Finite Element Analysis: Connector Designs and Pontic Stress Distribution of Fixed Partial Denture Implant-Supported Metal Framework.

Saja Ali Muhsin, Enas Kareem Mohammed, Khalid Bander
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Abstract

This virtual study was designed to evaluate the stress-deformation of a metal fixed partial dentures (FPDs) pontic under different loads using two different connectors. The STL file was generated for a RPD of two implant-supported restorations. The Co-Cr metal substructure was designed with two types of connector design. The pontic is connected to implant-supported crowns with square and round shape connectors. This study was designed for a cementless-retained implant-supported FPD. Finite element modeling (FEM) is used to assess the stress and deformation of the pontic within a metal substructure as the FEM might provide virtual values that could have laboratory and clinical relevance. The Co-Cr alloy mechanical properties like the Poisson ratio and modulus of elasticity were based on the parameters of the three-dimensional structure additive method. Nonparametric analyses (Mann-Whitney U test) was used. The use of square or round connectors often resulted in non-significant changes in stress, and deformation under either three or each loaded point on the occlusal surface of a pontic (P > 0.05). However, the deformation revealed distinct variations between loads of the three points compared to each loaded point (P ≤ 0.05). According to this study data, the pontic occlusal surface appears to be the same in stress and deformation under different loads depending on whether square or round connectors are used. While at the same connector designs, the pontic occlusal surface deformed significantly at three loaded points than it did at each point.

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有限元分析:固定局部义齿种植体支撑金属框架的连接体设计和基牙应力分布。
这项虚拟研究旨在评估金属固定局部义齿(FPD)基托在不同载荷下使用两种不同连接体时的应力变形情况。STL 文件是为两个种植体支持的 RPD 修复体生成的。钴铬金属下部结构采用两种连接器设计。基台通过方形和圆形连接体与种植体支持的牙冠连接。这项研究是针对无骨水泥固位的种植体支持全牙冠进行设计的。使用有限元建模(FEM)来评估金属基底结构中牙冠的应力和变形,因为有限元建模可以提供与实验室和临床相关的虚拟值。泊松比和弹性模量等 Co-Cr 合金机械性能是基于三维结构添加法的参数。使用了非参数分析(曼-惠特尼 U 检验)。使用方形或圆形连接体通常会导致应力和变形发生不显著的变化,而在义齿咬合面上的三个或每个加载点下的应力和变形也不会发生显著的变化(P > 0.05)。但是,与每个加载点相比,三个加载点之间的变形有明显的不同(P ≤ 0.05)。根据这项研究的数据,无论是使用方形还是圆形连接体,在不同的负荷下,牙本质咬合面的应力和变形似乎是相同的。而在相同的连接体设计下,三个加载点上的桥体咬合面的变形比每个点上的变形都要明显。
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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
46
期刊介绍: MEDICAL IMPLANTS are being used in every organ of the human body. Ideally, medical implants must have biomechanical properties comparable to those of autogenous tissues without any adverse effects. In each anatomic site, studies of the long-term effects of medical implants must be undertaken to determine accurately the safety and performance of the implants. Today, implant surgery has become an interdisciplinary undertaking involving a number of skilled and gifted specialists. For example, successful cochlear implants will involve audiologists, audiological physicians, speech and language therapists, otolaryngologists, nurses, neuro-otologists, teachers of the deaf, hearing therapists, cochlear implant manufacturers, and others involved with hearing-impaired and deaf individuals.
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