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肌肉负荷对股骨近端骨重塑模拟的影响。

The effect of muscle loading on the simulation of bone remodelling in the proximal femur.

作者信息

Bitsakos Charalampos, Kerner Jan, Fisher Ian, Amis Andrew A

机构信息

Mechanical Engineering Department, Imperial College London, Exhibition Road, London SW7 2AZ, UK.

出版信息

J Biomech. 2005 Jan;38(1):133-9. doi: 10.1016/j.jbiomech.2004.03.005.

Abstract

A large number of finite element analyses of the proximal femur rely on a simplified set of muscle and joint contact loads to represent the boundary conditions of the model. In the context of bone remodelling analysis around hip implants, muscle loading affects directly the spatial distribution of the remodelling signal. In the present study we performed a sensitivity analysis on the effect of different muscle loading configurations on the outcome of the bone remodelling simulation. An anatomical model of the femur with the implanted stem in place was constructed using the CT data of the Visible Human Project dataset of the National Institute of Health. The model was loaded with three muscle force configurations with increasing level of complexity. A strain adaptive remodelling rule was employed to simulate the post-operative bone changes around the implant stem and the results of the simulation were assessed quantitatively in terms of the bone mineral content changes in 18 periprosthetic regions of interest. The results showed considerable differences in the amount of bone loss predicted between the three cases. The simplified models generally predicted more pronounced bone loss. Although the overall remodelling patterns observed were similar, the bone conserving effect of additional muscle forces in the vicinity of their areas of attachment was clear. The results of this study suggest that the loading configuration of the FE model does play an important role in the outcome of the remodelling simulation.

摘要

大量关于股骨近端的有限元分析依赖于一组简化的肌肉和关节接触载荷来表示模型的边界条件。在髋关节植入物周围的骨重塑分析中,肌肉负荷直接影响重塑信号的空间分布。在本研究中,我们对不同肌肉负荷配置对骨重塑模拟结果的影响进行了敏感性分析。利用美国国立卫生研究院可视人项目数据集的CT数据构建了一个植入柄在位的股骨解剖模型。该模型加载了三种复杂度逐渐增加的肌肉力配置。采用应变自适应重塑规则来模拟植入柄周围的术后骨变化,并根据18个假体周围感兴趣区域的骨矿物质含量变化对模拟结果进行定量评估。结果显示,三种情况之间预测的骨丢失量存在显著差异。简化模型通常预测的骨丢失更为明显。尽管观察到的整体重塑模式相似,但在附着区域附近额外肌肉力的骨保存作用是明显的。本研究结果表明,有限元模型的加载配置在重塑模拟结果中确实起着重要作用。

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