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A 3D fluid-solid interaction model of the air puff test in the human cornea

机译:人角膜空气泡芙试验的3D流体固体相互作用模型

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We present a numerical model of a contactless test commonly used to assess the biomechanics of the human cornea. The test, consisting in a rapid air jet applied to the anterior surface of the cornea, is controversial. Although the numerous studies documented in the literature have not been able yet to clarify its relevance as a diagnostic tool, the test has the potential to be combined with inverse analysis procedures to characterize the parameters of numerical models of the cornea. With the final goal of employing the air puff test in advanced material identification algorithms, here we propose to model the cornea with standard finite elements and the fluids filling the anterior chamber of the eye with a meshfree discretization. The interaction between moving fluids and deforming cornea is accounted for by modifying the interface boundary conditions of both fluid and solid. The proposed model represents the first fully 3D example of an aqueous-cornea fluid-solid interaction analysis which uses a robust meshfree approach for the fluid. Although we restrict our scope to isotropic non-linear materials, numerical results confirm the undeniable importance of including internal fluids in the simulation of the air puff test. Thus the proposed approach stands as a procedural paradigm for the identification of the mechanical parameters of the human cornea.
机译:我们提出了一种常用的非接触式测试的数值模型,用于评估人体角膜的生物力学。在施加到角膜前表面的快速空气喷射中的测试是有争议的。虽然文献中的许多研究尚未能够澄清其作为诊断工具的相关性,但该测试具有与逆分析程序结合的可能性,以表征角膜数值模型的参数。随着在先进材料识别算法中采用空气粉扑试验的最终目标,在这里,我们建议用标准有限元和填充眼睛前室的流体以网眼防空化模拟角膜。通过改变流体和固体的界面边界条件来占移动流体和变形角膜之间的相互作用。所提出的模型代表了使用鲁棒网上溢流方法的含水角膜流体固体相互作用分析的第一全3D例。虽然我们将范围限制为各向同性的非线性材料,但数值结果证实了在空气粉扑试验模拟中包括内部流体的不可否认的重要性。因此,所提出的方法是用于鉴定人角膜的机械参数的程序范例。

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