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Influence of functionally graded pores on bone ingrowth in cementless hip prosthesis: a finite element study using mechano-regulatory algorithm

机译:功能渐进孔对软泥髋关节假体骨形成的影响:用机械调节算法进行有限元研究

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Cementless hip prostheses with porous outer coating are commonly used to repair the proximally damaged femurs. It has been demonstrated that stability of prosthesis is also highly dependent on the bone ingrowth into the porous texture. Bone ingrowth is influenced by the mechanical environment produced in the callus. In this study, bone ingrowth into the porous structure was predicted by using a mechano-regulatory model. Homogenously distributed pores (200 and 800 m in diameter) and functionally graded pores along the length of the prosthesis were introduced as a porous coating. Bone ingrowth was simulated using 25 and 12 m micromovements. Load control simulations were carried out instead of traditionally used displacement control. Spatial and temporal distributions of tissues were predicted in all cases. Functionally graded pore decreasing models gave the most homogenous bone distribution, the highest bone ingrowth (98%) with highest average Young's modulus of all tissue phenotypes approximately 4.1 GPa. Besides this, the volume of the initial callus increased to 8.33% in functionally graded pores as compared to the 200 m pore size models which increased the bone volume. These findings indicate that functionally graded porous surface promote bone ingrowth efficiently which can be considered to design of surface texture of hip prosthesis.
机译:具有多孔外涂层的软泥髋关节假体通常用于修复近侧受损的股骨。已经证明假体的稳定性也高度依赖于骨骼的骨骼纹理。骨头向期受愈伤组织中产生的机械环境的影响。在该研究中,通过使用机械调节模型预测骨骼向多孔结构中的骨骼形成。将伴随着假体的长度的均匀分布孔(直径为800m)和功能渐变的孔作为多孔涂层。使用25和12μm微粒模拟骨骼注入。进行负载控制模拟而不是传统上使用的位移控制。在所有情况下预测了组织的空间和时间分布。功能渐进的孔隙减小模型具有最均匀的骨分布,最高骨骼|具有最高的杨氏模量的最高骨头(98%),所有组织表型约4.1GPa。除此之外,与增加骨体积的200米孔径模型相比,初始愈伤组织的体积增加到8.33%。这些发现表明,功能渐进的多孔表面促进有效地促进骨骼向期,这可以被认为是髋关节假体的表面纹理的设计。

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