Department of Mechanics, School of Mechanical Engineering, Tianjin University, Tianjin 300350, China.
Department of Mechanics, School of Mechanical Engineering, Tianjin University, Tianjin 300350, China.
J Biomech. 2024 May;169:112145. doi: 10.1016/j.jbiomech.2024.112145. Epub 2024 May 10.
To investigate the optimal cutting depth (Cap) in small incision lenticule extraction from the perspective of corneal biomechanics, a three-dimensional finite element model of the cornea was established using a stromal sub-regional material model to simulate small incision lenticule extraction. The displacement difference P at the central point of the posterior corneal surface before and after lenticule extraction, as well as the von Mises stress at four points of different thicknesses in the center of the cornea, were analyzed using the finite element model considering the hyperelastic property and the difference in stiffness between the anterior and posterior of the cornea. The numerical curves of P-Cap and von Mises Stress-Cap relations at different diopters show that the displacement difference P has a smallest value at the same diopter. In this case, the von Mises stress at four points with different thicknesses in the center of the cornea was also minimal. Which means that the optimal cutting depth exsisting in the cornea. Moreover, P-Cap curves for different depth of stromal stiffness boundaries show that the optimal cap thickness would change with the depth of the stromal stiffness boundary. These results are of guiding significance for accurately formulating small incision lenticule extraction surgery plans and contribute to the advancement of research on the biomechanical properties of the cornea.
为了从角膜生物力学的角度研究小切口微透镜提取的最佳切削深度(Cap),采用基质亚区材料模型建立了角膜的三维有限元模型,以模拟小切口微透镜提取。利用考虑角膜前、后弹性模量差异的超弹性有限元模型,分析了微透镜提取前后角膜后表面中心点的位移差异 P 以及角膜中心不同厚度四点的 von Mises 应力。不同屈光度下 P-Cap 和 von Mises 应力-Cap 关系的数值曲线表明,在相同的屈光度下,位移差异 P 具有最小值,此时角膜中心四点的 von Mises 应力也最小。这意味着角膜中存在最佳切削深度。此外,不同基质硬度边界深度的 P-Cap 曲线表明,最佳帽厚度会随着基质硬度边界的深度而变化。这些结果对准确制定小切口微透镜提取手术方案具有指导意义,有助于推进角膜生物力学特性的研究。