种植覆盖义齿不同杆附着体设计的应力分布与弯曲比较:三维有限元分析

A comparison of stress distribution and flexion among various designs of bar attachments for implant overdentures: a three dimensional finite element analysis.

作者信息

Prakash Vijay, D'Souza Mariette, Adhikari Raviraj

机构信息

Department of Prosthodontics, Manipal College of Dental Sciences, Manipal, Karnataka, 576 119, India.

出版信息

Indian J Dent Res. 2009 Jan-Mar;20(1):31-6. doi: 10.4103/0970-9290.49058.

Abstract

CONTEXT

Bar overdentures are popular choices among clinicians worldwide but configurations that provide an optimal biomechanical distribution of stress are still debatable.

AIMS

To compare the stresses and elastic flexion between implant supported bar overdentures in various configurations using finite element analysis.

SETTINGS AND DESIGN

A CAT scan of a human mandible was used to generate an anatomically accurate mechanical model.

MATERIALS AND METHODS

Three models with bars and clips in three different configurations were constructed. Model 1 had a single bar connecting two implants, Model 2 had three bars connecting all the four implants, and Model 3 had two bars connecting the medial and distal implants on the sides only. The models were loaded under static conditions with 100N load distributed at the approximate position of the clip. The mandibular boundary conditions were modeled considering the real geometry of its muscle supporting system. Maximum von Mises stress at the level of the bar and at the bone implant interface were compared in all three models. The flexion of mandible and the bar was also compared qualitatively.

STATISTICAL ANALYSIS USED

The analyses were accomplished using the ANSYS software program and were processed by a personal computer. Stress on these models was analyzed after loading conditions.

RESULTS

Qualitative comparisons showed that stress at the level of the bar and at the bone implant interface were in the following order: Model 1> Model 3> Model 2. The flexion of the mandible and the bar were in the following order: Model 2 > Model 1 > Model 3.

CONCLUSIONS

Four implant bar systems connected by bars on the sides only is a better choice than two implant bar systems and four implant bar systems with bars connecting all four implants.

摘要

背景

杆式覆盖义齿是全球临床医生常用的选择,但能提供最佳应力生物力学分布的结构仍存在争议。

目的

使用有限元分析比较不同结构的种植体支持杆式覆盖义齿之间的应力和弹性弯曲。

设置与设计

使用人体下颌骨的计算机断层扫描(CAT扫描)生成解剖学精确的力学模型。

材料与方法

构建了三种不同结构的带有杆和卡环的模型。模型1有一根连接两个种植体的杆,模型2有三根连接所有四个种植体的杆,模型3有两根仅连接两侧内侧和远端种植体的杆。在静态条件下,在卡环的大致位置施加100N的载荷对模型进行加载。考虑下颌骨肌肉支持系统的实际几何形状对下颌骨边界条件进行建模。比较了所有三个模型中杆水平和骨种植体界面处的最大冯·米塞斯应力。还定性比较了下颌骨和杆的弯曲情况。

所用统计分析方法

使用ANSYS软件程序完成分析,并通过个人计算机进行处理。在加载条件后分析这些模型上的应力。

结果

定性比较表明,杆水平和骨种植体界面处的应力顺序为:模型1>模型3>模型2。下颌骨和杆的弯曲顺序为:模型2>模型1>模型3。

结论

仅在侧面通过杆连接的四个种植体杆系统比两个种植体杆系统和通过杆连接所有四个种植体的四个种植体杆系统是更好的选择。

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