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经股截肢者有限元模型中骨与软组织边界条件的发生率。

Incidence of the boundary condition between bone and soft tissue in a finite element model of a transfemoral amputee.

作者信息

Ramírez Juan Fernando, Vélez Jaime Andrés

机构信息

National University of Colombia, Colombia.

出版信息

Prosthet Orthot Int. 2012 Dec;36(4):405-14. doi: 10.1177/0309364612436409. Epub 2012 Feb 21.

DOI:10.1177/0309364612436409
PMID:22354886
Abstract

BACKGROUND

Many finite element investigations have been made in the field of lower limb prosthetics; however, friction between bone and soft tissues as a boundary condition has not been considered.

OBJECTIVES

To establish whether the change in the contact boundary condition between bone and soft tissues in a transfemoral amputee affects the stress-strain state on the residual limb.

STUDY DESIGN

Finite element analysis comparison.

METHODS

Finite element models of four transfemoral amputees were developed. In these models the socket, soft tissues and femur were included and two simulations were made for each model, in one of them the interaction between bone and soft tissues was defined as tied (there is no relative displacement between surfaces) and in the other it was defined as a friction boundary condition.

RESULTS

The von Mises stress and strain peaks are higher when the friction definition is used than for tied contact definition. The distribution pattern of stresses and strains also change when the contact definition varies from tied to friction.

CONCLUSIONS

It was concluded that the friction between bone and soft tissues have a significant impact on the results of finite element models of lower limb prosthetic systems, and therefore in its predictive capabilities. Clinical relevance Understanding the bone-soft tissue interaction can lead to more realistic and accurate finite element models used to predict the stress-strain state in the residual limb of prosthetic users and therefore predict the occurrence of deep tissue injuries.

摘要

背景

在下肢假肢领域已经进行了许多有限元研究;然而,尚未考虑骨与软组织之间的摩擦作为边界条件。

目的

确定经股骨截肢者骨与软组织之间接触边界条件的变化是否会影响残肢上的应力应变状态。

研究设计

有限元分析比较。

方法

建立了四名经股骨截肢者的有限元模型。在这些模型中包括了接受腔、软组织和股骨,并且对每个模型进行了两次模拟,其中一次将骨与软组织之间的相互作用定义为绑定(表面之间没有相对位移),另一次将其定义为摩擦边界条件。

结果

使用摩擦定义时的von Mises应力和应变峰值高于绑定接触定义时的峰值。当接触定义从绑定变为摩擦时,应力和应变的分布模式也会改变。

结论

得出的结论是,骨与软组织之间的摩擦对下肢假肢系统有限元模型的结果及其预测能力有重大影响。临床意义了解骨-软组织相互作用可以导致更真实、准确的有限元模型,用于预测假肢使用者残肢中的应力应变状态,从而预测深部组织损伤的发生。

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