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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Mechanical properties of normal and osteoarthritic human articular cartilage
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Mechanical properties of normal and osteoarthritic human articular cartilage

机译:正常和骨关节炎人关节软骨的力学性能

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Isotropic hyperelastic models have been used to determine the material properties of normal human cartilage, but there remains an incomplete understanding of how these properties may be altered by osteoarthritis. The aims of this study were to (1) measure the material constants of normal and osteoarthritic human knee cartilage using isotropic hyperelastic models; (2) determine whether the material constants correlate with histological measures of structure and/or cartilage tissue damage; and (3) quantify the abilities of two common isotropic hyperelastic material models, the neo-Hookean and Yeoh models, to describe articular cartilage contact force, area, and pressure. Small osteochondral specimens of normal and osteoarthritic condition were retrieved from human cadaveric knees and from the knees of patients undergoing total knee arthroplasty and tested in unconfined compression at loading rates and large strains representative of weight bearing activity. Articular surface contact area and lateral deformation were measured concurrently and specimen-specific finite element models then were used to determine the hyperelastic material constants. Structural parameters were measured using histological techniques while the severity of cartilage damage was quantified using the OARSI grading scale. The hyperelastic material constants correlated significantly with OARSI grade, indicating that the mechanical properties of cartilage for large strains change with tissue damage. The measurements of contact area described anisotropy of the tissue constituting the superficial zone. The Yeoh model described contact force and pressure more accurately than the neo-Hookean model, whereas both models under-predicted contact area and poorly described the anisotropy of cartilage within the superficial zone. These results identify the limits by which isotropic hyperelastic material models may be used to describe cartilage contact variables. This study provides novel data for the mechanical properties of normal and osteoarthritic human articular cartilage and enhances our ability to model this tissue using simple isotropic hyperelastic materials. Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:各向同性的超弹性模型已经被用来确定正常人软骨的材料特性,但是对于骨关节炎如何改变这些特性仍然没有完全的了解。这项研究的目的是(1)使用各向同性的超弹性模型来测量正常和骨关节炎人膝软骨的材料常数; (2)确定材料常数是否与组织结构和/或软骨组织损伤的组织学指标相关; (3)量化两种常见的各向同性超弹性材料模型,即Neo-Hookean和Yeoh模型,以描述关节软骨的接触力,面积和压力。从人的尸体膝盖和进行全膝关节置换术的患者的膝盖中取出正常和骨关节炎情况下的小型骨软骨标本,并在无负荷压力下以负荷率和代表负重活动的大菌株进行测试。同时测量关节的表面接触面积和横向变形,然后使用特定于样本的有限元模型确定超弹性材料常数。使用组织学技术测量结构参数,同时使用OARSI分级量表量化软骨损伤的严重程度。超弹性材料常数与OARSI等级显着相关,表明大应变软骨的机械性能随组织损伤而变化。接触面积的测量描述了构成表层区域的组织的各向异性。 Yeoh模型比Neo-Hookean模型更准确地描述了接触力和压力,而这两个模型都低估了接触面积,并且描述了表层区域内的软骨各向异性。这些结果确定了各向同性超弹性材料模型可用于描述软骨接触变量的限制。这项研究为正常和骨关节炎人类关节软骨的机械性能提供了新的数据,并增强了我们使用简单的各向同性超弹性材料对该组织进行建模的能力。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

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