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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Biomechanical analysis of the keratoconic cornea.
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Biomechanical analysis of the keratoconic cornea.

机译:角抗圆角角膜的生物力学分析。

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摘要

Keratoconus is a non-inflammatory disease characterized by irregular thinning and gradual bulging of the cornea, which results in distortion of the corneal surface that causes blurred vision. We conducted three-dimensional finite element (FE) simulations to analyze the biomechanical factors contributing to the distorted shape of a keratoconic cornea. We assumed orthotropic linear elastic tissue mechanical properties, and simulated localized tissue thinning (reduction from 0.5 mm to 0.35 or 0.2 mm). We analyzed tissue deformations, stresses and theoretical dioptric power maps predicted by the models, for intraocular pressure (IOP) of 10, 15 20 and 25 mmHg. The analyses revealed that three factors affect the shape distortion of keratoconic corneas: (i) localized thinning, and (ii) reduction in the tissue's meridian elastic modulus or (iii) reduction in the shear modulus perpendicular to the corneal surface, whereas thinning showed the most predominant effect. Maximal stress levels occurred at the centers of the bulged regions, at the thinnest points. The IOP levels had little influence on dioptric power in the healthy cornea, but a substantial influence in keratoconic conditions. The present FE studies allowed characterization of the biomechanical interactions in keratoconus, toward understanding the aetiology of this poorly studied malady.
机译:角蛋白是一种非炎症性疾病,其特征在于角膜不规则稀释和逐渐膨胀,导致导致视力模糊的角膜表面的变形。我们进行了三维有限元(FE)模拟,分析了对角振来角膜扭曲的扭曲形状有助于扭曲的生物力学因素。我们假设正交性线性弹性组织机械性能,并模拟局部组织变薄(减少0.5mm至0.35或0.2 mm)。我们分析了模型预测的组织变形,应力和理论屈光度贴图,用于10,15 20和25mmHg的眼内压(IOP)。分析表明,三个因素影响了角振来的角膜的形状畸变:(i)局部变薄,(ii)减少组织的子午子弹性模量或(iii)的剪切模量垂直于角膜表面的剪切模量,而变薄显示最主要的效果。在凸出的区域的中心处发生最大应力水平,在最薄的点处。 IOP水平对健康角膜中的屈光度影响几乎没有影响,但在角截骨胶质条件下有重大影响。目前的Fe研究允许表征角蛋白酶的生物力学相互作用,了解这种疾病的疾病。

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