首页> 外文期刊>Computer methods in biomechanics and biomedical engineering >Influence of femoral stem geometry, material and extent of porous coating on bone ingrowth and atrophy in cementless total hip arthroplasty: an iterative finite element model
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Influence of femoral stem geometry, material and extent of porous coating on bone ingrowth and atrophy in cementless total hip arthroplasty: an iterative finite element model

机译:非骨水泥型全髋关节置换术中股骨柄的几何形状,材料和多孔涂层的程度对骨向内生长和萎缩的影响:迭代有限元模型

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摘要

This work presents a computational model for the concurrent study of bone remodelling and ingrowth around cementless femoral stems in total hip arthroplasty. It is assumed that biological fixation depends upon the magnitude of relative displacement at the bone-stem interface as well as an ongoing updating of interface conditions during the remodelling process. The remodelling model determines the distribution of bone density by producing the stiffest structure for a given set of biological conditions at the point of equilibrium in bone turnover. Changes in bone density and patterns of ingrowth are compared for different stem geometries, materials and lengths of surface coating. Patterns of bone ingrowth on the tapered stem were independent of extent of porous coating, while ingrowth varied with the length of coating on the cylindrical stem. This model integrates knowledge of under what mechanical conditions bone ingrowth occurs on prosthetic stem surfaces with remodelling behaviour over time.
机译:这项工作为全髋关节置换术中非骨水泥性股骨柄周围骨重塑和向内生长的同时研究提供了一种计算模型。假定生物固定取决于骨干界面处的相对位移的大小以及重构过程中界面状况的不断更新。重塑模型通过在给定的一组生物学条件下在骨转换的平衡点产生最硬的结构来确定骨密度的分布。比较了不同茎干的几何形状,材料和表面涂层长度的骨密度和向内生长模式的变化。锥形茎上的骨向内生长模式与多孔涂层的大小无关,而向内生长则随圆柱柄上的覆盖层长度而变化。该模型整合了在什么机械条件下假体茎表面发生骨向内生长以及随时间的重塑行为的知识。

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