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首页> 外文期刊>Journal of Biomechanics >Flat medial-lateral conformity in total knee replacements does not minimize contact stresses
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Flat medial-lateral conformity in total knee replacements does not minimize contact stresses

机译:全膝关节置换术中内侧-外侧的顺应性不能最大程度地减少接触压力

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The potential for wear in UHMWPE components For total knee replacements can be reduced by decreasing the stresses and strains arising from tibial-femoral contact. The conformity of the articular surfaces has a large effect on the resultant stresses, and components that achieve flat medial-lateral contact have been assumed to produce the lowest stresses due to their perfect conformity. We computed the stresses arising from curved and flat contact on a half-space using two-dimensional. plane strain elasticity solutions and finite element analyses to compare the performance of curved and flat indenters. These indenters were represented by a polynomial so the profiles could be continuously varied from curved to flat. Curved contact resulted in maximum stresses at the center of contact, while flat contact produced maximum stresses at the edge of contact. In addition, three contemporary tibia[ configurations (flat-on-flat, curved-on-flat, and curved-on-curved geometries) were analyzed using the finite element method with nonlinear material properties. The maximum contact stress, von Mises stress, and von Mises strain were lowest for the curved-on-curved model. The other configurations resulted in higher contact stresses, von Mises stresses, and von Mises strains. The perfect conformity arising from flat contact did not reduce the contact stresses in the UHMWPE component. The tensile stresses, however, were lowest for the flat-on-flat geometry compared with the other two configurations. Relating these distinct differences could prove useful in interpretation of data from simulator and retrieval studies. (C) 20021 Elsevier Science Ltd. All rights reserved. [References: 17]
机译:UHMWPE部件的磨损可能性可通过减少胫股接触引起的应力和应变来减少全膝关节置换的可能性。关节表面的顺应性对所产生的应力影响很大,由于其完美的顺应性,假定实现平坦的内外侧接触的组件产生的应力最低。我们使用二维计算了在半空间上弯曲和平坦接触所产生的应力。平面应变弹性解和有限元分析来比较弯曲和平坦压头的性能。这些压头由多项式表示,因此轮廓可以从弯曲到平坦连续变化。弯曲接触在接触中心产生最大应力,而平面接触在接触边缘产生最大应力。此外,使用具有非线性材料特性的有限元方法,分析了三种当代胫骨结构(平面平坦,曲线弯曲和曲线弯曲)。对于弯曲曲线模型,最大接触应力,von Mises应力和von Mises应变最低。其他配置导致较高的接触应力,von Mises应力和von Mises应变。平接触产生的完美一致性并没有降低UHMWPE组件中的接触应力。但是,与其他两种构造相比,平面上平坦几何形状的拉应力最低。将这些明显的差异联系起来对于证明模拟器和检索研究中的数据很有用。 (C)20021 Elsevier ScienceLtd。保留所有权利。 [参考:17]

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