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商品コード: 9781461439417

Degradation of Implant Materials

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書名

Degradation of Implant Materials
著者・編者 Eliaz, N.
出版社/発行元 Springer
発行年/月 2012年8月   
装丁 Hardcover
ページ数/巻数 516 ページ
ISBN 978-1-4614-3941-7
発送予定 海外倉庫よりお取り寄せ 2-3週間以内に発送します

 

Desciption

 

This book reviews the current understanding of the mechanical, chemical and biological processes that are responsible for the degradation of a variety of implant materials. All 18 chapters will be written by internationally renowned experts to address both fundamental and practical aspects of research into the field. Different failure mechanisms such as corrosion, fatigue, and wear will be reviewed, together with experimental techniques for monitoring them, either in vitro or in vivo. Procedures for implant retrieval and analysis will be presented. A variety of biomaterials (stainless steels, titanium and its alloys, nitinol, magnesium alloys, polyethylene, biodegradable polymers, silicone gel, hydrogels, calcium phosphates) and medical devices (orthopedic and dental implants, stents, heart valves, breast implants) will be analyzed in detail. The book will serve as a broad reference source for graduate students and researchers studying biomedicine, corrosion, surface science, and electrochemistry.

 

Contents:

 

Medical Implant Corrosion: Electrochemistry at Metallic Biomaterial Surfaces
Degradation of Titanium and Its Alloys
Degradation of Dental Implants
Biodegradable Metals
Degradable and Bioactive Synthetic Composite Scaffolds for Bone Tissue Engineering
Biodegradation of Calcium Phosphate Cement Composites
Enzyme-Promoted Degradation of Polymeric Matrices for Controlled Drug Delivery: Analytical Model and Numerical Simulations
Degradation of Bioceramics
Fundamentals of Tribology and the Use of Ferrography and Bio-Ferrography for Monitoring the Degradation of Natural and Artificial Joints
Fatigue Failure of Materials for Medical Devices
Hypersensitivity to Implant Debris
Implant Infections and Infection-Resistant Materials
Biomaterial Calcification: Mechanisms and Prevention
Orthopedic Implant Retrieval and Failure Analysis
The Use of Finite Element Analysis in Design, Life Prediction, and Failure Analysis of Biomaterials and Medical Devices
Biological Safety Evaluation of Polymers
Biological Responses to and Toxicity of Nanoscale Implant Materials

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