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骨水泥-骨界面的微观力学建模:摩擦、形态及材料特性对微观力学响应的影响

Micro-mechanical modeling of the cement-bone interface: the effect of friction, morphology and material properties on the micromechanical response.

作者信息

Janssen Dennis, Mann Kenneth A, Verdonschot Nico

机构信息

Radboud University Nijmegen Medical Centre, Orthopaedic Research Laboratory, P.O. Box 9101, 6500 HB Nijmegen, The Netherlands.

出版信息

J Biomech. 2008 Nov 14;41(15):3158-63. doi: 10.1016/j.jbiomech.2008.08.020. Epub 2008 Oct 10.

Abstract

In order to gain insight into the micro-mechanical behavior of the cement-bone interface, the effect of parametric variations of frictional, morphological and material properties on the mechanical response of the cement-bone interface were analyzed using a finite element approach. Finite element models of a cement-bone interface specimen were created from micro-computed tomography data of a physical specimen that was sectioned from an in vitro cemented total hip arthroplasty. In five models the friction coefficient was varied (mu=0.0; 0.3; 0.7; 1.0 and 3.0), while in one model an ideally bonded interface was assumed. In two models cement interface gaps and an optimal cement penetration were simulated. Finally, the effect of bone cement stiffness variations was simulated (2.0 and 2.5 GPa, relative to the default 3.0 GPa). All models were loaded for a cycle of fully reversible tension-compression. From the simulated stress-displacement curves the interface deformation, stiffness and hysteresis were calculated. The results indicate that in the current model the mechanical properties of the cement-bone interface were caused by frictional phenomena at the shape-closed interlock rather than by adhesive properties of the cement. Our findings furthermore show that in our model maximizing cement penetration improved the micromechanical response of the cement-bone interface stiffness, while interface gaps had a detrimental effect. Relative to the frictional and morphological variations, variations in the cement stiffness had only a modest effect on the micro-mechanical behavior of the cement-bone interface. The current study provides information that may help to better understand the load-transfer mechanisms taking place at the cement-bone interface.

摘要

为了深入了解骨水泥-骨界面的微观力学行为,采用有限元方法分析了摩擦、形态和材料性能的参数变化对骨水泥-骨界面力学响应的影响。从体外骨水泥固定全髋关节置换术中截取的物理标本的微观计算机断层扫描数据创建了骨水泥-骨界面标本的有限元模型。在五个模型中,摩擦系数有所变化(μ = 0.0;0.3;0.7;1.0和3.0),而在一个模型中假定为理想粘结界面。在两个模型中模拟了骨水泥界面间隙和最佳骨水泥渗透情况。最后,模拟了骨水泥刚度变化的影响(相对于默认的3.0 GPa,为2.0和2.5 GPa)。所有模型均承受一个完全可逆的拉伸-压缩循环加载。根据模拟的应力-位移曲线计算界面变形、刚度和滞后。结果表明,在当前模型中,骨水泥-骨界面的力学性能是由形状封闭互锁处的摩擦现象引起的,而不是由骨水泥的粘结性能引起的。我们的研究结果还表明,在我们的模型中,最大化骨水泥渗透可改善骨水泥-骨界面刚度的微观力学响应,而界面间隙则有不利影响。相对于摩擦和形态变化,骨水泥刚度变化对骨水泥-骨界面的微观力学行为只有适度影响。当前研究提供的信息可能有助于更好地理解骨水泥-骨界面处发生的载荷传递机制。

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