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Computational modeling of corneal refractive surgery

机译:角膜屈光手术的计算模拟

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A finite element method was used to study the biomechanical behavior of the cornea and its response to refractive surgery when stiffness inhomogeneities varying with depth are considered. Side-by-side comparisons of different constitutive laws that have been commonly used to model refractive surgery were also performed. To facilitate the comparison, the material property constants were identified from the same experimental data, which were obtained from mechanical tests on corneal strips and membrane inflation experiments. We then validated the resulting model by comparing computed refractive power changes with clinical results. The model developed provides a much more predictable refractive outcome when the stiffness inhomogeneities of the cornea and nonlinearities of the deformations are included in the finite element simulations. Thus, it can be stated that the inhomogeneous model is a more accurate representation of the corneal material properties in order to model the biomechanical effects of refractive surgery. The simulations also revealed that the para-central and peripheral parts of the cornea deformed less in response to pressure loading compared to the central cornea and the limbus. Furthermore, the deformations in response to pressure loading predicted by the non-homogeneous and nonlinear model, showed that the para-central region is mechanically enhanced in the meridional direction. This result is in agreement with the experimentally documented regional differences reported in the literature by other investigators.
机译:采用有限元方法来研究角膜的生物机械特性及其对屈光手术响应当与深度变化的刚度不均匀性被考虑。还进行了并排侧的已常用的屈光手术车型不同本构关系的比较。为了便于比较,材料特性常数是从同一实验的数据,这是从机械试验的角膜条带和膜膨胀实验中获得的识别。然后,我们通过比较临床结果计算屈光力变化验证生成的模型。开发的模型提供了当角膜和变形的非线性的刚度不均匀性都包含在有限元模拟一个更可预测的折射的结果。因此,可以说的是,不均匀的模型是角膜的材料特性,以便建模屈光手术的生物力学效应的更准确的表示。该模拟还透露,角膜的对 - 中枢和外周部分响应于压力负荷变形少相比,中央角膜和角膜缘。此外,响应于由非均匀和非线性模型预测的压力载荷的变形,结果表明,对 - 中央区域在子午方向上机械增强。这一结果与其他研究人员在文献报道的实验记录的区域差异的协议。

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