Titanium in Medicine: Material Science, Surface Science, Engineering, Biological Responses and Medical Applications

Author:   D.M. Brunette ,  P. Tengvall ,  Marcus Textor ,  P. Thomsen
Publisher:   Springer-Verlag Berlin and Heidelberg GmbH & Co. KG
Edition:   Softcover reprint of the original 1st ed. 2001
ISBN:  

9783642631191


Pages:   1019
Publication Date:   05 October 2013
Format:   Paperback
Availability:   Manufactured on demand   Availability explained
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Titanium in Medicine: Material Science, Surface Science, Engineering, Biological Responses and Medical Applications


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Overview

Providing scientific and technical in-depth information in a clear format with a homogeneous structure, this text is suited for educational and self-teaching purposes as well as a reference on titanium for biomedical applications. It covers the whole area relevant to the use of titanium for implants, devices and instruments in medicine: material and surface science, physics, chemistry, biology, medicine, quality and regulatory aspects.

Full Product Details

Author:   D.M. Brunette ,  P. Tengvall ,  Marcus Textor ,  P. Thomsen
Publisher:   Springer-Verlag Berlin and Heidelberg GmbH & Co. KG
Imprint:   Springer-Verlag Berlin and Heidelberg GmbH & Co. K
Edition:   Softcover reprint of the original 1st ed. 2001
Weight:   1.595kg
ISBN:  

9783642631191


ISBN 10:   3642631193
Pages:   1019
Publication Date:   05 October 2013
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

I Introductory Survey.- 1. A Perspective on Titanium Biocompatibility.- 2. Titanium for Medical Applications.- II Metallurgy and Fabrication; Surface and Technological Properties.- 3. Metallurgy and Technological Properties of Titanium and Titanium Alloys.- 4. Titanium-Nickel Shape Memory Alloys in Medical Applications.- 5. Characterization of Titanium Surfaces.- 6. The Corrosion Properties of Titanium and Titanium Alloys.- 7. Properties and Biological Significance of Natural Oxide Films on Titanium and Its Alloys.- III Surface Engineering.- 8. Mechanical, Thermal, Chemical and Electrochemical Surface Treatment of Titanium.- 9. Sol-Gel Coatings on Titanium.- 10. Physical and Chemical Vapor Deposition and Plasma-assisted Techniques for Coating Titanium.- 11. Production of Microfabricated Surfaces and Their Effects on Cell Behavior.- 12. Thermal Spray Coatings on Titanium.- 13. Biochemical Modification of Titanium Surfaces.- IV Biological Performance.- 14. Proteins at Titanium Interfaces.- 15. Principles of Cell Behavior on Titanium Surfaces and Their Application to Implanted Devices.- 16. Titanium in Soft Tissues.- 17. The Titanium-Bone Cell Interface In Vitro: The Role of the Surface in Promoting Osteointegration.- 18. The Titanium-Bone Interface In Vivo.- 19. Titanium Ceramics for Cell-Carriers and for Medical Applications.- V Medical Applications.- 20. Design and Engineering Criteria for Titanium Devices.- 21. Titanium for Hip and Knee Prostheses.- 22. Wear of Titanium 6-4 Alloy in Laboratory Tests and in Retrieved Human Joint Replacements.- 23. Titanium as Implant Material for Osteosynthesis Applications.- 24. Titanium for Dental Applications (I).- 25. Titanium for Dental Applications (II): Implants with Roughened Surfaces.- 26. Titanium in Cardiac and CardiovascularApplications.- 27. Titanium in Audiology.- 28. Regulatory Aspects in the Use of Titanium-based Materials for Medical Applications.- VI Appendices.- Appendix A Color Figures.- Appendix B Biographies of Editors and Authors.- Appendix C Abbreviations.- Appendix D World-Wide-Web Sites (URL Addresses).- Appendix E Index.- Appendix F Spectacles for Stereo-View of Color Figures (App. A) ............................insert at end of book.

