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A Viscoelastic Constitutive Model Can Accurately Represent Entire Creep Indentation Tests of Human Patella Cartilage

机译:粘弹性本构模型可以准确地代表人髌骨软骨的整个蠕变压痕试验

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摘要

Cartilage material properties provide important insights into joint health, and cartilage material models are used in whole-joint finite element models. Although the biphasic model representing experimental creep indentation tests is commonly used to characterize cartilage, cartilage short-term response to loading is generally not characterized using the biphasic model. The purpose of this study was to determine the short-term and equilibrium material properties of human patella cartilage using a viscoelastic model representation of creep indentation tests. We performed 24 experimental creep indentation tests from 14 human patellar specimens ranging in age from 20 to 90 years (median age 61 years). We used a finite element model to reproduce the experimental tests and determined cartilage material properties from viscoelastic and biphasic representations of cartilage. The viscoelastic model consistently provided excellent representation of the short-term and equilibrium creep displacements. We determined initial elastic modulus, equilibrium elastic modulus, and equilibrium Poisson’s ratio using the viscoelastic model. The viscoelastic model can represent the short-term and equilibrium response of cartilage and may easily be implemented in whole-joint finite element models.
机译:软骨材料的特性为关节健康提供了重要的见识,而软骨材料模型则用于全关节有限元模型中。尽管代表实验蠕变压痕测试的双相模型通常用于表征软骨,但是使用双相模型通常无法表征软骨对负荷的短期反应。这项研究的目的是使用蠕变压痕测试的粘弹性模型表示来确定人类human骨软骨的短期和平衡物质特性。我们对年龄在20至90岁(中位年龄61岁)的14个人类human骨标本进行了24次实验性蠕变压痕测试。我们使用有限元模型重现了实验测试,并根据软骨的粘弹性和双相表示确定了软骨的材料特性。粘弹性模型始终如一地提供了短期和平衡蠕变位移的出色表示。我们使用粘弹性模型确定了初始弹性模量,平衡弹性模量和平衡泊松比。粘弹性模型可以代表软骨的短期和平衡反应,可以很容易地在全关节有限元模型中实现。

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