推导每个试样的应力应变行为。确定沿每个解剖方向采集的标本的平均行为以及应变率的影响。该研究包括少量人角膜的标本,以验证发现。结果:从猪和人角膜的垂直方向提取的标本显示出最高的强度(断裂应力),其次是水平然后是对角标本。猪和人角膜的垂直标本比水平标本强10%至20%。在低应变率(1%/ min)下,垂直样本显示出与水平样本相似的刚度(抗变形性),但比对角样本显示出更高的刚度。在将应变率提高到500%/ min时,刚度行为与强度相匹配,在猪和人角膜中,垂直样本的硬度比水平样本的硬度高10%至20%。结论:角膜各向异性行为与基质纤维在垂直和水平方向上的优先取向兼容。量化这种不均匀的原纤维组织对角膜各向异性行为的影响,对于开发其完整性受损的应用的角膜数值模型,例如模拟屈光手术程序,将很有用。

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