Chairside Fabrication of an All-Ceramic Partial Crown Using a Zirconia-Reinforced Lithium Silicate Ceramic

The chairside fabrication of a monolithic partial crown using a zirconia-reinforced lithium silicate (ZLS) ceramic is described. The fully digitized model-free workflow in a dental practice is possible due to the use of a powder-free intraoral scanner and the computer-aided design/computer-assisted...

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Main Authors: Sven Rinke, Anne-Kathrin Pabel, Matthias Rödiger, Dirk Ziebolz
Format: Article
Language:English
Published: Wiley 2016-01-01
Series:Case Reports in Dentistry
Online Access:http://dx.doi.org/10.1155/2016/1354186
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author Sven Rinke
Anne-Kathrin Pabel
Matthias Rödiger
Dirk Ziebolz
author_facet Sven Rinke
Anne-Kathrin Pabel
Matthias Rödiger
Dirk Ziebolz
author_sort Sven Rinke
collection DOAJ
description The chairside fabrication of a monolithic partial crown using a zirconia-reinforced lithium silicate (ZLS) ceramic is described. The fully digitized model-free workflow in a dental practice is possible due to the use of a powder-free intraoral scanner and the computer-aided design/computer-assisted manufacturing (CAD/CAM) of the restorations. The innovative ZLS material offers a singular combination of fracture strength (>370 Mpa), optimum polishing characteristics, and excellent optical properties. Therefore, this ceramic is an interesting alternative material for monolithic restorations produced in a digital workflow.
format Article
id doaj-art-898aa895f90d4d38a7cf73c59c3a9129
institution Kabale University
issn 2090-6447
2090-6455
language English
publishDate 2016-01-01
publisher Wiley
record_format Article
series Case Reports in Dentistry
spelling doaj-art-898aa895f90d4d38a7cf73c59c3a91292025-02-03T05:47:27ZengWileyCase Reports in Dentistry2090-64472090-64552016-01-01201610.1155/2016/13541861354186Chairside Fabrication of an All-Ceramic Partial Crown Using a Zirconia-Reinforced Lithium Silicate CeramicSven Rinke0Anne-Kathrin Pabel1Matthias Rödiger2Dirk Ziebolz3Dental Practice, 63456 Hanau, GermanyDental Practice, 63456 Hanau, GermanyDepartment of Prosthetics, University Medical Center Göttingen, 37075 Göttingen, GermanyDepartment of Cariology, Endodontology and Periodontology, University of Leipzig, 04103 Leipzig, GermanyThe chairside fabrication of a monolithic partial crown using a zirconia-reinforced lithium silicate (ZLS) ceramic is described. The fully digitized model-free workflow in a dental practice is possible due to the use of a powder-free intraoral scanner and the computer-aided design/computer-assisted manufacturing (CAD/CAM) of the restorations. The innovative ZLS material offers a singular combination of fracture strength (>370 Mpa), optimum polishing characteristics, and excellent optical properties. Therefore, this ceramic is an interesting alternative material for monolithic restorations produced in a digital workflow.http://dx.doi.org/10.1155/2016/1354186
spellingShingle Sven Rinke
Anne-Kathrin Pabel
Matthias Rödiger
Dirk Ziebolz
Chairside Fabrication of an All-Ceramic Partial Crown Using a Zirconia-Reinforced Lithium Silicate Ceramic
Case Reports in Dentistry
title Chairside Fabrication of an All-Ceramic Partial Crown Using a Zirconia-Reinforced Lithium Silicate Ceramic
title_full Chairside Fabrication of an All-Ceramic Partial Crown Using a Zirconia-Reinforced Lithium Silicate Ceramic
title_fullStr Chairside Fabrication of an All-Ceramic Partial Crown Using a Zirconia-Reinforced Lithium Silicate Ceramic
title_full_unstemmed Chairside Fabrication of an All-Ceramic Partial Crown Using a Zirconia-Reinforced Lithium Silicate Ceramic
title_short Chairside Fabrication of an All-Ceramic Partial Crown Using a Zirconia-Reinforced Lithium Silicate Ceramic
title_sort chairside fabrication of an all ceramic partial crown using a zirconia reinforced lithium silicate ceramic
url http://dx.doi.org/10.1155/2016/1354186
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AT matthiasrodiger chairsidefabricationofanallceramicpartialcrownusingazirconiareinforcedlithiumsilicateceramic
AT dirkziebolz chairsidefabricationofanallceramicpartialcrownusingazirconiareinforcedlithiumsilicateceramic