Garcia J J, Altiero N J, Haut R C
Department of Materials Science and Mechanics, Michigan State University, East Lansing 48824, USA.
J Biomech Eng. 1998 Oct;120(5):608-13. doi: 10.1115/1.2834751.
Stress analysis of contact models for isotropic articular cartilage under impacting loads shows high shear stresses at the interface with the subchondral bone and normal compressive stresses near the surface of the cartilage. These stress distributions are not consistent, with lesions observed on the cartilage surface of rabbit patellae from blunt impact, for example, to the patello-femoral joint. The purpose of the present study was to analyze, using the elastic capabilities of a finite element code, the stress distribution in more morphologically realistic transversely isotropic biphasic contact models of cartilage. The elastic properties of an incompressible material, equivalent to those of the transversely isotropic biphasic material at time zero, were derived algebraically using stress-strain relations. Results of the stress analysis showed the highest shear stresses on the surface of the solid skeleton of the cartilage and tensile stresses in the zone of contact. These results can help explain the mechanisms responsible for surface injuries observed during blunt insult experiments.
各向同性关节软骨在冲击载荷下接触模型的应力分析表明,在与软骨下骨的界面处存在高剪切应力,而在软骨表面附近存在正常压应力。这些应力分布并不一致,例如,对髌股关节进行钝性撞击后,在兔髌骨的软骨表面观察到了损伤。本研究的目的是利用有限元代码的弹性能力,分析在形态上更逼真的软骨横观各向同性双相接触模型中的应力分布。使用应力 - 应变关系,通过代数方法推导出一种不可压缩材料的弹性特性,该特性在时间为零时等同于横观各向同性双相材料的弹性特性。应力分析结果表明,软骨固体骨架表面的剪切应力最高,接触区域存在拉应力。这些结果有助于解释在钝性损伤实验中观察到的表面损伤的机制。