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三种基台-种植体界面周围应力分布的有限元分析

A Finite Element Analysis of Stress Allocation around Three Types of Abutment-Implant Interfaces.

作者信息

Devanna Raghu, Awinashe Vaibhav, Priyadarshi Siddharth, Ramaiah Vardharajula Venkata, Gupta Aashi, Jain Amol

机构信息

Associate Professor of Orthodontics, Orthodontic Division Preventive Dentistry, Faculty of Dentistry, Taif University, Taif, Saudi Arabia.

Associate Professor, Department of Prosthodontics, College of Dentistry in Ar Rass, Qassim University, Kingdom of Saudi Arabia.

出版信息

J Pharm Bioallied Sci. 2023 Jul;15(Suppl 2):S1079-S1081. doi: 10.4103/jpbs.jpbs_213_23. Epub 2023 Apr 28.

Abstract

OBJECTIVES

This study examined the effects of stress distribution at three abutment-implant interfaces on various implant systems.

MATERIALS AND METHODS

Group I: tri-channel internal connection (Nobel Biocare), Group II: 1.5-mm deep internal hex (BioHorizons Co. Birmingham, USA), and Group III: ADIN Touareg, to create computerized models of implants and mandibular modeling software, close fit WP, ANSYS Version 14.0 for finite element analysis (FEA), Hypermesh 12 for meshing and CATIA were used. A top-notch scanner was used to scan the implant. CATIA software created computerized models using all the aforementioned data. By applying bonded state on the abutment-implant borders and four various load conditions within the implant system, finite element method modeling was carried out. The computerized model was imported into the ANSYS program. To compare the groups, a statistical analysis was conducted.

RESULT

Through the use of three-dimensional FEA, the samples were assessed. Stress was found to be utmost in Group I, followed by Group III and Group II, at 80 N, 80 N with a 15° tilt, 250 N, and 250 N with a 15° tilt, and the divergence was statistically inconsequential.

CONCLUSION

The tri-channel internal connection displayed the highest stresses compared to the internal hex within the constraints of the current study.

摘要

目的

本研究考察了三种种植体系统中三个基台 - 种植体界面处的应力分布情况。

材料与方法

第一组:三通道内部连接(诺贝尔生物科技公司);第二组:1.5毫米深的内部六角连接(美国伯明翰市的BioHorizons公司);第三组:ADIN图阿雷格种植体。使用计算机辅助设计软件创建种植体的计算机模型以及下颌建模软件、紧密贴合WP、用于有限元分析(FEA)的ANSYS 14.0版本、用于网格划分的Hypermesh 12和CATIA软件。使用一流的扫描仪对种植体进行扫描。CATIA软件利用上述所有数据创建计算机模型。通过在基台 - 种植体边界施加粘结状态以及在种植体系统内设置四种不同的载荷条件,进行有限元方法建模。将计算机模型导入ANSYS程序。为比较各实验组,进行了统计学分析。

结果

通过三维有限元分析对样本进行评估。在80牛、80牛且有15°倾斜、250牛以及250牛且有15°倾斜的载荷条件下,发现第一组的应力最大,其次是第三组和第二组,且差异无统计学意义。

结论

在本研究的限制条件下,与内部六角连接相比,三通道内部连接显示出最高的应力。

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