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用三维有限元模型评估对称和渐进性非对称角膜内环片段引起的局部屈光变化。

Localized Refractive Changes Induced by Symmetric and Progressive Asymmetric Intracorneal Ring Segments Assessed with a 3D Finite-Element Model.

作者信息

García de Oteyza Gonzalo, Álvarez de Toledo Juan, Barraquer Rafael I, Kling Sabine

机构信息

Clínica Oftalmológica García de Oteyza, 08017 Barcelona, Spain.

Escuela de Doctorado, Universidad Autónoma de Barcelona (UAB), 08193 Barcelona, Spain.

出版信息

Bioengineering (Basel). 2023 Aug 27;10(9):1014. doi: 10.3390/bioengineering10091014.

Abstract

To build a representative 3D finite element model (FEM) for intracorneal ring segment (ICRS) implantation and to investigate localized optical changes induced by different ICRS geometries, a hyperelastic shell FEM was developed to compare the effect of symmetric and progressive asymmetric ICRS designs in a generic healthy and asymmetric keratoconic (KC) cornea. The resulting deformed geometry was assessed in terms of average curvature via a biconic fit, sagittal curvature (K), and optical aberrations via Zernike polynomials. The sagittal curvature map showed a locally restricted flattening interior to the ring (Kmax -11 to -25 dpt) and, in the KC cornea, an additional local steepening on the opposite half of the cornea (Kmax up to +1.9 dpt). Considering the optical aberrations present in the model of the KC cornea, the progressive ICRS corrected vertical coma (-3.42 vs. -3.13 µm); horizontal coma (-0.67 vs. 0.36 µm); and defocus (2.90 vs. 2.75 µm), oblique trefoil (-0.54 vs. -0.08 µm), and oblique secondary astigmatism (0.48 vs. -0.09 µm) aberrations stronger than the symmetric ICRS. Customized ICRS designs inspired by the underlying KC phenotype have the potential to achieve more tailored refractive corrections, particularly in asymmetric keratoconus patterns.

摘要

为构建用于角膜内环植入术(ICRS)的代表性三维有限元模型(FEM),并研究不同ICRS几何形状引起的局部光学变化,开发了一种超弹性壳有限元模型,以比较对称和渐进非对称ICRS设计在一般健康和非对称圆锥角膜(KC)中的效果。通过双圆锥拟合评估平均曲率、矢状曲率(K),并通过泽尼克多项式评估光学像差,从而对产生的变形几何形状进行评估。矢状曲率图显示环内局部受限变平(Kmax为-11至-25 dpt),在圆锥角膜中,角膜另一半出现额外局部变陡(Kmax高达+1.9 dpt)。考虑到圆锥角膜模型中存在的光学像差,渐进式ICRS矫正了垂直彗差(-3.42对-3.13 µm)、水平彗差(-0.67对0.36 µm)、散焦(2.90对2.75 µm)、斜三叶像差(-0.54对-0.08 µm)和斜二次散光(0.48对-0.09 µm),比对称ICRS产生的像差更强。受潜在圆锥角膜表型启发的定制ICRS设计有可能实现更个性化的屈光矫正,特别是在非对称圆锥角膜模式中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b13/10525444/f7a43ec7c3de/bioengineering-10-01014-g001.jpg

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本文引用的文献

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