Effect of Implant–Abutment Connection Design on Load Bearing Capacity and Failure Mode of Implants
Identifieur interne : 004848 ( Main/Exploration ); précédent : 004847; suivant : 004849Effect of Implant–Abutment Connection Design on Load Bearing Capacity and Failure Mode of Implants
Auteurs : Stephanie Dittmer [Allemagne] ; Marc Philipp Dittmer [Allemagne] ; Philipp Kohorst [Allemagne] ; Michael Jendras [Allemagne] ; Lothar Borchers [Allemagne] ; Meike Stiesch [Allemagne]Source :
- Journal of Prosthodontics [ 1059-941X ] ; 2011-10.
English descriptors
- KwdEn :
- Abutment, Abutment screw, Abutment screws, American college, Astra tech, Biomedical materials science, Bone loss, Clin, Clin implant dent relat, Conical, Conical connection, Connection design, Connection designs, Connection type, Connective parts, Considerable necking, Cyclic fatigue, Dent, Dental implant system, Different connection designs, Different connection types, Dittmer, Failure mode, Failure modes, Fatigue testing, Forces range, Fracture, Fracture strength, Horizontal forces, Implant, Implant axis, Implant body, Implant body fracture, Implant neck, Implant shoulder, Implant system, Implant systems, Implant types, Implants dittmer, Interface, Interface designs, Internal conical connection, Internal conical interface, Load application, Load drop, Maximum force, Nite element analysis, Nobel biocare, Oral implantol, Oral maxillofac implants, Osseointegrated, Osseointegrated implant, Osseointegrated implants, Other implant systems, Partial prostheses, Permanent deformation, Plastic deformation, Power calculation, Preliminary report, Present study, Prospective study, Prosthet, Prosthet dent, Prosthetic dentistry, Prosthodontics, Prosthodontist, Prosthodontists dittmer, Regression line, Relevant forces, Same superscripts, Sample size, Screw bolt, Senior research, Short overlap, Slight deformation, Standard deviation, Standard deviations, Statistical analysis, Systematic review, Technical complications, Testing conditions, Tooth implants, Universal testing machine, Young adults.
- Teeft :
- Abutment, Abutment screw, Abutment screws, American college, Astra tech, Biomedical materials science, Bone loss, Clin, Clin implant dent relat, Conical, Conical connection, Connection design, Connection designs, Connection type, Connective parts, Considerable necking, Cyclic fatigue, Dent, Dental implant system, Different connection designs, Different connection types, Dittmer, Failure mode, Failure modes, Fatigue testing, Forces range, Fracture, Fracture strength, Horizontal forces, Implant, Implant axis, Implant body, Implant body fracture, Implant neck, Implant shoulder, Implant system, Implant systems, Implant types, Implants dittmer, Interface, Interface designs, Internal conical connection, Internal conical interface, Load application, Load drop, Maximum force, Nite element analysis, Nobel biocare, Oral implantol, Oral maxillofac implants, Osseointegrated, Osseointegrated implant, Osseointegrated implants, Other implant systems, Partial prostheses, Permanent deformation, Plastic deformation, Power calculation, Preliminary report, Present study, Prospective study, Prosthet, Prosthet dent, Prosthetic dentistry, Prosthodontics, Prosthodontist, Prosthodontists dittmer, Regression line, Relevant forces, Same superscripts, Sample size, Screw bolt, Senior research, Short overlap, Slight deformation, Standard deviation, Standard deviations, Statistical analysis, Systematic review, Technical complications, Testing conditions, Tooth implants, Universal testing machine, Young adults.
Abstract
Purpose: In this in vitro study, six implant–abutment connection designs were compared and evaluated regarding load bearing capacities and failure modes.
Url:
DOI: 10.1111/j.1532-849X.2011.00758.x
Affiliations:
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<term>Dental implant system</term>
<term>Different connection designs</term>
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<term>Failure mode</term>
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<term>Fracture strength</term>
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<term>Implant</term>
<term>Implant axis</term>
<term>Implant body</term>
<term>Implant body fracture</term>
<term>Implant neck</term>
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<term>Implant systems</term>
<term>Implant types</term>
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<term>Same superscripts</term>
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<term>Screw bolt</term>
<term>Senior research</term>
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<term>Standard deviations</term>
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<term>Biomedical materials science</term>
<term>Bone loss</term>
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<term>Conical</term>
<term>Conical connection</term>
<term>Connection design</term>
<term>Connection designs</term>
<term>Connection type</term>
<term>Connective parts</term>
<term>Considerable necking</term>
<term>Cyclic fatigue</term>
<term>Dent</term>
<term>Dental implant system</term>
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<term>Implant systems</term>
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<term>Interface designs</term>
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<term>Internal conical interface</term>
<term>Load application</term>
<term>Load drop</term>
<term>Maximum force</term>
<term>Nite element analysis</term>
<term>Nobel biocare</term>
<term>Oral implantol</term>
<term>Oral maxillofac implants</term>
<term>Osseointegrated</term>
<term>Osseointegrated implant</term>
<term>Osseointegrated implants</term>
<term>Other implant systems</term>
<term>Partial prostheses</term>
<term>Permanent deformation</term>
<term>Plastic deformation</term>
<term>Power calculation</term>
<term>Preliminary report</term>
<term>Present study</term>
<term>Prospective study</term>
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<term>Prosthetic dentistry</term>
<term>Prosthodontics</term>
<term>Prosthodontist</term>
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<term>Relevant forces</term>
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<term>Short overlap</term>
<term>Slight deformation</term>
<term>Standard deviation</term>
<term>Standard deviations</term>
<term>Statistical analysis</term>
<term>Systematic review</term>
<term>Technical complications</term>
<term>Testing conditions</term>
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<front><div type="abstract">Purpose: In this in vitro study, six implant–abutment connection designs were compared and evaluated regarding load bearing capacities and failure modes.</div>
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