Grosland N, Kim J K, Park J B
Department of Biomedical Engineering, College of Engineering, University of Iowa, Iowa City 52242, USA.
Biomed Mater Eng. 1995;5(1):29-36.
The longevity of cemented total joint replacements, namely total hip arthroplasty (THA), depends on the integrity of the cement per se and interfaces of the metallic stem-cement and bone-cement, and stress/stress transmission and its distribution. A simple coil made of stainless steel wire was placed around a tapered stem in a simulated cement mantle to counteract the radial- and hoop-stresses created by the stem loading. Two-dimensional axisymmetric finite element analysis was performed to elucidate the level of the stress and its distribution with and without the wire coil. The results suggest that the peak stresses distributed throughout the cement may be reduced by more than one half, via the incorporation of a wire coil, confirming the mechanical test results, which showed an average fracture load of 3.70 +/- 1.13 kN for pure bone cement control and 9.02 +/- 1.54 kN for the wire coil reinforced specimens. These results indicate that the reinforcement of the cement mantle with a wire coil in the distal end of the hip stem prosthesis could reduce the hoop-stresses, which may results in reduced stresses in the bone and cement interface. Consequently, loosening of the interfaces of the bone-cement and cement-stem could be reduced due to the enhanced fatigue life of the bone cement mantle with favorable stress distribution at the distal tip of the stem.
骨水泥型全关节置换术,即全髋关节置换术(THA)的使用寿命,取决于骨水泥本身的完整性、金属柄-骨水泥和骨-骨水泥界面,以及应力/应力传递及其分布。在模拟骨水泥套的锥形柄周围放置一个由不锈钢丝制成的简单线圈,以抵消柄加载产生的径向和环向应力。进行二维轴对称有限元分析,以阐明有无线圈时应力的水平及其分布。结果表明,通过加入线圈,分布在整个骨水泥中的峰值应力可能会降低一半以上,这证实了力学测试结果,即纯骨水泥对照组的平均断裂载荷为3.70±1.13 kN,而线圈增强试件的平均断裂载荷为9.02±1.54 kN。这些结果表明,在髋关节柄假体远端用线圈增强骨水泥套可降低环向应力,这可能会降低骨和骨水泥界面的应力。因此,由于骨水泥套疲劳寿命的提高以及柄远端应力分布良好,骨-骨水泥和骨水泥-柄界面的松动可能会减少。