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下颌骨支持四颗种植体固位桥的生物力学研究:骨各向异性和食物位置影响的有限元分析

Biomechanical study of mandible bone supporting a four-implant retained bridge: finite element analysis of the influence of bone anisotropy and foodstuff position.

作者信息

Bonnet A S, Postaire M, Lipinski P

机构信息

Laboratory of Mechanics, Biomechanics, Polymers and Structures (LaBPS), ENIM, Ile du Saulcy 57045 Metz, France.

出版信息

Med Eng Phys. 2009 Sep;31(7):806-15. doi: 10.1016/j.medengphy.2009.03.004. Epub 2009 Apr 22.

Abstract

PURPOSE

The aim of this work was to study the biomechanical behavior of a "All-on-four" implant-supported prosthesis through a finite element analysis using either isotropic or anisotropic properties of bone. The influence of foodstuff position during mastication was also analysed.

MATERIALS AND METHODS

A three-dimensional finite element model of a mandible with a prosthesis supported by four implants was developed. The geometry of the edentulous mandible and prosthesis was generated from computed tomography. Four MKIII implants (two vertical and two tilted) were modeled. The bone elastic properties used in the anisotropic simulations were orthotropic. The comparison of isotropic and anisotropic models was carried out in the loading condition of mastication with a foodstuff positioned on molar. Three distinct configurations, corresponding to three foodstuff positions, were then studied. MSC/Marc code was used to perform all computations.

RESULTS

Significant differences in stress, strain, and strain energy densities were found in the comparison of isotropic and orthotropic models. Molar position was revealed to be the most critical one, from a stress and strain level point of view, for implants and framework and consequently for peri-implant bone. It was also observed that implant tilting leads to high stress concentrations in bone for the "All-on-four" concept.

CONCLUSION

This study showed that the anisotropic behaviour of bone cannot be neglected in the numerical simulations. The actual design of the prosthesis is not optimal concerning the capacity of all metallic parts to support loads. Finally, it was demonstrated that the tilting of implants induced a high stress level at bone-implant interface.

摘要

目的

本研究旨在通过有限元分析,利用骨的各向同性或各向异性特性,研究“All-on-four”种植体支持式修复体的生物力学行为。同时分析咀嚼过程中食物位置的影响。

材料与方法

建立了一个下颌骨的三维有限元模型,该模型带有由四个种植体支持的修复体。无牙下颌骨和修复体的几何形状由计算机断层扫描生成。模拟了四个MKIII种植体(两个垂直种植体和两个倾斜种植体)。各向异性模拟中使用的骨弹性特性为正交各向异性。在食物位于磨牙处的咀嚼加载条件下,对各向同性和各向异性模型进行了比较。然后研究了对应于三种食物位置的三种不同构型。使用MSC/Marc代码进行所有计算。

结果

在各向同性和正交各向异性模型的比较中,发现应力、应变和应变能密度存在显著差异。从应力和应变水平的角度来看,磨牙位置对于种植体和支架以及种植体周围骨来说是最关键的。还观察到,对于“All-on-four”概念,种植体倾斜会导致骨中出现高应力集中。

结论

本研究表明,在数值模拟中不能忽略骨的各向异性行为。修复体的实际设计在所有金属部件支持载荷的能力方面并非最优。最后,证明了种植体倾斜会在骨-种植体界面处引起高应力水平。

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