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Sensitivity analysis of periprosthetic healing to cell migration, growth factor and post-operative gap using a mechanobiological model

机译:使用机械生物学模型对假体周围修复对细胞迁移,生长因子和术后间隙的敏感性分析

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摘要

A theoretical rationale, which could help in the investigation of mechanobiological factors affecting periprosthetic tissue healing, is still an open problem. We used a parametric sensitivity analysis to extend a theoretical model based on reactive transport and computational cell biology. The numerical experimentation involved the drill hole, the haptotactic and chemotactic migrations, and the initial concentration of an anabolic growth factor. Output measure was the mineral fraction in tissue surrounding a polymethymethacrylate (PMMA) canine implant (stable loaded implant, non-critical gap). Increasing growth factor concentration increased structural matrix synthesis. A cell adhesion gradient resulted in heterogeneous bone distribution and a growth factor gradient resulted in homogeneous bone distribution in the gap. This could explain the radial variation of bone density from the implant surface to the drill hole, indicating less secure fixation. This study helps to understand the relative importance of various host and clinical factors influencing bone distribution and resulting implant fixation.
机译:一个理论上的基础仍然可以解决影响假体周围组织愈合的力学生物学因素,这仍然是一个悬而未决的问题。我们使用参数敏感性分析来扩展基于反应性转运和计算细胞生物学的理论模型。数值实验涉及钻孔,触觉和趋化迁移以及合成代谢生长因子的初始浓度。输出量度是聚甲基丙烯酸甲酯(PMMA)犬植入物(稳定加载的植入物,非临界间隙)周围组织中的矿物质含量。生长因子浓度的增加会增加结构基质的合成。细胞粘附梯度导致异质骨分布,生长因子梯度导致间隙中均匀骨分布。这可以解释从植入物表面到钻孔的骨密度的径向变化,表明固定的安全性较差。这项研究有助于了解影响骨分布和植入物固定的各种宿主和临床因素的相对重要性。

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