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松质骨对多孔涂层种植体拓扑结构变化的适应性。

Trabecular bone adaptation to variations in porous-coated implant topology.

作者信息

Guldberg R E, Richards M, Caldwell N J, Kuelske C L, Goldstein S A

机构信息

University of Michigan, Section of Orthopaedic Surgery, Ann Arbor 48109-0486, USA.

出版信息

J Biomech. 1997 Feb;30(2):147-53. doi: 10.1016/s0021-9290(96)00106-6.

Abstract

Trabecular bone adaptation adjacent to porous-coated platen implants embedded within canine distal femoral metaphyses was evaluated following 24 weeks of daily compressive loading. The in vivo experimental model delivered controlled loads to five different platen implant topologies with variations in platen shape and porous coating distribution. Adaptive changes were evaluated based on three-dimensional stereological analyses of trabecular bone architecture underneath each platen and non-destructive mechanical tests of platen construct stiffness. Fully coated cylindrical platen designs possessed the highest construct stiffness in both tension and compression. Changes in local trabecular bone morphology were also found to be significantly influenced by platen implant topology. Cylindrical platens with fully coated bottom surfaces were associated with greater decreases in trabecular bone volume and connectivity than cylindrical platens with smooth bottom surfaces or fully coated conical platens. Comparisons to site-matched contralateral control bone volumes across all platen designs indicated significant decreases in the average bone volume fraction, trabecular plate number, and connectivity within experimental samples, but no change in trabecular plate thickness. In addition, analyses of microstructural anisotropy revealed a 20 degrees or 20.2 degrees trabecular reorientation towards the axis of loading in experimental tissue. This study demonstrates that trabecular bone adaptation near porous-coated surfaces is influenced by variations in local implant topology and provides insight into specific mechanisms of implant-mediated microstructural adaptation.

摘要

在对犬股骨远端干骺端植入的多孔涂层钢板植入物进行每日压缩加载24周后,评估了其邻近的松质骨适应性。体内实验模型对五种不同的钢板植入物拓扑结构施加可控载荷,这些拓扑结构在钢板形状和多孔涂层分布上存在差异。基于对每个钢板下方松质骨结构的三维体视学分析以及对钢板结构刚度的无损力学测试,评估了适应性变化。完全涂层的圆柱形钢板设计在拉伸和压缩方面都具有最高的结构刚度。还发现局部松质骨形态的变化也受到钢板植入物拓扑结构的显著影响。与具有光滑底面的圆柱形钢板或完全涂层的锥形钢板相比,底面完全涂层的圆柱形钢板与松质骨体积和连通性的更大降低相关。对所有钢板设计的位点匹配对侧对照骨体积进行比较表明,实验样本中的平均骨体积分数、小梁板数量和连通性显著降低,但小梁板厚度没有变化。此外,对微观结构各向异性的分析显示,实验组织中的小梁向加载轴重新定向了20度或20.2度。这项研究表明,多孔涂层表面附近的松质骨适应性受局部植入物拓扑结构变化的影响,并为植入物介导的微观结构适应性的具体机制提供了见解。

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