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Overdenture retaining bar stress distribution: a finite-element analysis.
- Source :
-
Acta odontologica Scandinavica [Acta Odontol Scand] 2015 May; Vol. 73 (4), pp. 274-9. Date of Electronic Publication: 2015 Feb 02. - Publication Year :
- 2015
-
Abstract
- Objective: Evaluate the stress distribution on the peri-implant bone tissue and prosthetic components of bar-clip retaining systems for overdentures presenting different implant inclinations, vertical misfit and framework material.<br />Materials and Methods: Three-dimensional models of a jaw and an overdenture retained by two implants and a bar-clip attachment were modeled using specific software (SolidWorks 2010). The studied variables were: latero-lateral inclination of one implant (-10°, -5°, 0°, +5°, +10°); vertical misfit on the other implant (50, 100, 200 µm); and framework material (Au type IV, Ag-Pd, Ti cp, Co-Cr). Solid models were imported into mechanical simulation software (ANSYS Workbench 11). All nodes on the bone's external surface were constrained and a displacement was applied to simulate the settling of the framework on the ill-fitted component. Von Mises stress for the prosthetic components and maximum principal stress to the bone tissue were evaluated.<br />Results: The +10° inclination presented the worst biomechanical behavior, promoting the highest stress values on the bar framework and peri-implant bone tissue. The -5° group presented the lowest stress values on the prosthetic components and the lowest stress value on peri-implant bone tissue was observed in -10°. Increased vertical misfit caused an increase on the stress values in all evaluated structures. Stiffer framework materials caused a considerable stress increase in the framework itself, prosthetic screw of the fitted component and peri-implant bone tissue.<br />Conclusions: Inclination of one implant associated with vertical misfit caused a relevant effect on the stress distribution in bar-clip retained overdentures. Different framework materials promoted increased levels of stress in all the evaluated structures.
- Subjects :
- Alveolar Process physiology
Biomechanical Phenomena
Chromium Alloys chemistry
Computer Simulation
Dental Alloys chemistry
Dental Implants
Dental Marginal Adaptation
Dental Materials chemistry
Elasticity
Gold Alloys chemistry
Humans
Imaging, Three-Dimensional methods
Materials Testing
Models, Biological
Palladium chemistry
Silver chemistry
Stress, Mechanical
Surface Properties
Titanium chemistry
Dental Prosthesis, Implant-Supported
Denture Retention instrumentation
Denture, Overlay
Finite Element Analysis
Subjects
Details
- Language :
- English
- ISSN :
- 1502-3850
- Volume :
- 73
- Issue :
- 4
- Database :
- MEDLINE
- Journal :
- Acta odontologica Scandinavica
- Publication Type :
- Academic Journal
- Accession number :
- 25645607
- Full Text :
- https://doi.org/10.3109/00016357.2014.923111