Book > Osseoconductive Surface Engineering For Orthopedic Implants

Osseoconductive Surface Engineering for Orthopedic Implants

Osseoconductive Surface Engineering for Orthopedic Implants

Detail Book : Osseoconductive Surface Engineering for Orthopedic Implants written by Amirhossein Goharian, published by Academic Press which was released on 01 March 2021. Download Osseoconductive Surface Engineering for Orthopedic Implants Books now! Available in PDF, ePub and Kindle. Osseoconductive Surface Engineering for Orthopedic Implants: Biomaterials Engineering provides a comprehensive overview on the state-of-the-art of osseointegration, based on surface-mediating coatings. Each chapter delves into both engineering and clinical aspects of processing these bioactive coatings, including characteristics and history of process technology to aid process selection, as well as a balanced overview of resultant implant osseointegration and therefore clinical application. This book provides a practical approach to design and development of implant coatings, 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. Reviews the fundamental theories and challenges of biomaterials biocompatibility including an overview of the standards and regulations Provides an overview of the cellular and molecular mechanisms involved in host responses to biomaterials Systematically looks at cellular response and tissue response to a wide range of biomaterials including polymers, metals, ceramics, alloys and nanomaterials

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Author : Amirhossein Goharian
Release Date : 01 March 2021
Publisher : Academic Press
Rating : 4/5 (from 21 users)
Pages : 225
ISBN : 0128189312
Format : PDF, ePUB, KF8, PDB, MOBI, Tuebl
Osseoconductive Surface Engineering for Orthopedic Implants

Osseoconductive Surface Engineering for Orthopedic Implants

Osseoconductive Surface Engineering for Orthopedic Implants: Biomaterials Engineering provides a comprehensive overview on the state-of-the-art of osseointegration, based on surface-mediating coatings. Each chapter delves into both engineering and clinical aspects of processing these bioactive coatings, including characteristics and history of process technology to aid process selection, as well as a

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Osseointegration of Orthopaedic Implants

Osseointegration of Orthopaedic Implants

Osseointegration of Orthopaedic Implants helps product developers at orthopedic implant manufacturers enhance the effectiveness of orthopedic implants and reduce complications, particularly in patients with osteoporotic bones. The book's expert contributors provide cutting-edge information on the latest technologies and advances available. Biomaterial researchers can use the book for basic data in

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Advanced Surface Engineering Materials

Advanced Surface Engineering Materials

Advanced surfaces enriches the high-throughput engineering of physical and chemical phenomenon in relatin to electrical, magnetic, electronics, thermal and optical controls, as well as large surface areas, protective coatings against water loss and excessive gas exchange. A more sophisticated example could be a highly selective surface permeability allowing passive diffusion

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3rd Kuala Lumpur International Conference on Biomedical Engineering 2006

3rd Kuala Lumpur International Conference on Biomedical Engineering 2006

The Kuala Lumpur International Conference on Biomedical Engineering (BioMed 2006) was held in December 2006 at the Palace of the Golden Horses, Kuala Lumpur, Malaysia. The papers presented at BioMed 2006, and published here, cover such topics as Artificial Intelligence, Biological effects of non-ionising electromagnetic fields, Biomaterials, Biomechanics, Biomedical Sensors, Biomedical Signal Analysis,

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Modern Surface Engineering Treatments

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Surface engineering can be defined as an enabling technology used in a wide range of industrial activities. Surface engineering was founded by detecting surface features which destroy most of pieces, e.g. abrasion, corrosion, fatigue, and disruption; then it was recognized, more than ever, that most technological advancements are constrained

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Racing for the Surface

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This book covers the key basics of tissue engineering as well as the latest advances in the integration of both antimicrobial and osteoinductive properties. Topics covered include osteoconductive and osteoinductive biomaterials (calcium phosphate, bone morphogenetic protein, peptides, antibodies, bioactive glasses, nanomaterials, etc.) and scaffolds. Research integrating both antimicrobial/biofilm-inhibiting and

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Orthopedic Biomaterials

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This book covers the latest progress in the biology and manufacturing of orthopedic biomaterials, as well as key industry perspectives. Topics covered include the development of biomaterial-based medical products for orthopedic applications, anti-infection technologies for orthopedic implants, additive manufacturing of orthopedic implants, and more. This is an ideal book for

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Thin Calcium Phosphate Coatings for Medical Implants

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This book presents for the first time, the scattered novel results that have been achieved in very recent years in study on various thin calcium phosphate coatings produced by very diverse techniques. The comparison of thin calcium phosphate coatings with the thick plasma-sprayed ones is also included in the book.

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Collection of selected, peer reviewed papers from the ICMEP 2013 International Conference on Manufacturing Engineering and Process, April 13-14, 2013, Vancouver, Canada. The 373 papers are grouped as follows: Chapter 1: Advanced Materials Engineering and Technology; Chapter 2: General Mechanical Engineering; Chapter 3: Design Technology and Engineering; Chapter 4: Applied Thermodynamics, Heat Transfer, Energy Conversion; Chapter 5: Electrical

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Applications of Nanocomposite Materials in Orthopedics

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Applications of Nanocomposite Materials in Orthopedics provides a solid understanding of recent developments in the field of nano-composites used in orthopedics. The book covers joint replacement, the load bearing capability of fractured bones, bone soft tissue regeneration, hard tissue replacement, artificial bone grafting, bone repair, bone tissue transplantations, and related

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Degradation of Implant Materials

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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

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