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两种用于即刻负重的牙种植体:有限元分析

Two dental implants designed for immediate loading: a finite element analysis.

作者信息

Pierrisnard Laurent, Hure Guy, Barquins Michel, Chappard Daniel

机构信息

Faculty of Dental Surgery, Montrouge, University of Paris V, France.

出版信息

Int J Oral Maxillofac Implants. 2002 May-Jun;17(3):353-62.

Abstract

PURPOSE

The aim of this study was to evaluate by finite element analysis the influence of the design of 3 different dental implants on micromovements, cervical shearing stress intensity, and stress distribution after occlusal loading.

MATERIALS AND METHODS

The first investigated implant was a classical cylinder, the second was reinforced by 2 bicortical locking pins, and the third was an expanding dental implant. The parameters analyzed were the implant's geometry, the quality of the cancellous bone, and the orientation of occlusal loading.

RESULTS

It was found that initial stability of the locking pin implant was greater than the initial stability of the other investigated implant designs, regardless of the quality of cancellous bone and orientation of occlusal loading; in low-rigidity cancellous bone, under a horizontal load (500 N), decreasing displacement compared to those of the other investigated implants was 16 microm. The apical expansion and locking pin implants exhibited favorable behavior regarding the distribution and intensity of cervical shearing stresses; in low-rigidity cancellous bone, under horizontal load, decreasing cervical stresses compared with those of the cylindric implant were 10 MPa for the apical expansion implant and 150 MPa for the locking pin implant.

DISCUSSION

For the cylindric implant, stresses were concentrated in the neck region; for the apical expansion implant, stresses were evenly distributed from the neck to the apex of the implant. For the locking pin implant, stresses around the neck were moderate and appeared concentrated around the pins.

CONCLUSIONS

Initial stability of the pin implant was greater than that of the expanding implant, but the expanding implant showed the most favorable stress distribution.

摘要

目的

本研究旨在通过有限元分析评估3种不同牙科种植体的设计对咬合加载后微运动、颈部剪切应力强度及应力分布的影响。

材料与方法

第一种研究的种植体是经典圆柱体,第二种通过2个双皮质锁定销加强,第三种是扩张型牙科种植体。分析的参数包括种植体的几何形状、松质骨质量及咬合加载方向。

结果

发现无论松质骨质量和咬合加载方向如何,锁定销种植体的初始稳定性均大于其他研究的种植体设计;在低刚性松质骨中,水平载荷(500 N)下,与其他研究的种植体相比,位移减少量为16微米。根尖扩张种植体和锁定销种植体在颈部剪切应力的分布和强度方面表现良好;在低刚性松质骨中,水平载荷下,与圆柱形种植体相比,根尖扩张种植体的颈部应力减少10 MPa,锁定销种植体减少150 MPa。

讨论

对于圆柱形种植体,应力集中在颈部区域;对于根尖扩张种植体,应力从种植体颈部到根尖均匀分布。对于锁定销种植体,颈部周围应力适中,且集中在销周围。

结论

销式种植体的初始稳定性大于扩张型种植体,但扩张型种植体的应力分布最有利。

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