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种植体支持的全牙弓固定修复体中支架的影响:三维有限元分析

Effect of Framework in an Implant-Supported Full-Arch Fixed Prosthesis: 3D Finite Element Analysis.

作者信息

Menini Maria, Pesce Paolo, Bevilacqua Marco, Pera Francesco, Tealdo Tiziano, Barberis Fabrizio, Pera Paolo

出版信息

Int J Prosthodont. 2015 Nov-Dec;28(6):627-30. doi: 10.11607/ijp.4345.

Abstract

PURPOSE

The aim of this study was to analyze through a three-dimensional finite element analysis (3D-FEA) stress distribution on four implants supporting a full-arch implant-supported fixed prosthesis (FFP) using different prosthesis designs.

MATERIALS AND METHODS

A 3D edentulous maxillary model was created and four implants were virtually placed into the maxilla and splinted, simulating an FFP without framework, with a cast metal framework, and with a carbon fiber framework. An occlusal load of 150 N was applied, stresses were transmitted into peri-implant bone, and prosthodontic components were recorded.

RESULTS

3D-FEA revealed higher stresses on the implants (up to +55.16%), on peri-implant bone (up to +56.93%), and in the prosthesis (up to +70.71%) when the full-acrylic prosthesis was simulated. The prosthesis with a carbon fiber framework showed an intermediate behavior between that of the other two configurations.

CONCLUSION

This study suggests that the presence of a rigid framework in full-arch fixed prostheses provides a better load distribution that decreases the maximum values of stress at the levels of implants, prosthesis, and maxillary bone.

摘要

目的

本研究旨在通过三维有限元分析(3D-FEA),分析使用不同假体设计的全牙弓种植体支持固定义齿(FFP)的四个种植体上的应力分布。

材料与方法

创建一个三维无牙上颌模型,将四个种植体虚拟植入上颌并进行夹板固定,模拟无框架、有铸造金属框架和有碳纤维框架的FFP。施加150 N的咬合载荷,应力传递到种植体周围骨,并记录修复体部件的情况。

结果

当模拟全丙烯酸树脂修复体时,3D-FEA显示种植体上的应力更高(高达+55.16%),种植体周围骨上的应力更高(高达+56.93%),修复体内的应力更高(高达+70.71%)。带有碳纤维框架的修复体表现出介于其他两种结构之间的性能。

结论

本研究表明,全牙弓固定义齿中刚性框架的存在提供了更好的载荷分布,降低了种植体、修复体和上颌骨水平处的最大应力值。

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