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Finite element implementation of a multiscale model of the human lens capsule

机译:人工晶状体囊多尺度模型的有限元实现

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An axisymmetric finite element implementation of a previously described structural constitutive model for the human lens capsule (Burd in Biomech Model Mechanobiol 8(3):217-231, 2009) is presented. This constitutive model is based on a hyperelastic approach in which the network of collagen IV within the capsule is represented by an irregular hexagonal planar network of hyperelastic bars, embedded in a hyperelastic matrix. The paper gives a detailed specification of the model and the periodic boundary conditions adopted for the network component. Momentum balance equations for the network are derived in variational form. These balance equations are used to develop a nonlinear solution scheme to enable the equilibrium configuration of the network to be computed. The constitutive model is implemented within a macroscopic finite element framework to give a multiscale model of the lens capsule. The possibility of capsule wrinkling is included in the formulation. To achieve this implementation, values of the first and second derivatives of the strain energy density with respect to the in-plane stretch ratios need to be computed at the local, constitutive model, level. Procedures to determine these strain energy derivatives at equilibrium configurations of the network are described. The multiscale model is calibrated against previously published experimental data on isolated inflation and uniaxial stretching of ex vivo human capsule samples. Two independent example lens capsule inflation analyses are presented.
机译:提出了先前描述的用于人晶状体囊的结构本构模型的轴对称有限元实现方式(Burd in Biomech Model Mechanobiol 8(3):217-231,2009)。该本构模型基于超弹性方法,其中胶囊中胶原IV的网络由嵌入超弹性基质中的不规则六边形平面超弹性棒状六边形平面网络表示。本文给出了模型的详细说明以及网络组件采用的周期性边界条件。网络的动量平衡方程式是以变体形式导出的。这些平衡方程用于开发非线性解决方案,以使网络的平衡配置得以计算。本构模型在宏观有限元框架内实现,以给出晶状体囊的多尺度模型。制剂中包括胶囊起皱的可能性。为了实现该实现,需要在局部本构模型水平上计算相对于面内拉伸比的应变能密度的一阶和二阶导数值。描述了在网络的平衡配置下确定这些应变能导数的过程。针对先前发表的关于离体人胶囊样品的孤立膨胀和单轴拉伸的实验数据,对多尺度模型进行了校准。提出了两个独立的示例性晶状体囊膨胀分析。

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