The Periotest Method: Implant‐Supported Framework Precision of Fit Evaluation
Identifieur interne : 004D83 ( Istex/Curation ); précédent : 004D82; suivant : 004D84The Periotest Method: Implant‐Supported Framework Precision of Fit Evaluation
Auteurs : Kenneth B. May ; Marion J. Edge ; Brien R. Lang ; Rui-Feng WangSource :
- Journal of Prosthodontics [ 1059-941X ] ; 1996-09.
Descripteurs français
- Wicri :
- topic : Simulation.
English descriptors
- KwdEn :
- Abutment, Cylinder interface, Dent, Framework, Framework assemblies, Framework condition, Framework conditions, Framework fabrication, Gold cylinders, Guide pins, Implant, Implant components, Implant location, Implant locations, Interface, Midfacial surface, Misfit, Oral maxillofac implants, Osseointegrated, Partial dentures, Patient simulation model, Periotest, Periotest instrument, Periotest method, Prosthesis, Prosthet, Prosthet dent, Ptvs, Quantitative misfit, Significant differences, Simulation, Ssac, Ssac assemblies, Ssac framework, Ssac frameworks, Ssac ssic, Ssic, Ssic frameworks, Sslc assemblies.
- Teeft :
- Abutment, Cylinder interface, Dent, Framework, Framework assemblies, Framework condition, Framework conditions, Framework fabrication, Gold cylinders, Guide pins, Implant, Implant components, Implant location, Implant locations, Interface, Midfacial surface, Misfit, Oral maxillofac implants, Osseointegrated, Partial dentures, Patient simulation model, Periotest, Periotest instrument, Periotest method, Prosthesis, Prosthet, Prosthet dent, Ptvs, Quantitative misfit, Significant differences, Simulation, Ssac, Ssac assemblies, Ssac framework, Ssac frameworks, Ssac ssic, Ssic, Ssic frameworks, Sslc assemblies.
Abstract
In this study, the Periotest instrument was used to measure the precision of fit between cast high noble‐metal frameworks and the supporting implants in a patient‐simulation model. Three framework conditions and three implant‐location variables were used to evaluate the rigidity of the assembly as measured by the Periotest method. The framework variables were (1) one‐piece castings (OPC); (2) sectioned‐soldered inaccurate castings (SSIC); and (3) sectioned‐soldered accurate castings (SSAC). The implant‐location variables were right anterior (RA), center (C), and left anterior (LA).
Url:
DOI: 10.1111/j.1532-849X.1996.tb00298.x
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Kenneth B. May<affiliation><mods:affiliation>Correspondence address: Kenneth B. May, DDS, Department of Prosthodontics, School of Dentistry, University of Michigan, Ann Arbor, MI 48109‐1078.</mods:affiliation>
<wicri:noCountry code="subField">48109‐1078.</wicri:noCountry>
</affiliation>
<affiliation><mods:affiliation>Clinical Assistant Professor, From the Department of Prosthodontics, School of Dentistry, University of Michigan, Ann Arbor, MI.</mods:affiliation>
<wicri:noCountry code="subField">MI.</wicri:noCountry>
</affiliation>
<affiliation><mods:affiliation>Professor and Chair, From the Department of Prosthodontics, School of Dentistry, University of Michigan, Ann Arbor, MI.</mods:affiliation>
<wicri:noCountry code="subField">MI.</wicri:noCountry>
</affiliation>
<affiliation><mods:affiliation>Research Associate I, From the Department of Prosthodontics, School of Dentistry, University of Michigan, Ann Arbor, MI.</mods:affiliation>
<wicri:noCountry code="subField">MI.</wicri:noCountry>
</affiliation>
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<term>Cylinder interface</term>
<term>Dent</term>
<term>Framework</term>
<term>Framework assemblies</term>
<term>Framework condition</term>
<term>Framework conditions</term>
<term>Framework fabrication</term>
<term>Gold cylinders</term>
<term>Guide pins</term>
<term>Implant</term>
<term>Implant components</term>
<term>Implant location</term>
<term>Implant locations</term>
<term>Interface</term>
<term>Midfacial surface</term>
<term>Misfit</term>
<term>Oral maxillofac implants</term>
<term>Osseointegrated</term>
<term>Partial dentures</term>
<term>Patient simulation model</term>
<term>Periotest</term>
<term>Periotest instrument</term>
<term>Periotest method</term>
<term>Prosthesis</term>
<term>Prosthet</term>
<term>Prosthet dent</term>
<term>Ptvs</term>
<term>Quantitative misfit</term>
<term>Significant differences</term>
<term>Simulation</term>
<term>Ssac</term>
<term>Ssac assemblies</term>
<term>Ssac framework</term>
<term>Ssac frameworks</term>
<term>Ssac ssic</term>
<term>Ssic</term>
<term>Ssic frameworks</term>
<term>Sslc assemblies</term>
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<term>Cylinder interface</term>
<term>Dent</term>
<term>Framework</term>
<term>Framework assemblies</term>
<term>Framework condition</term>
<term>Framework conditions</term>
<term>Framework fabrication</term>
<term>Gold cylinders</term>
<term>Guide pins</term>
<term>Implant</term>
<term>Implant components</term>
<term>Implant location</term>
<term>Implant locations</term>
<term>Interface</term>
<term>Midfacial surface</term>
<term>Misfit</term>
<term>Oral maxillofac implants</term>
<term>Osseointegrated</term>
<term>Partial dentures</term>
<term>Patient simulation model</term>
<term>Periotest</term>
<term>Periotest instrument</term>
<term>Periotest method</term>
<term>Prosthesis</term>
<term>Prosthet</term>
<term>Prosthet dent</term>
<term>Ptvs</term>
<term>Quantitative misfit</term>
<term>Significant differences</term>
<term>Simulation</term>
<term>Ssac</term>
<term>Ssac assemblies</term>
<term>Ssac framework</term>
<term>Ssac frameworks</term>
<term>Ssac ssic</term>
<term>Ssic</term>
<term>Ssic frameworks</term>
<term>Sslc assemblies</term>
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<front><div type="abstract">In this study, the Periotest instrument was used to measure the precision of fit between cast high noble‐metal frameworks and the supporting implants in a patient‐simulation model. Three framework conditions and three implant‐location variables were used to evaluate the rigidity of the assembly as measured by the Periotest method. The framework variables were (1) one‐piece castings (OPC); (2) sectioned‐soldered inaccurate castings (SSIC); and (3) sectioned‐soldered accurate castings (SSAC). The implant‐location variables were right anterior (RA), center (C), and left anterior (LA).</div>
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