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牙齿与种植体移动性差异对牙/种植体支持的局部义齿咬合力传递影响的理论研究

Theoretical study of the effects of tooth and implant mobility differences on occlusal force transmission in tooth/implant-supported partial prostheses.

作者信息

Kayacan R, Ballarini R, Mullen R L

机构信息

Department of Mechanical and Aerospace Engineering, Süleyman Demirel University, Turkey.

出版信息

J Prosthet Dent. 1997 Oct;78(4):391-9. doi: 10.1016/s0022-3913(97)70047-7.

Abstract

STATEMENT OF PROBLEM

Despite their mobility differences under occlusal loads, a natural tooth and an implant are often used together to support fixed prostheses. In some situations, tooth/implant-supported partial prostheses include cantilever extensions, especially in the posterior region where the bone is inadequate for placement of an additional implant.

PURPOSE

In this study, engineering beam theory was used to study the effects of the mobility differences between the implant and the tooth on the force and moment distribution, due to occlusal loads in tooth/implant-supported prostheses.

METHODS

The prosthesis was treated as a linear elastic beam and the supports were modeled as springs with (vertical) translational and rotational stiffness. The bending moments and forces on the supports were calculated as functions of the parameters that describe the geometry, position of the occlusal load, and stiffness ratios (namely, implant or tooth) of the springs.

RESULTS

Bending moments on the supports were more sensitive to the relative rotational mobility between the supports and their individual values than to the relative translational mobility. The moment at the implant was minimized when the supports had similar mobilities. A preliminary design concept was introduced and eliminated the moment at the implant without significantly increasing the magnitude of the moment at the tooth. Cantilevering the prosthesis resulted in moderately increased bending moments and considerable tensile forces on the supports for a broad range of the parameters that describe the geometry and loading.

CONCLUSIONS

From this simulation, it is suggested that cantilever extensions should be avoided or supported by a short implant, which will only restrain the vertical movement of the cantilever end.

摘要

问题陈述

尽管在咬合负荷下天然牙和种植体的移动性存在差异,但它们常被一起用于支持固定修复体。在某些情况下,牙/种植体支持的部分修复体包括悬臂延伸部分,尤其是在骨量不足以植入额外种植体的后牙区域。

目的

在本研究中,运用工程梁理论来研究种植体与天然牙之间移动性差异对牙/种植体支持修复体咬合负荷下的力和力矩分布的影响。

方法

将修复体视为线性弹性梁,并将支持结构建模为具有(垂直)平移和旋转刚度的弹簧。根据描述几何形状、咬合负荷位置以及弹簧刚度比(即种植体或天然牙)的参数来计算支持结构上的弯矩和力。

结果

支持结构上的弯矩对支持结构之间的相对旋转移动性及其各自的值比相对平移移动性更敏感。当支持结构具有相似的移动性时,种植体处的力矩最小。引入了一个初步设计概念,在不显著增加天然牙处力矩大小的情况下消除了种植体处的力矩。对于描述几何形状和负荷的广泛参数范围,修复体悬臂化会导致支持结构上的弯矩适度增加以及相当大的拉力。

结论

从该模拟结果来看,建议应避免使用悬臂延伸部分,或者由短种植体进行支持,短种植体仅能限制悬臂端的垂直移动。

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