Abutment Design for Implant‐Supported Indirect Composite Molar Crowns: Reliability and Fractography
Identifieur interne : 003D78 ( Main/Exploration ); précédent : 003D77; suivant : 003D79Abutment Design for Implant‐Supported Indirect Composite Molar Crowns: Reliability and Fractography
Auteurs : Estevam Augusto Bonfante [Brésil] ; Marcelo Suzuki [États-Unis] ; William Lubelski [États-Unis] ; Van P. Thompson [États-Unis] ; Ricardo Marins De Carvalho [Canada] ; Lukasz Witek [États-Unis] ; Paulo G. Coelho [États-Unis]Source :
- Journal of Prosthodontics [ 1059-941X ] ; 2012-12.
Descripteurs français
- Wicri :
- topic : Titane.
English descriptors
- KwdEn :
- Abutment, Abutment crown, Abutment design, Acceleration factor, American college, Base width, Beach marks, Bonfante, Characteristic strength, Clin implant dent relat, Cohesive failure, Complication rates, Composite chip, Composite crowns, Crack front propagation, Crack propagation, Crown systems, Crowns bonfante, Crowns figure, Damage accumulation, Data replotted, Dent, Dental prostheses, Dentistry, Diameter base, Diameter cone, Different abutment, Different abutment designs, Different abutments, Different types, Ductile fracture, Failure mode, Failure modes, Fapesp grant brazil, Fatigue crack propagation, Fatigue testing, Fractographic, Fractographic analysis, Fractographic marks, Fracture, Fracture origin, High cone, Implant, Implant center, Implant dentistry, Incremental layers, Indentation area, Indirect composites, Indirect resin, Level probability weibull plots, Light micrograph, Limit reliability, Lower limits, Lower load levels, Material properties, Mechanical testing, Modulus, Molar crowns, Partial dentures, Probability weibull contour plot, Prosthesis, Prosthet dent, Prosthodontics, Prosthodontist, Prosthodontists bonfante, Qualitative fractographic analysis, Reliability, Reliability testing, Retrospective cohort study, Room temperature, Same load level, Sectioned crowns, Semielliptical lines, Single crowns, Single load, Small base, Small base base, Statistical difference, Statistical differences, Success rates, Successive positions, Systematic review, Titanium, Titanium abutments, Wake hackles, Weibull, Weibull curves, Weibull modulus, York university college.
- Teeft :
- Abutment, Abutment crown, Abutment design, Acceleration factor, American college, Base width, Beach marks, Bonfante, Characteristic strength, Clin implant dent relat, Cohesive failure, Complication rates, Composite chip, Composite crowns, Crack front propagation, Crack propagation, Crown systems, Crowns bonfante, Crowns figure, Damage accumulation, Data replotted, Dent, Dental prostheses, Dentistry, Diameter base, Diameter cone, Different abutment, Different abutment designs, Different abutments, Different types, Ductile fracture, Failure mode, Failure modes, Fapesp grant brazil, Fatigue crack propagation, Fatigue testing, Fractographic, Fractographic analysis, Fractographic marks, Fracture, Fracture origin, High cone, Implant, Implant center, Implant dentistry, Incremental layers, Indentation area, Indirect composites, Indirect resin, Level probability weibull plots, Light micrograph, Limit reliability, Lower limits, Lower load levels, Material properties, Mechanical testing, Modulus, Molar crowns, Partial dentures, Probability weibull contour plot, Prosthesis, Prosthet dent, Prosthodontics, Prosthodontist, Prosthodontists bonfante, Qualitative fractographic analysis, Reliability, Reliability testing, Retrospective cohort study, Room temperature, Same load level, Sectioned crowns, Semielliptical lines, Single crowns, Single load, Small base, Small base base, Statistical difference, Statistical differences, Success rates, Successive positions, Systematic review, Titanium, Titanium abutments, Wake hackles, Weibull, Weibull curves, Weibull modulus, York university college.
Abstract
Purpose: To investigate the reliability of titanium abutments veneered with indirect composites for implant‐supported crowns and the possibility to trace back the fracture origin by qualitative fractographic analysis.
