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Biomechanical FEM model of the cornea in femtosecond laser assisted keratoplasty

机译:Femtosecond激光辅助角膜形成术中角膜的生物力学有限元模型

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Femtosecond laser is routinely used in Ophthalmology to cut donor and patient's cornea in lamellar or penetrating keratoplasty. Different cut shapes can be chosen, on the basis of the specific patient's pathology and morphology and on surgeon's skills. Different cut geometries provide different internal load resistance of the cornea, and this can affect the surgical outcomes. This work aims to qualitatively evaluate the biomechanical load resistance of the different configurations that are currently used in laser assisted keratoplasty, in order to support the surgeon's choice. A 3D finite-element biomechanical model of the human cornea was developed and different geometric configurations were designed, taking into account the possible different orientations of the cornea lamellae. We evidenced a different wound resistance to internal loads in the different laser trephined profiles, as well as a different distribution of the stresses in relation to the donor cornea orientation. The analyzed profiles are the mushroom, top hat and anvil. The anvil profile resulted more resistant to the increasing internal pressure, in accordance with the clinical results. The anvil profile enabled the apposition of a restricted number of sutures and early suture removal, thanks to its greater mechanical load resistance. These advantages can contribute to a faster visual recovery in patients undergoing penetrating keratoplasty.
机译:Femtosecond激光常常用于眼科,将供体和患者的角膜切割在层状或渗透的角膜成形术中。在特定的患者的病理和形态以及外科医生的技能的基础上,可以选择不同的切割形状。不同的剪切几何形状提供了角膜的不同内部负荷电阻,这会影响外科手术结果。这项工作旨在定性评价当前的激光辅助角膜移植术中使用的不同配置的生物力学负载电阻,以支持外科医生的选择。开发了人角膜的3D有限元生物力学模型,设计了不同的几何配置,考虑到角膜薄膜的可能不同取向。我们证明了不同激光器花纹型材中的内部载荷的不同伤口抗性,以及与供体角膜定位相关的应力的不同分布。分析的型材是蘑菇,顶部帽子和铁砧。根据临床结果,砧座型材导致内部压力造成更高的内部压力。砧座轮廓使得透明数量的缝合线和早期缝合线移除,得益于其较大的机械负载阻力。这些优点可以有助于渗透渗透术患者的速度较快的视觉恢复。

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