首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Computational Evaluation of the Effects of Bone Ingrowth on Bone Resorptive Remodeling after a Cementless Total Hip Arthroplasty
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Computational Evaluation of the Effects of Bone Ingrowth on Bone Resorptive Remodeling after a Cementless Total Hip Arthroplasty

机译:非骨水泥全髋关节置换术后骨生长对骨吸收重构的影响的计算评估

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摘要

In this study, we simulated a wide cortex separation from a cementless hip prosthesis using the bone resorption remodeling method that is based on the generation of high com-pressive stress around the distal cortical bone. Thereafter, we estimated the effect on late migration quantities of the hip prosthesis produced by the interface state arising from bone ingrowth. This was accomplished using cortical bone remodeling over a long period of time. Two-dimensional natural hip and implanted hip FEM models were constructed with each of the following interface statements between the bone and prosthesis: (1) non-fixation, (2) proximal 1/3, (3) proximal 2/3 and (4) full-fixation. The fixation interfaces in the fully and partially porous coated regions were rigidly fixed by bony ingrowth. The non-fixation model was constructed as a critical situation, with the fibrous or bony tissue not integrated at all into the implant surface. The daily load history was generated using the three loading cases of a one-legged stance as well as abduction and adduction motions. With the natural hip and one-legged stance, the peak compressive principal stresses were found to be under the criteria value for causing bone resorption, while no implant movement occurred. The migration magnitude of the stem of the proximal 1/3 fixation model with adduction motion was much higher, reaching 6%, 11% and 21% greater than those of the non-fixation, proximal 2/3 fixation and all-fixation models, respectively. The full-fixation model showed the lowest compressive principal stress and implant movement. Thus, we concluded that the late loosening and subsequent movement of the stem in the long term could be estimated with the cortical bone remodeling method based on a high compressive stress at the bone-implant interface. The change caused at the bone-prosthesis interface by bony or fibrous tissue ingrowth constituted the major factor in determining the extent of cortical bone resorption occurring with clinical loosening and subsequent implant movement.
机译:在这项研究中,我们使用骨吸收重塑方法模拟了从非骨水泥型髋关节假体的广泛皮质分离,该方法基于在远端皮质骨周围产生高压应力。此后,我们估计了由于骨向内生长引起的界面状态对髋关节假体后期迁移量的影响。这是通过长时间使用皮质骨重塑来实现的。二维自然髋关节和植入式髋关节FEM模型在骨骼和假体之间具有以下每个界面陈述:(1)不固定,(2)近端1/3,(3)近端2/3和(4) )全注。在全部和部分多孔的涂覆区域中的固定界面通过骨向内生长而被牢固地固定。非固定模型被构造为临界情况,其中纤维或骨组织根本没有整合到植入物表面中。每日负荷历史记录是使用单腿姿势的三种负荷情况以及绑架和内收运动产生的。采用自然髋关节和单腿姿势,发现峰值压缩主应力在引起骨吸收的标准值以下,而没有发生植入物移动。具有内收运动的近端1/3固定模型的茎的迁移幅度要高得多,分别比非固定,近端2/3固定和全固定模型高6%,11%和21%,分别。全固定模型显示出最低的压缩主应力和植入物运动。因此,我们得出的结论是,根据骨-植入物界面处的高压缩应力,可以使用皮质骨重塑方法来估算茎的晚期松弛和随后的长期运动。由骨或纤维​​组织的向内生长在骨-假体界面处引起的变化是决定皮质松骨吸收程度的主要因素,该程度是由于临床松动和随后的植入物移动而发生的。

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