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A Comparison of Fit of CNC‐Milled Titanium and Zirconia Frameworks to Implants

Identifieur interne : 001166 ( Istex/Curation ); précédent : 001165; suivant : 001167

A Comparison of Fit of CNC‐Milled Titanium and Zirconia Frameworks to Implants

Auteurs : Jaafar Abduo [Nouvelle-Zélande] ; Karl Lyons [Nouvelle-Zélande] ; Neil Waddell [Nouvelle-Zélande] ; Vincent Bennani [Nouvelle-Zélande] ; Michael Swain [Nouvelle-Zélande]

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RBID : ISTEX:2415F52801B28BDF2B8BD5EE03875B369404E03E

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English descriptors

Abstract

Background: Computer numeric controlled (CNC) milling was proven to be predictable method to fabricate accurately fitting implant titanium frameworks. However, no data are available regarding the fit of CNC‐milled implant zirconia frameworks.

Url:
DOI: 10.1111/j.1708-8208.2010.00334.x

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ISTEX:2415F52801B28BDF2B8BD5EE03875B369404E03E

Le document en format XML

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<name sortKey="Abduo, Jaafar" sort="Abduo, Jaafar" uniqKey="Abduo J" first="Jaafar" last="Abduo">Jaafar Abduo</name>
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<mods:affiliation>Prosthodontist, Department of Oral Rehabilitation, University of Otago, Dunedin, New Zealand;</mods:affiliation>
<country xml:lang="fr" wicri:curation="lc">Nouvelle-Zélande</country>
<wicri:regionArea>Prosthodontist, Department of Oral Rehabilitation, University of Otago, Dunedin</wicri:regionArea>
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<name sortKey="Lyons, Karl" sort="Lyons, Karl" uniqKey="Lyons K" first="Karl" last="Lyons">Karl Lyons</name>
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<term>Biomechanical perspective</term>
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<term>Buccal</term>
<term>Clinical implant dentistry</term>
<term>Cortical bone</term>
<term>Dent</term>
<term>Dental prostheses</term>
<term>Dentistry</term>
<term>Edentulous</term>
<term>Edentulous area</term>
<term>Edentulous mandible</term>
<term>Elastic modulus</term>
<term>Epoxy resin</term>
<term>Epoxy resin material</term>
<term>Force direction</term>
<term>Framework</term>
<term>Framework design</term>
<term>Framework fabrication</term>
<term>Framework material</term>
<term>High accuracy</term>
<term>Identical frameworks</term>
<term>Implant</term>
<term>Implant dent</term>
<term>Implant framework</term>
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<term>Lower modulus</term>
<term>Mandible</term>
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<term>Mesial buccal</term>
<term>Milling titanium</term>
<term>Milling zirconia</term>
<term>Modulus</term>
<term>Nobel biocare</term>
<term>Optimal parallelism</term>
<term>Oral maxillofac implants</term>
<term>Oral rehabilitation</term>
<term>Otago</term>
<term>Partial denture frameworks</term>
<term>Partial dentures</term>
<term>Pattern resin</term>
<term>Present study</term>
<term>Prosthesis</term>
<term>Prosthet dent</term>
<term>Pure titanium</term>
<term>Quantitative information</term>
<term>Same manufacturer</term>
<term>Second molar</term>
<term>Second premolar</term>
<term>Senior lecturer</term>
<term>Silicone mold</term>
<term>Similar level</term>
<term>Standard deviation</term>
<term>Strain development</term>
<term>Strain gauge</term>
<term>Strain gauge analysis</term>
<term>Strain magnitude</term>
<term>Strain pattern</term>
<term>Strain values</term>
<term>Titanium</term>
<term>Titanium alloys</term>
<term>Titanium framework</term>
<term>Titanium frameworks</term>
<term>Tting</term>
<term>Tting frameworks</term>
<term>Vertical displacement</term>
<term>Zirconia</term>
<term>Zirconia frameworks</term>
<term>Zirconia milling</term>
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<term>Biocare</term>
<term>Biomechanical perspective</term>
<term>Branemark implants</term>
<term>Buccal</term>
<term>Clinical implant dentistry</term>
<term>Cortical bone</term>
<term>Dent</term>
<term>Dental prostheses</term>
<term>Dentistry</term>
<term>Edentulous</term>
<term>Edentulous area</term>
<term>Edentulous mandible</term>
<term>Elastic modulus</term>
<term>Epoxy resin</term>
<term>Epoxy resin material</term>
<term>Force direction</term>
<term>Framework</term>
<term>Framework design</term>
<term>Framework fabrication</term>
<term>Framework material</term>
<term>High accuracy</term>
<term>Identical frameworks</term>
<term>Implant</term>
<term>Implant dent</term>
<term>Implant framework</term>
<term>Implant frameworks</term>
<term>Implant zirconia frameworks</term>
<term>Jaafar abduo</term>
<term>Lingual</term>
<term>Lower modulus</term>
<term>Mandible</term>
<term>Manual torque controller</term>
<term>Master model</term>
<term>Mesial</term>
<term>Mesial buccal</term>
<term>Milling titanium</term>
<term>Milling zirconia</term>
<term>Modulus</term>
<term>Nobel biocare</term>
<term>Optimal parallelism</term>
<term>Oral maxillofac implants</term>
<term>Oral rehabilitation</term>
<term>Otago</term>
<term>Partial denture frameworks</term>
<term>Partial dentures</term>
<term>Pattern resin</term>
<term>Present study</term>
<term>Prosthesis</term>
<term>Prosthet dent</term>
<term>Pure titanium</term>
<term>Quantitative information</term>
<term>Same manufacturer</term>
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<term>Second premolar</term>
<term>Senior lecturer</term>
<term>Silicone mold</term>
<term>Similar level</term>
<term>Standard deviation</term>
<term>Strain development</term>
<term>Strain gauge</term>
<term>Strain gauge analysis</term>
<term>Strain magnitude</term>
<term>Strain pattern</term>
<term>Strain values</term>
<term>Titanium</term>
<term>Titanium alloys</term>
<term>Titanium framework</term>
<term>Titanium frameworks</term>
<term>Tting</term>
<term>Tting frameworks</term>
<term>Vertical displacement</term>
<term>Zirconia</term>
<term>Zirconia frameworks</term>
<term>Zirconia milling</term>
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<front>
<div type="abstract">Background: Computer numeric controlled (CNC) milling was proven to be predictable method to fabricate accurately fitting implant titanium frameworks. However, no data are available regarding the fit of CNC‐milled implant zirconia frameworks.</div>
</front>
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