Reviews

From the reviews: Titanium is a metal that is generally regarded as one of the most biocompatible metals available for clinical applications. As is the case with all novelties in medicine, research activity and clinical experience tend to dampen the initial euphoria that nearly always accompanies new developments. Titanium is no exception. Yet, it is an extremely valuable material and some exciting new developments are taking place such as the combination of titanium with a variety of elements to form new alloys with improved material characteristics for clinical application. Titanium in Medicine is a comprehensive collation of 28 chapters written by international experts that cover much more than the title may suggest.The book is divided into five parts: Introductory Survey, Metallurgy and Fabrication, Surface Engineering, Biological Performance and Medical Applications. A sixth section contains various appendices, figures and of particular use, a list of relevant websites. Considerable depth of coverage has been given to the material science of titanium and I was particularly attracted to a concise account of the techniques used to characterise the surface of biomaterials. This exemplifies the breadth of knowledge in this text and makes it attractive to beginners and established researchers. Clinicians are also well catered for because Part V presents nine chapters relating to the application of titanium implants to numerous clinical applications, including joint replacement surgery, dental medicine, cardiovascularimplantation and audiology. A clear logical thread pervades the text so that following a discussion of the physico-chemistry of titanium, the interaction of proteins and cells with titanium surfaces introduces readers to the biological basis of its medical application. Separate chapters then present the state of knowledge on how titanium reacts to soft tissue as well as bone, the data gleaned from animal experimentation as well as retrieved human implants. Of great value is the excellent bibliography at the end of each chapter, some of which include more than 200 references. This book brings together the collective experience of 53 authors, which like a good composite implant, fulfils a spectrum of varyingfunctions. A separate web site has been established to gather feedback on the book.This publication will rapidly become the authoritative work on the subject of titanium in medicine and will undoubtedly prove itself to be an integral part ofthe non dust-collecting section of any library or laboratory. C. James Kirkpatrick, MD, PhD, DSc Institute of Pathology, Johannes Gutenberg University, Mainz, Germany e-mail: kirkpatrick pathologie.klinik.uni-mainz.de (medical device technology, November 2001) It has to be said that this is a truly excellent book, both with respect to its organisation and the quality of the individual contributions. It is difficult to think of any relevant subject that has been left out and there is very little in the book that is irrelevant or superfluous. ... there is a strong uniform style and good quality graphics and bibliographies. ... this book will be essential reading matter for anyone concerned with implantable medical devices for the foreseeable future. (D. F. Williams, Biomaterials, Vol. 23, 2002) 'Titanium in Medicine' is a comprehensive collation of 28 chapters written by international experts that cover much more than the title may suggest. ... A clear logical thread pervades the text ... . Of great value is the excellent bibliography at the end of each chapter, some of which include more than 200 references. ... This publication will rapidly become the authoritative work on the subject of titanium in medicine ... . (C. James Kirkpatrick, Medical Device Technology, Vol. 12 (10), 2001)


From the reviews: Titanium is a metal that is generally regarded as one of the most biocompatible metals available for clinical applications. As is the case with all novelties in medicine, research activity and clinical experience tend to dampen the initial euphoria that nearly always accompanies new developments. Titanium is no exception. Yet, it is an extremely valuable material and some exciting new developments are taking place such as the combination of titanium with a variety of elements to form new alloys with improved material characteristics for clinical application. Titanium in Medicine is a comprehensive collation of 28 chapters written by international experts that cover much more than the title may suggest.The book is divided into five parts: Introductory Survey, Metallurgy and Fabrication, Surface Engineering, Biological Performance and Medical Applications. A sixth section contains various appendices, figures and of particular use, a list of relevant websites. Considerable depth of coverage has been given to the material science of titanium and I was particularly attracted to a concise account of the techniques used to characterise the surface of biomaterials. This exemplifies the breadth of knowledge in this text and makes it attractive to beginners and established researchers. Clinicians are also well catered for because Part V presents nine chapters relating to the application of titanium implants to numerous clinical applications, including joint replacement surgery, dental medicine, cardiovascularimplantation and audiology. A clear logical thread pervades the text so that following a discussion of the physico-chemistry of titanium, the interaction of proteins and cells with titanium surfaces introduces readers to the biological basis of its medical application. Separate chapters then present the state of knowledge on how titanium reacts to soft tissue as well as bone, the data gleaned from animal experimentation as well as retrieved human implants. Of great value is the excellent bibliography at the end of each chapter, some of which include more than 200 references. This book brings together the collective experience of 53 authors, which like a good composite implant, fulfils a spectrum of varyingfunctions. A separate web site has been established to gather feedback on the book.This publication will rapidly become the authoritative work on the subject of titanium in medicine and will undoubtedly prove itself to be an integral part ofthe non dust-collecting section of any library or laboratory. C. James Kirkpatrick, MD, PhD, DSc Institute of Pathology, Johannes Gutenberg University, Mainz, Germany e-mail: kirkpatrickxpathologie.klinik.uni-mainz.de (medical device technology, November 2001) It has to be said that this is a truly excellent book, both with respect to its organisation and the quality of the individual contributions. It is difficult to think of any relevant subject that has been left out and there is very little in the book that is irrelevant or superfluous. ... there is a strong uniform style and good quality graphics and bibliographies. ... this book will be essential reading matter for anyone concerned with implantable medical devices for the foreseeable future. (D. F. Williams, Biomaterials, Vol. 23, 2002) 'Titanium in Medicine' is a comprehensive collation of 28 chapters written by international experts that cover much more than the title may suggest. ... A clear logical thread pervades the text ... . Of great value is the excellent bibliography at the end of each chapter, some of which include more than 200 references. ... This publication will rapidly become the authoritative work on the subject of titanium in medicine ... . (C. James Kirkpatrick, Medical Device Technology, Vol. 12 (10), 2001)


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