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Fundamental Biomaterials: Ceramics

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Paperback, blz. | Engels
Elsevier Science | e druk, 2018
ISBN13: 9780081022030
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Elsevier Science e druk, 2018 9780081022030
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Samenvatting

Fundamental Biomaterials: Ceramics provides current information on ceramics and their conversion from base materials to medical devices. Initial chapters review biomedical applications and types of ceramics, with subsequent sections focusing on the properties of ceramics, and on corrosion, degradation and wear of ceramic biomaterials. The book is ideal for researchers and professionals in the development stages of design, but is also helpful to medical researchers who need to understand and communicate the requirements of a biomaterial for a specific application.

This title is the second in a three volume set, with each reviewing the most important and commonly used classes of biomaterials and providing comprehensive information on material properties, behavior, biocompatibility and applications. In addition, with the recent introduction of a number of interdisciplinary bio-related undergraduate and graduate programs, this book will be an appropriate reference volume for large number of students at undergraduate and post graduate levels

Specificaties

ISBN13:9780081022030
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>1. Ceramic Biomaterials: An Introductory overview<br>2. Development of a Ceramic-Controlled Piezoelectric of Single Disc for Biomedical Applications<br>3. Ceramics as biomaterials for dental restoration<br>4. Ceramic biomaterials for tissue engineering<br>5. Inert ceramics<br>6. Bioactive glass ceramics<br>7. Bioceramics as drug delivery system<br>8. Bioceramics in orthopaedics<br>9. Mesoporous Ceramics as Drug Delivery Systems<br>10. Corrosion of Ceramic Materials<br>11. Nanostructural Bioceramics and applications<br>12. Bioactive Glass-Ceramic Scaffolds with High-Strength for Orthopedic Applications<br>13. Synthesis, Microstructure and Properties of High-Strength Porous Ceramics<br>14. Characterization and stability of bioactive ceramic composite material and bonding to bone<br>15. Optical behavior of current ceramic systems<br>16. Long-term clinical success of all-ceramic posterior restorations<br>17. Reducing the failure potential of ceramic-based restorations: Ceramic inlays, crowns, veneers, and bridges<br>18. Recent developments in restorative dental ceramics<br>19. Degradative effects of the biological environment on ceramics<br>20. Toxicity of Nanomaterials for Biomedical Applications</p>

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        Fundamental Biomaterials: Ceramics