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Corneal Viscoelastic Properties from Finite-Element Analysis of In Vivo Air-Puff Deformation

机译:体内气团变形有限元分析的角膜粘弹性

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摘要

Biomechanical properties are an excellent health marker of biological tissues, however they are challenging to be measured in-vivo. Non-invasive approaches to assess tissue biomechanics have been suggested, but there is a clear need for more accurate techniques for diagnosis, surgical guidance and treatment evaluation. Recently air-puff systems have been developed to study the dynamic tissue response, nevertheless the experimental geometrical observations lack from an analysis that addresses specifically the inherent dynamic properties. In this study a viscoelastic finite element model was built that predicts the experimental corneal deformation response to an air-puff for different conditions. A sensitivity analysis reveals significant contributions to corneal deformation of intraocular pressure and corneal thickness, besides corneal biomechanical properties. The results show the capability of dynamic imaging to reveal inherent biomechanical properties in vivo. Estimates of corneal biomechanical parameters will contribute to the basic understanding of corneal structure, shape and integrity and increase the predictability of corneal surgery.
机译:生物力学特性是生物组织的极佳健康标志,但是要在体内进行测量则具有挑战性。已经提出了用于评估组织生物力学的非侵入性方法,但是显然需要更准确的技术来进行诊断,手术指导和治疗评估。最近,已经开发出气吹系统来研究动态组织反应,然而,从专门针对固有动态特性的分析中缺乏实验几何观察。在这项研究中,建立了粘弹性有限元模型,该模型预测了在不同条件下对吹气的实验性角膜变形响应。敏感性分析显示,除了角膜生物力学特性外,还对眼内压和角膜厚度对角膜变形有重要作用。结果表明动态成像能够揭示体内固有的生物力学特性。角膜生物力学参数的估计将有助于对角膜结构,形状和完整性的基本了解,并增加角膜手术的可预测性。

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