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使用ABAQUS的软组织耦合孔隙超弹性质量传输(PHEXPT)有限元模型。

Coupled porohyperelastic mass transport (PHEXPT) finite element models for soft tissues using ABAQUS.

作者信息

Vande Geest Jonathan P, Simon B R, Rigby Paul H, Newberg Tyler P

机构信息

Department of Aerospace and Mechanical Engineering, Biomedical Engineering Interdisciplinary Program, and BIO5 Institute, University of Arizona, Tucson, AZ 85721, USA.

出版信息

J Biomech Eng. 2011 Apr;133(4):044502. doi: 10.1115/1.4003489.

Abstract

Finite element models (FEMs) including characteristic large deformations in highly nonlinear materials (hyperelasticity and coupled diffusive/convective transport of neutral mobile species) will allow quantitative study of in vivo tissues. Such FEMs will provide basic understanding of normal and pathological tissue responses and lead to optimization of local drug delivery strategies. We present a coupled porohyperelastic mass transport (PHEXPT) finite element approach developed using a commercially available ABAQUS finite element software. The PHEXPT transient simulations are based on sequential solution of the porohyperelastic (PHE) and mass transport (XPT) problems where an Eulerian PHE FEM is coupled to a Lagrangian XPT FEM using a custom-written FORTRAN program. The PHEXPT theoretical background is derived in the context of porous media transport theory and extended to ABAQUS finite element formulations. The essential assumptions needed in order to use ABAQUS are clearly identified in the derivation. Representative benchmark finite element simulations are provided along with analytical solutions (when appropriate). These simulations demonstrate the differences in transient and steady state responses including finite deformations, total stress, fluid pressure, relative fluid, and mobile species flux. A detailed description of important model considerations (e.g., material property functions and jump discontinuities at material interfaces) is also presented in the context of finite deformations. The ABAQUS-based PHEXPT approach enables the use of the available ABAQUS capabilities (interactive FEM mesh generation, finite element libraries, nonlinear material laws, pre- and postprocessing, etc.). PHEXPT FEMs can be used to simulate the transport of a relatively large neutral species (negligible osmotic fluid flux) in highly deformable hydrated soft tissues and tissue-engineered materials.

摘要

包含高度非线性材料(超弹性以及中性可移动物质的耦合扩散/对流输运)特征大变形的有限元模型(FEMs)将允许对体内组织进行定量研究。此类有限元模型将提供对正常和病理组织反应的基本理解,并有助于优化局部药物递送策略。我们提出了一种使用商业可用的ABAQUS有限元软件开发的耦合多孔超弹性质量输运(PHEXPT)有限元方法。PHEXPT瞬态模拟基于多孔超弹性(PHE)和质量输运(XPT)问题的顺序求解,其中使用自定义编写的FORTRAN程序将欧拉PHE有限元与拉格朗日XPT有限元耦合。PHEXPT的理论背景是在多孔介质输运理论的背景下推导出来的,并扩展到ABAQUS有限元公式中。在推导过程中明确确定了使用ABAQUS所需的基本假设。提供了具有代表性的基准有限元模拟以及解析解(适当时)。这些模拟展示了瞬态和稳态响应的差异,包括有限变形、总应力、流体压力、相对流体和可移动物质通量。在有限变形的背景下,还给出了重要模型考虑因素(例如材料特性函数和材料界面处的跳跃不连续性)的详细描述。基于ABAQUS的PHEXPT方法能够利用现有的ABAQUS功能(交互式有限元网格生成、有限元库、非线性材料定律、预处理和后处理等)。PHEXPT有限元模型可用于模拟高度可变形的水合软组织和组织工程材料中相对较大的中性物质的输运(可忽略的渗透流体通量)。

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