Osseointegration of Orthopaedic Implants - 1st Edition - ISBN: 9780128133842

Osseointegration of Orthopaedic Implants

1st Edition

Authors: Amirhossein Goharian
Paperback ISBN: 9780128133842
Imprint: Academic Press
Published Date: 1st March 2019
Page Count: 300
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Description

The content in Osseointegration of Orthopaedic Implants will help:

  • Product developers at orthopeadic implant manufacturers to improve the implants they are developing in terms of connecting to living bone
  • Biomaterial researchers to use the material in this book as basic data for further development of orthopaedic implant materials with better osseointegration
  • Biomechanical researchers to review the biomechanical challenges and concepts related to osseointegration covered in the book and investigate the challenges for development of orthopaedic implants

Osseointegration is one of major issues behind success of an implant; this book will help you to resolve this issue. Readers can use this book to enhance effectiveness of orthopedic implants and reduce complications, particularly in patients with osteoporotic bones. The contributors have provided their expertise in their specialized field on the cutting edge technology and advances in the field within this book. This book is suitable for readers from academia and industry, and bridges the knowledge gap between academic based researchers, industrial based engineers, and clinical based surgeons in this topic area.

Key Features

  • Reviews and discusses all aspects of orthopaedic implant osseointegration
  • Provides conceptual implants for bone fracture fixation and joint replacement
  • Offers novel ideas for development of orthopaedic implants with superior osseointegration

Readership

Product Developers at orthopaedic implant manufacturers, Biomechanical researchers, Biomaterial researchers, Biomedical engineering lecturers and students, Medical implants institutes

Table of Contents

Part I General topics in osteointegration
1. Biology of bone tissue
2. History of osteointegration
3. Basic science research and clinical findings of osteointegration

Part II Overview of orthopedic implants
4. Implant loosening
5. Bone fracture fixation implants
6. Joint replacement prostheses
7. Tissue engineering scaffolds

Part III Biomaterials for enhancement of osteointegration  
8. Osteoconductive materials
9. Osteoinductive materials
10. Bioactive materials

Part IV Surface treatments for enhancement of osteointegration 
11. Bioactive coating
12. Porous surface
13. Surface treatment

Part V Biological concepts and challenges of osteointegration
14. Bone tissue in-growth & on-growth  
15. Body fluid rate effect on osteointegration
16. Osteoinductivity & Osteoconductivity

Part VI Mechanical  concepts and challenges of osteointegration
17. Load transferring mechanism between bone and implant
18. Osteointegration in long term implantation  
19. Stress shielding effect on osteointegration
20. Biomechanical concepts of scaffolding

Part VII Novel development concepts
21. Novel development concepts of implant osteointegration
22. Transition layer concept
23. Improvement of long term bioactivity at transition layer
24. Enhancement of load transferring at transition layer
25. Development of shape memory concept at transition layer
26. Promoting osteointegration upon of physiological loading cycles at early implantation

Details

No. of pages:
300
Language:
English
Copyright:
© Academic Press 2019
Published:
Imprint:
Academic Press
Paperback ISBN:
9780128133842

About the Author

Amirhossein Goharian

Mr. Amirhossein Goharian is an independent product developer in the field of orthopedic implants. He holds a master’s degree in both biomechanical and biomaterial engineering. With background in mechanics, biomaterials, and biomechanics, he has been engaged in research and development in the areas of trauma implants and total joint replacements since 2011. His main concern and interest in the development of orthopedic implants is the effective incorporation of biomechanical, material, biological, and clinical facets simultaneously to optimize the implant design, technology, and features and ultimately to enhance the biomechanical and clinical benefits of orthopedic implants in treatment of bone injuries, particularly in patients with osteoporotic bones. He attempts to challenge current concepts and methods of evaluation and development of orthopedic implants and to create and propose novel concepts for future development of these products. In the area of trauma plating systems, he has acquired rigorous and significant information regarding (1) design engineering, (2) biomechanical testing and analysis, (3) clinical studies and investigations, and (4) bone biology, bone biomechanics, and muscle-tendons constraints on effectiveness of trauma plating fixation in treatment of bone fractures. His experience and studies with regard to trauma plating systems motivated the writing of this reference book on this topic. As was presented in this publication, he aims to explore new development concepts and novel conceptual implants in future publications with the hope of advancing the biomechanical and clinical benefits of orthopedic implants.

Affiliations and Expertise

Independent Product Developer and Researcher in Orthopedic Implants

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