Osseoconductive Surface Engineering for Orthopedic Implants: Biomaterials Engineering
Osseoconductive Surface Engineering for Orthopedic Implants provides a comprehensive overview of the state of the art of osseointegration based on surface-mediated engineering. It offers a practical approach to the design and development of implant surface engineering, by reviewing and discussing the usability and efficacy of each processing technique. The reader can learn about the variety, characteristics, advantages, challenges, and optimum parameters for each process—enabling targeted selection of coatings and technologies to enhance long-term implant–bone integration. - Practical and engineering notions in the field of osseoconductive surface engineering are reviewed and discussed using scientific principles and concepts. - Engineering cases are analyzed in depth giving a thorough exploration and description of the engineering and scientific concepts for all osseoconductive surface engineering processes. - Chapters integrate topics and are organised in such a way as to build on themes and practice.
1137884157
Osseoconductive Surface Engineering for Orthopedic Implants: Biomaterials Engineering
Osseoconductive Surface Engineering for Orthopedic Implants provides a comprehensive overview of the state of the art of osseointegration based on surface-mediated engineering. It offers a practical approach to the design and development of implant surface engineering, by reviewing and discussing the usability and efficacy of each processing technique. The reader can learn about the variety, characteristics, advantages, challenges, and optimum parameters for each process—enabling targeted selection of coatings and technologies to enhance long-term implant–bone integration. - Practical and engineering notions in the field of osseoconductive surface engineering are reviewed and discussed using scientific principles and concepts. - Engineering cases are analyzed in depth giving a thorough exploration and description of the engineering and scientific concepts for all osseoconductive surface engineering processes. - Chapters integrate topics and are organised in such a way as to build on themes and practice.
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Osseoconductive Surface Engineering for Orthopedic Implants: Biomaterials Engineering

Osseoconductive Surface Engineering for Orthopedic Implants: Biomaterials Engineering

by Amirhossein Goharian
Osseoconductive Surface Engineering for Orthopedic Implants: Biomaterials Engineering

Osseoconductive Surface Engineering for Orthopedic Implants: Biomaterials Engineering

by Amirhossein Goharian

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Overview

Osseoconductive Surface Engineering for Orthopedic Implants provides a comprehensive overview of the state of the art of osseointegration based on surface-mediated engineering. It offers a practical approach to the design and development of implant surface engineering, by reviewing and discussing the usability and efficacy of each processing technique. The reader can learn about the variety, characteristics, advantages, challenges, and optimum parameters for each process—enabling targeted selection of coatings and technologies to enhance long-term implant–bone integration. - Practical and engineering notions in the field of osseoconductive surface engineering are reviewed and discussed using scientific principles and concepts. - Engineering cases are analyzed in depth giving a thorough exploration and description of the engineering and scientific concepts for all osseoconductive surface engineering processes. - Chapters integrate topics and are organised in such a way as to build on themes and practice.

Product Details

ISBN-13: 9780128189313
Publisher: Elsevier Science & Technology Books
Publication date: 01/26/2021
Sold by: Barnes & Noble
Format: eBook
Pages: 250
File size: 14 MB
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About the Author

Amirhossein Goharian is a Senior Engineer working in the orthopedic implant industry. He earned his Bachelor's degree from the University of Kashan in 2007, and his completed his Master's in Mechanical Engineering in Biomechanics at the University Technology Malaysia (UTM) in 2012. He joined the R&D department of LEONIX Sdn. Bhd., Penang, Malaysia, in 2012, rising to Senior R&D Leader in Jan 2015. In 2017, he joined Isfahan Orthopedic Implant Development Co., an orthopedic implant manufacturer in Isfahan, Iran, as the QA-R&D leader until Sep 2020. Since then, he has been developing innovations in the field of orthopedic implants, based on ideas set out in his published work. Goharian has previously published three books with Elsevier, covering trauma plating systems, osseointegration and surface engineering of orthopedic implants.
Amirhossein Goharian is a Senior Engineer working in the orthopedic implant industry. He earned his Bachelor’s degree from the University of Kashan in 2007, and his completed his Master’s in Mechanical Engineering in Biomechanics at the University Technology Malaysia (UTM) in 2012. He joined the R&D department of LEONIX Sdn. Bhd., Penang, Malaysia, in 2012, rising to Senior R&D Leader in Jan 2015. In 2017, he joined Isfahan Orthopedic Implant Development Co., an orthopedic implant manufacturer in Isfahan, Iran, as the QA-R&D leader until Sep 2020. Since then, he has been developing innovations in the field of orthopedic implants, based on ideas set out in his published work. Goharian has previously published three books with Elsevier, covering trauma plating systems, osseointegration and surface engineering of orthopedic implants.

Table of Contents

1. General concepts of osseoconductive surface engineering2. Plasma spraying process for osseoconductive surface engineering3. Vapor deposition process for osseoconductive surface engineering4. Plasma electrolyte oxidation for osseoconductive surface engineering5. Biomimetic coating process for osseoconductive surface engineering6. Porous structuring process for osseoconductive surface engineering7. Effectiveness of osseoconductive surface engineering methods and future perspectiveGlossary for surface engineering methods and treatmentsGlossary of technical terms

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Describes physical techniques designed to control, enhance and advance osseointegration using biocompatible coatings

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