Rakotomanana R L, Leyvraz P F, Curnier A, Heegaard J H, Rubin P J
Hôpital Orthopédique, Switzerland.
J Biomech. 1992 Dec;25(12):1413-24. doi: 10.1016/0021-9290(92)90055-6.
A numerical model based on the finite element method was developed for the load transfer analysis at the tibial bone-implant interfaces in total knee replacement. A transverse isotropic material model, based on a quadratic elastic potential and on Hill's quadratic yield criterion, was next developed for bone constitutive laws. The bone-cement and bone-prosthesis interfaces were both assumed to be discontinuous. A dry friction model based on Coulomb's criterion was adopted for the interfaces friction. The model was shown to be able to give compressive and shear stresses distributions and distractive and relative shear micromotions at these interfaces. A preliminary application was conducted for cemented metal tray total condylar (MTTC) and for cemented and uncemented porous coated anatomic (PCA) tibial plateaus. The PCA plateaus were found to be more deformable and had greater global displacements than the MTTC one. Debonding of the bone-peg interface was observed for the uncemented PCA. Correspondingly, the stress peaks at the interface beneath the tray were lower for the uncemented PCA. Correspondingly, the stress peaks at the interface beneath the tray were lower for the PCA than for the MTTC. Shear micromotions appeared under the tray for both the two prostheses. We observed that bone anisotropy and interface discontinuity affected the results sensibly.
为了分析全膝关节置换中胫骨骨-植入物界面的载荷传递,基于有限元方法开发了一个数值模型。接下来,基于二次弹性势和希尔二次屈服准则,为骨本构定律开发了一个横观各向同性材料模型。骨-水泥和骨-假体界面均假定为不连续。界面摩擦采用基于库仑准则的干摩擦模型。结果表明,该模型能够给出这些界面处的压缩应力和剪应力分布以及拉伸和相对剪切微运动。对骨水泥型金属托盘全髁(MTTC)以及骨水泥型和非骨水泥型多孔涂层解剖型(PCA)胫骨平台进行了初步应用。发现PCA平台比MTTC平台更易变形且具有更大的整体位移。在非骨水泥型PCA中观察到骨栓界面脱粘。相应地,非骨水泥型PCA托盘下方界面处的应力峰值低于MTTC。相应地,PCA托盘下方界面处的应力峰值低于MTTC。两种假体在托盘下方均出现剪切微运动。我们观察到骨各向异性和界面不连续性对结果有显著影响。