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首页> 外文期刊>Journal of biomechanical engineering. >Combined Bone Ingrowth and Remodeling Around Uncemented Acetabular Component: A Multiscale Mechanobiology-Based Finite Element Analysis
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Combined Bone Ingrowth and Remodeling Around Uncemented Acetabular Component: A Multiscale Mechanobiology-Based Finite Element Analysis

机译:联合骨骼形成和重塑周围的髋臼成分:基于多尺度力学学的有限元分析

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摘要

Bone ingrowth and remodeling are two different evolutionary processes which might occur simultaneously. Both these processes are influenced by local mechanical stimulus. However, a combined study on bone ingrowth and remodeling has rarely been performed. This study is aimed at understanding the relationship between bone ingrowth and adaptation and their combined influence on fixation of the acetabular component. Based on three-dimensional (3D) macroscale finite element (FE) model of implanted pelvis and microscale FE model of implant-bone interface, a multiscale framework has been developed. The numerical prediction of peri-acetabular bone adaptation was based on a strain-energy density-based formulation. Bone ingrowth in the microscale models was simulated using the mechanoregulatory algorithm. An increase in bone strains near the acetabular rim was observed in the implanted pelvis model, whereas the central part of the acetabulum was observed to be stress shielded. Consequently, progressive bone apposition near the acetabular rim and resorption near the central region were observed. Bone remodeling caused a gradual increase in the implant-bone relative displacements. Evolutionary bone ingrowth was observed around the entire acetabular component. Poor bone ingrowth of 3-5% was predicted around the centro-inferio and inferio-posteriosuperio-peripheral regions owing to higher implant-bone relative displacements, whereas the anterio-inferior and centro-superior regions exhibited improved bone ingrowth of 35-55% due to moderate implant-bone relative displacement. For an uncemented acetabular CoCrMo component, bone ingrowth had hardly any effect on bone remodeling; however, bone remodeling had considerable influence on bone ingrowth.
机译:骨头生长和重塑是两个不同的进化过程,其可能同时发生。这两种过程都受到局部机械刺激的影响。然而,很少进行对骨骼发热和重塑的组合研究。本研究旨在了解骨骼生态和适应之间的关系及其对髋臼成分固定的影响。基于三维(3D)宏观有限元(FE)植入骨界面的植入式骨盆和微观FE模型的植入骨界面,已经开发了多尺度框架。 Peri-acetabular骨适应的数值预测基于基于应变能密度的制剂。使用机械调节算法模拟微观模型中的骨骼环。在植入的骨盆模型中观察到髋臼边缘附近的骨菌株的增加,而髋臼的中心部分被观察到应应力屏蔽。因此,观察到髋臼边缘附近的渐进性骨骼与中央区域附近的吸收。骨重塑引起植入骨相对位移的逐渐增加。在整个髋臼成分周围观察到进化骨骼注入。由于植入骨骼相对位移更高的植入物 - 骨相对位移,预测了3-5%的骨头骨骼差,围绕甲型 - 骨质和介质 - 后期 - 出版物 - 外周区域预测。由于中植入骨骼相对位移。对于未发布的髋臼COCRMO组分,骨骼伸缩性对骨重塑几乎没有任何影响;然而,骨质重塑对骨骼的产生相当有影响。

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