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Table of contents
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Chapter 1 - Introduction
James Zhijian Shen and Tomaž Kosmač
Pages 1-4 - Book chapterAbstract only
Chapter 2 - Teeth
Haifeng Chen and Yihong Liu
Pages 5-21 - Book chapterAbstract only
Chapter 3 - Dental Prostheses
Jing Zhao and Xinzhi Wang
Pages 23-49 - Book chapterAbstract only
Chapter 4 - Dental Implants
Belinda Reinhardt and Thomas Beikler
Pages 51-75 - Book chapterAbstract only
Chapter 5 - Clinical Failures of Ceramic Dental Prostheses
Yihong Liu and James Zhijian Shen
Pages 77-102 - Book chapterAbstract only
Chapter 6 - Advanced Ceramics
David Salamon
Pages 103-122 - Book chapterAbstract only
Chapter 7 - Advanced Ceramic Processes
Martin Trunec and Karel Maca
Pages 123-150 - Book chapterAbstract only
Chapter 8 - Microstructure Characterization of Advanced Ceramics
Saso Sturm and Boštjan Jančar
Pages 151-172 - Book chapterAbstract only
Chapter 9 - Mechanical Properties and Reliability of Advanced Ceramics
Tanja Lube and Robert Danzer
Pages 173-199 - Book chapterAbstract only
Chapter 10 - Interfaces Between Tissues and Ceramics
Peter Schüpbach
Pages 201-217 - Book chapterAbstract only
Chapter 11 - Alumina- and Zirconia-based Ceramics for Load-bearing Applications
Corrado Piconi, Saverio Giovanni Condo and Tomaž Kosmač
Pages 219-253 - Book chapterAbstract only
Chapter 12 - Dental Glasses and Glass-ceramics
Simon Jegou Saint-Jean
Pages 255-277 - Book chapterAbstract only
Chapter 13 - Requirements of Bioactive Ceramics for Dental Implants and Scaffolds
James Zhijian Shen and Jenny Fäldt
Pages 279-300 - Book chapterAbstract only
Chapter 14 - Surface Modifications of Load-Bearing Ceramics for Improved Osseointegration
Martin Stefanic and Tomaž Kosmač
Pages 301-325 - Book chapterAbstract only
Chapter 15 - Industrial-scale Production of Customized Ceramic Prostheses
Dag Henrik Bergsjö, Matts Andersson, ... Johan Carlson
Pages 327-341 - Book chapterAbstract only
Chapter 16 - Advanced Dental-restoration Materials: Concepts for the Future
James Zhijian Shen and Tomaž Kosmač
Pages 343-358 - Book chapterAbstract only
Chapter 17 - Defect Minimization in Prosthetic Ceramics
Erik Adolfsson and James Zhijian Shen
Pages 359-373 - Book chapterAbstract only
Chapter 18 - Advanced Direct Forming Processes for the Future
Danjela Kuscer and James Zhijian Shen
Pages 375-390 - Book chapterNo access
Index
Pages 391-402
About the book
Description
The growth of implant and fixed prosthodontics practices in dentistry has created a rapidly increasing demand for advanced ceramics and ceramic processes. Innovations in ceramics and ceramic processes are vital to ensure reliable and affordable dental-restoration solutions with aesthetically pleasing outcomes.
The work aims to engage the bioceramics and engineering communities to meet the challenges of modern dental restoration using advanced ceramics. Incorporating fundamental science, advanced engineering concepts, and clinical outcomes, the work is suitable for bioceramicists, ceramics manufacturers, dental clinicians and biologists.
The growth of implant and fixed prosthodontics practices in dentistry has created a rapidly increasing demand for advanced ceramics and ceramic processes. Innovations in ceramics and ceramic processes are vital to ensure reliable and affordable dental-restoration solutions with aesthetically pleasing outcomes.
The work aims to engage the bioceramics and engineering communities to meet the challenges of modern dental restoration using advanced ceramics. Incorporating fundamental science, advanced engineering concepts, and clinical outcomes, the work is suitable for bioceramicists, ceramics manufacturers, dental clinicians and biologists.
Key Features
- State-of-the-art-coverage encompasses bioresorbable ceramics for bone regeneration and bioactivating surfaces of inert, high-strength ceramics for implantation, keeping research knowledge appropriately updated
- Discusses transition from the baseline stable and physically stiff ceramics research into engineering of highly coherent laminate composites for prosthetic crowns and bridges
- Showcases current feasible techniques for producing, in cost-effective and materials-saving ways, long-lasting individualized ceramic components with biocompatibility, complexity and high precision
- State-of-the-art-coverage encompasses bioresorbable ceramics for bone regeneration and bioactivating surfaces of inert, high-strength ceramics for implantation, keeping research knowledge appropriately updated
- Discusses transition from the baseline stable and physically stiff ceramics research into engineering of highly coherent laminate composites for prosthetic crowns and bridges
- Showcases current feasible techniques for producing, in cost-effective and materials-saving ways, long-lasting individualized ceramic components with biocompatibility, complexity and high precision
Details
ISBN
978-0-12-394619-5
Language
English
Published
2014
Copyright
Copyright © 2014 Elsevier Inc. All rights reserved.
Imprint
Butterworth-Heinemann