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水平不匹配和杆框架材料对覆盖义齿固位杆系统应力分布的影响:三维有限元分析。

Effects of horizontal misfit and bar framework material on the stress distribution of an overdenture-retaining bar system: a 3D finite element analysis.

机构信息

Department of Prosthodontics, Dental School, Meridional Faculty (IMED), Passo Fundo, RS, Brazil.

出版信息

J Prosthodont. 2011 Oct;20(7):517-22. doi: 10.1111/j.1532-849X.2011.00759.x. Epub 2011 Oct 4.

Abstract

PURPOSE

To evaluate the influence of horizontal misfit change and bar framework material on the distribution of static stresses in an overdenture-retaining bar system using finite element (FE) analysis.

MATERIALS AND METHODS

A 3D FE model was created including two titanium implants and a bar framework placed in the anterior part of a severely resorbed jaw. The model set was exported to mechanical simulation software, where horizontal displacement (10, 50, 100, and 200 μm) was applied simulating the settling of the framework, which suffered shrinkage during laboratory procedures. Four bar materials (gold alloy, silver-palladium alloy, commercially pure titanium, and cobalt-chromium alloy) were also simulated in the analysis using 50 μm as the horizontal misfit. Data were qualitatively evaluated using von Mises stress, given by the software.

RESULTS

The misfit amplification presented a great increase in the stress levels in the inferior region of the bar, screw-retaining neck, cervical and medium third of the implant, and cortical bone tissue surrounding the implant. The higher stiffness of the bar presented a considerable increase in the stress levels in the bar framework only.

CONCLUSION

The levels of static stresses seem to be closely linked with horizontal misfit, such that its amplification caused increased levels of stress in the structures of the overdenture-retaining bar system. On the other hand, the stiffness of the bar framework presented a lower effect on the static stress levels.

摘要

目的

使用有限元(FE)分析评估水平不匹配变化和杆框架材料对覆盖义齿固位杆系统中静态应力分布的影响。

材料和方法

创建了一个 3D FE 模型,其中包括两个钛植入物和一个放置在前部严重吸收颌骨中的杆框架。模型集被导出到机械模拟软件中,在该软件中,应用 10、50、100 和 200 μm 的水平位移来模拟框架的沉降,该框架在实验室过程中会收缩。在分析中还模拟了四种杆材料(金合金、银钯合金、纯钛和钴铬合金),水平不匹配为 50 μm。使用软件给出的 von Mises 应力定性评估数据。

结果

不匹配放大导致杆的下区域、螺钉保留颈部、颈和植入物中三分之一的中间区域以及植入物周围的皮质骨组织的应力水平显著增加。杆的较高刚度仅导致杆框架的应力水平显著增加。

结论

静态应力水平似乎与水平不匹配密切相关,因此其放大导致覆盖义齿固位杆系统结构中的应力水平增加。另一方面,杆框架的刚度对静态应力水平的影响较低。

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