volume 34 issue 4 pages 33-47

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

Saja Ali Muhsin 1
Enas Kareem Mohammed 1
Khalid Bander 1
Publication typeJournal Article
Publication date2024-01-11
scimago Q3
SJR0.333
CiteScore1.6
Impact factor
ISSN10506934, 19404379
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 <i>U</i> 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 (<i>P</i> &#62; 0.05). However, the deformation revealed distinct variations between loads of the three points compared to each loaded point (<i>P</i> &le; 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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Muhsin S. A., Mohammed E. K., Bander K. Finite Element Analysis: Connector Designs and Pontic Stress Distribution of Fixed Partial Denture Implant-Supported Metal Framework // Journal of Long-Term Effects of Medical Implants. 2024. Vol. 34. No. 4. pp. 33-47.
GOST all authors (up to 50) Copy
Muhsin S. A., Mohammed E. K., Bander K. Finite Element Analysis: Connector Designs and Pontic Stress Distribution of Fixed Partial Denture Implant-Supported Metal Framework // Journal of Long-Term Effects of Medical Implants. 2024. Vol. 34. No. 4. pp. 33-47.
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RIS Copy
TY - JOUR
DO - 10.1615/jlongtermeffmedimplants.2023048378
UR - https://www.dl.begellhouse.com/journals/1bef42082d7a0fdf,5dc8ec536b500415,2b04d0c41cd4823d.html
TI - Finite Element Analysis: Connector Designs and Pontic Stress Distribution of Fixed Partial Denture Implant-Supported Metal Framework
T2 - Journal of Long-Term Effects of Medical Implants
AU - Muhsin, Saja Ali
AU - Mohammed, Enas Kareem
AU - Bander, Khalid
PY - 2024
DA - 2024/01/11
PB - Begell House
SP - 33-47
IS - 4
VL - 34
PMID - 38842231
SN - 1050-6934
SN - 1940-4379
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2024_Muhsin,
author = {Saja Ali Muhsin and Enas Kareem Mohammed and Khalid Bander},
title = {Finite Element Analysis: Connector Designs and Pontic Stress Distribution of Fixed Partial Denture Implant-Supported Metal Framework},
journal = {Journal of Long-Term Effects of Medical Implants},
year = {2024},
volume = {34},
publisher = {Begell House},
month = {jan},
url = {https://www.dl.begellhouse.com/journals/1bef42082d7a0fdf,5dc8ec536b500415,2b04d0c41cd4823d.html},
number = {4},
pages = {33--47},
doi = {10.1615/jlongtermeffmedimplants.2023048378}
}
MLA
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Muhsin, Saja Ali, et al. “Finite Element Analysis: Connector Designs and Pontic Stress Distribution of Fixed Partial Denture Implant-Supported Metal Framework.” Journal of Long-Term Effects of Medical Implants, vol. 34, no. 4, Jan. 2024, pp. 33-47. https://www.dl.begellhouse.com/journals/1bef42082d7a0fdf,5dc8ec536b500415,2b04d0c41cd4823d.html.