Url:
DOI: 10.1111/j.1532-849X.2012.00872.x
Affiliations:
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<term>Abutment design</term>
<term>Acceleration factor</term>
<term>American college</term>
<term>Base width</term>
<term>Beach marks</term>
<term>Bonfante</term>
<term>Characteristic strength</term>
<term>Clin implant dent relat</term>
<term>Cohesive failure</term>
<term>Complication rates</term>
<term>Composite chip</term>
<term>Composite crowns</term>
<term>Crack front propagation</term>
<term>Crack propagation</term>
<term>Crown systems</term>
<term>Crowns bonfante</term>
<term>Crowns figure</term>
<term>Damage accumulation</term>
<term>Data replotted</term>
<term>Dent</term>
<term>Dental prostheses</term>
<term>Dentistry</term>
<term>Diameter base</term>
<term>Diameter cone</term>
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<term>Different abutment designs</term>
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<term>Different types</term>
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<term>Failure mode</term>
<term>Failure modes</term>
<term>Fapesp grant brazil</term>
<term>Fatigue crack propagation</term>
<term>Fatigue testing</term>
<term>Fractographic</term>
<term>Fractographic analysis</term>
<term>Fractographic marks</term>
<term>Fracture</term>
<term>Fracture origin</term>
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<term>Implant</term>
<term>Implant center</term>
<term>Implant dentistry</term>
<term>Incremental layers</term>
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<term>Indirect composites</term>
<term>Indirect resin</term>
<term>Level probability weibull plots</term>
<term>Light micrograph</term>
<term>Limit reliability</term>
<term>Lower limits</term>
<term>Lower load levels</term>
<term>Material properties</term>
<term>Mechanical testing</term>
<term>Modulus</term>
<term>Molar crowns</term>
<term>Partial dentures</term>
<term>Probability weibull contour plot</term>
<term>Prosthesis</term>
<term>Prosthet dent</term>
<term>Prosthodontics</term>
<term>Prosthodontist</term>
<term>Prosthodontists bonfante</term>
<term>Qualitative fractographic analysis</term>
<term>Reliability</term>
<term>Reliability testing</term>
<term>Retrospective cohort study</term>
<term>Room temperature</term>
<term>Same load level</term>
<term>Sectioned crowns</term>
<term>Semielliptical lines</term>
<term>Single crowns</term>
<term>Single load</term>
<term>Small base</term>
<term>Small base base</term>
<term>Statistical difference</term>
<term>Statistical differences</term>
<term>Success rates</term>
<term>Successive positions</term>
<term>Systematic review</term>
<term>Titanium</term>
<term>Titanium abutments</term>
<term>Wake hackles</term>
<term>Weibull</term>
<term>Weibull curves</term>
<term>Weibull modulus</term>
<term>York university college</term>
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<term>Abutment design</term>
<term>Acceleration factor</term>
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<term>Base width</term>
<term>Beach marks</term>
<term>Bonfante</term>
<term>Characteristic strength</term>
<term>Clin implant dent relat</term>
<term>Cohesive failure</term>
<term>Complication rates</term>
<term>Composite chip</term>
<term>Composite crowns</term>
<term>Crack front propagation</term>
<term>Crack propagation</term>
<term>Crown systems</term>
<term>Crowns bonfante</term>
<term>Crowns figure</term>
<term>Damage accumulation</term>
<term>Data replotted</term>
<term>Dent</term>
<term>Dental prostheses</term>
<term>Dentistry</term>
<term>Diameter base</term>
<term>Diameter cone</term>
<term>Different abutment</term>
<term>Different abutment designs</term>
<term>Different abutments</term>
<term>Different types</term>
<term>Ductile fracture</term>
<term>Failure mode</term>
<term>Failure modes</term>
<term>Fapesp grant brazil</term>
<term>Fatigue crack propagation</term>
<term>Fatigue testing</term>
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<term>Fractographic analysis</term>
<term>Fractographic marks</term>
<term>Fracture</term>
<term>Fracture origin</term>
<term>High cone</term>
<term>Implant</term>
<term>Implant center</term>
<term>Implant dentistry</term>
<term>Incremental layers</term>
<term>Indentation area</term>
<term>Indirect composites</term>
<term>Indirect resin</term>
<term>Level probability weibull plots</term>
<term>Light micrograph</term>
<term>Limit reliability</term>
<term>Lower limits</term>
<term>Lower load levels</term>
<term>Material properties</term>
<term>Mechanical testing</term>
<term>Modulus</term>
<term>Molar crowns</term>
<term>Partial dentures</term>
<term>Probability weibull contour plot</term>
<term>Prosthesis</term>
<term>Prosthet dent</term>
<term>Prosthodontics</term>
<term>Prosthodontist</term>
<term>Prosthodontists bonfante</term>
<term>Qualitative fractographic analysis</term>
<term>Reliability</term>
<term>Reliability testing</term>
<term>Retrospective cohort study</term>
<term>Room temperature</term>
<term>Same load level</term>
<term>Sectioned crowns</term>
<term>Semielliptical lines</term>
<term>Single crowns</term>
<term>Single load</term>
<term>Small base</term>
<term>Small base base</term>
<term>Statistical difference</term>
<term>Statistical differences</term>
<term>Success rates</term>
<term>Successive positions</term>
<term>Systematic review</term>
<term>Titanium</term>
<term>Titanium abutments</term>
<term>Wake hackles</term>
<term>Weibull</term>
<term>Weibull curves</term>
<term>Weibull modulus</term>
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<front><div type="abstract">Purpose: To investigate the reliability of titanium abutments veneered with indirect composites for implant‐supported crowns and the possibility to trace back the fracture origin by qualitative fractographic analysis.</div>
</front>
</TEI>
<affiliations><list><country><li>Brésil</li>
<li>Canada</li>
<li>États-Unis</li>
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<region><li>Massachusetts</li>
<li>État de New York</li>
<li>État de Rio de Janeiro</li>
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<country name="États-Unis"><region name="Massachusetts"><name sortKey="Suzuki, Marcelo" sort="Suzuki, Marcelo" uniqKey="Suzuki M" first="Marcelo" last="Suzuki">Marcelo Suzuki</name>
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<name sortKey="Thompson, Van P" sort="Thompson, Van P" uniqKey="Thompson V" first="Van P." last="Thompson">Van P. Thompson</name>
<name sortKey="Witek, Lukasz" sort="Witek, Lukasz" uniqKey="Witek L" first="Lukasz" last="Witek">Lukasz Witek</name>
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