Woodhead Publishing Series in Biomaterials Ser.: Octacalcium Phosphate Biomaterials : Understanding of Bioactive Properties and Application by Osamu Suzuki (2019, Trade Paperback)

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About this product

Product Identifiers

PublisherElsevier Science & Technology
ISBN-100081025114
ISBN-139780081025116
eBay Product ID (ePID)27038279358

Product Key Features

Number of Pages450 Pages
LanguageEnglish
Publication NameOctacalcium Phosphate Biomaterials : Understanding of Bioactive Properties and Application
SubjectPersonal & Practical Guides, Biotechnology, Surgery / Transplant, Orthopedics, Chemistry / General
Publication Year2019
TypeTextbook
Subject AreaReference, Science, Medical
AuthorOsamu Suzuki
SeriesWoodhead Publishing Series in Biomaterials Ser.
FormatTrade Paperback

Dimensions

Item Length9 in
Item Width6 in

Additional Product Features

Intended AudienceScholarly & Professional
LCCN2021-275346
Dewey Edition23
IllustratedYes
Dewey Decimal617.471
Table Of Content1. Octacalcium Phosphate Biomaterials - Past present and Future 2. Octacalcium phosphate effects on the systematic and local factors that regulate bone cell activity 3. Octacalcium phosphate and the Biomineralisation of bone, cellular interactions and their role in bone repair 4. Octacalcium Phosphate bone replacement and drug delivery 5. Dissolution and growth of Octacalcium Phosphate in the presence of tooth proteins 6. The influence of sterilization on Octacalcium phosphate for clinical applications 7. An osteoinductive biomaterial Octacalcium Phosphate and its mechanism for bone formation 8. Novel scaffold composites containing Octacalcium Phosphate and their role in bone repair 9. Synthesis methodologies options for large scale manufacture of Octacalcium Phosphate 10. Biomimetic synthesis of calcium phosphate-based biomaterials for hard tissue regeneration 11. Future analysis techniques to assess mechanical and physiological behavior of novel calcium phosphate materials including Octacalcium Phosphate - In-vivo human clinical model 12. Octacalcium phosphate for implant coating 13. Calcium phosphate-based bone graft substitutes and the special roles of Octacalcium phosphate materials 14. Unique compositional and structural properties of OCP among calcium phosphate 15. Octacalcium phosphate collagen composites and their clinical application
SynopsisOctacalcium Phosphate Biomaterials: Past, Present and Future is a comprehensive study of octacalcium phosphate (OCP), a next generation biomaterial for bone regeneration. By focusing both on fundamental research and the use of OCP as a scaffold material, this book explores its potential to deliver improved clinical results. Early chapters in the book discuss OCP's effects on bone cell activity, cellular interactions and their role in bone formation, repair and replacement. Later chapters cover topics such as drug delivery, synthesis methodologies and future analysis techniques. This will be an invaluable and unique resource for researchers, clinicians, students and industrialists in the area of orthopedics and dentistry. OCP is known to be a pre-cursor to hydroxyapatite in the human biomineralization process that forms bone and tooth enamel. Research studies that have emerged in recent years suggest OCP's tremendous potential as a bioactive material., Octacalcium Phosphate Biomaterials: Past, Present and Future is a comprehensive study of octacalcium phosphate (OCP), a next generation biomaterial for bone regeneration. By focusing both on fundamental research and the use of OCP as a scaffold material, this book explores its potential to deliver improved clinical results. Early chapters in the book discuss OCP's effects on bone cell activity, cellular interactions and their role in bone formation, repair and replacement. Later chapters cover topics such as drug delivery, synthesis methodologies and future analysis techniques. This will be an invaluable and unique resource for researchers, clinicians, students and industrialists in the area of orthopedics and dentistry. OCP is known to be a pre-cursor to hydroxyapatite in the human biomineralization process that forms bone and tooth enamel. Research studies that have emerged in recent years suggest OCP's tremendous potential as a bioactive material. Contains comprehensive, up-to-date information on the basic science, including physical, chemical and biological properties Presents the clinical potential of octacalcium phosphate biomaterials Provides a reference point for new research and increased activity in the area of next generation smarter biomaterials for hard tissue repair and regeneration
LC Classification NumberRD755.6
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