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大直径外六角种植体的平台转换:有限元分析

Platform switching on wide-diameter external hex implants: a finite element analysis.

作者信息

Sivolella Stefano, Guazzo Riccardo, Bressan Eriberto, Berengo Mario, Stellini Edoardo

机构信息

DDS, Clinical Assistant, Department of Oral Surgery, Padova University, Institute of Clinical Dentistry, Padova, Italy.

DDS, Resident, Department of Oral Surgery, Padova University, Institute of Clinical Dentistry, Padova, Italy.

出版信息

J Clin Exp Dent. 2013 Apr 1;5(2):e77-82. doi: 10.4317/jced.50991.

Abstract

OBJECTIVES

The objective of this work was to use finite element analysis to compare the effect of forces coming to bear on abutments 4.1 or 5.0 mm in diameter connected to a 5.0 mm implant (i.e. with or without platform switching).

STUDY DESIGN

A 3D CAD model of a 5 x 11.5 mm external hex implant was developed, complete with a connection screw and either of two abutments, one 4.1 and the other 5 mm in diameter, to assess the influence of two loading conditions, i.e. 200 N loaded either axially or off center on the top of the abutment.

RESULTS AND CONCLUSIONS

In the symmetrically loaded models, greater stresses were transmitted to the bone in the area below the neck of the implant in the case of the wider-diameter abutment. When the narrower abutment was considered, the stress lines remained confined to the metal and were transferred to the bone in a more distal position. When the stresses in the bone where compared under non-symmetrical loading of the larger- and smaller-diameter abutments, the stresses reached lower values in the latter case. These findings indicate that platform switching (i.e. coupling a 4.1 mm abutment with a 5 mm implant) achieves a better, more even distribution of the peri-implant stresses deriving from simulated occlusal loads on the bone margins. Key words:Platform switching, finite element analysis, implant.

摘要

目的

本研究旨在运用有限元分析,比较连接至直径5.0 mm种植体(即采用或不采用平台转换)的直径4.1 mm或5.0 mm基台所承受力的影响。

研究设计

构建一个5×11.5 mm外六角种植体的三维CAD模型,配有连接螺钉以及两种基台中的任意一种,一种直径为4.1 mm,另一种直径为5 mm,以评估两种加载条件的影响,即在基台顶部轴向或偏心加载200 N。

结果与结论

在对称加载模型中,对于直径较大的基台,更大的应力传递至种植体颈部下方区域的骨组织。当考虑较窄的基台时,应力线局限于金属部分,并在更远处传递至骨组织。当比较大直径和小直径基台在非对称加载下骨组织中的应力时,后一种情况下应力值较低。这些发现表明,平台转换(即将4.1 mm基台与5 mm种植体连接)能使模拟咬合负荷作用于骨边缘时产生的种植体周围应力分布更优、更均匀。关键词:平台转换;有限元分析;种植体

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e759/3892223/8e6f6ba1d3e7/jced-5-e77-g001.jpg

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