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评估功能分级材料作为骨折固定接骨板在联合加载条件下使用有限元建模。

Assessment of function-graded materials as fracture fixation bone-plates under combined loading conditions using finite element modelling.

机构信息

Department of Applied Medical Science, RCC, King Saud University, PO Box: 28095, 11437 Riyadh, Saudi Arabia.

出版信息

Med Eng Phys. 2011 May;33(4):456-63. doi: 10.1016/j.medengphy.2010.11.013. Epub 2010 Dec 10.

Abstract

In previous work by Fouad (Medical Engineering and Physics 2010 [23]), 3D finite element (FE) models for fractured bones with function-graded (FG) bone-plates and traditional bone-plates made of stainless steel (SS) and titanium (Ti) alloy were examined under compressive loading conditions using the ABAQUS Code. In this study, the effects of the presence of the torsional load in addition to the compressive load on the predicted stresses of the fracture fixation bone-plate system are examined at different healing stages. The effects on the stress on the fracture site when using contacted and non-contacted bone-plate systems are also studied. The FE modelling results indicate that the torsional load has significant effects on the resultant stress on the fracture fixation bone-plate system, which should be taken into consideration during the design and the analysis. The results also show that the stress shielding at the fracture site decreases significantly when using FG bone-plates compared to Ti alloy or SS bone-plates. The presence of a gap between the bone and the plate results in a remarkable reduction in bone stress shielding at the fracture site. Therefore, the significant effects of using an FG bone-plate with a gap and the presence of torsional load on the resultant stress on the fracture fixation bone-plate system should be taken into consideration.

摘要

在 Fouad 的先前工作中(Medical Engineering and Physics 2010 [23]),使用 ABAQUS 代码在压缩载荷条件下检查了具有功能梯度(FG)骨板和传统不锈钢(SS)和钛(Ti)合金骨板的骨折骨的三维有限元(FE)模型。在这项研究中,研究了除压缩载荷之外还存在扭转载荷对不同愈合阶段骨折固定骨板系统预测应力的影响。还研究了接触和非接触骨板系统对骨折部位应力的影响。FE 建模结果表明,扭转载荷对骨折固定骨板系统的总应力有显著影响,在设计和分析时应予以考虑。结果还表明,与 Ti 合金或 SS 骨板相比,FG 骨板可显著降低骨折部位的应力屏蔽。骨与板之间存在间隙会导致骨折部位骨应力屏蔽显著降低。因此,应考虑使用具有间隙和扭转载荷的 FG 骨板对骨折固定骨板系统总应力的显著影响。

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