Bioceramics: From Macro to Nanoscale: Elsevier Series in Advanced Ceramic Materials
Editat de Akiyoshi Osaka, Roger Narayanen Limba Engleză Paperback – 16 sep 2020
This book will cover almost all kinds of such 3rd generation ceramic and ceramic-related biomaterials. This book conveys the current state-of-the-art on the science and technology of bioceramics, from nano-size dots or particles to macro-scale architectures, of a wide range of constitutions including quantum dots with peptide fragments, meso-scale therapeutic particles designed to involve drugs or genes, mesoporous organic-inorganic hybrids, nano-structured oxide layers on metals and alloys.
- Comprehensively covers all aspects (research/experimental and commercial products) related to the latest progresses in bioceramic science, technology and applications, with emphasis on nanobioceramics
- Pulls together a broad range of materials, concepts, and technologies based on nanomaterials
- Features novel preparation procedures like additive manufacturing (3-D printing and related techniques) that have also been introduced and practiced for forming complicated architectures
- Features innovative 3rd generation ceramic and ceramic-related biomaterials
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Specificații
ISBN-13: 9780081029992
ISBN-10: 0081029993
Pagini: 468
Ilustrații: 350 illustrations (80 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.62 kg
Editura: ELSEVIER SCIENCE
Seria Elsevier Series in Advanced Ceramic Materials
ISBN-10: 0081029993
Pagini: 468
Ilustrații: 350 illustrations (80 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.62 kg
Editura: ELSEVIER SCIENCE
Seria Elsevier Series in Advanced Ceramic Materials
Public țintă
academic and industrial researchers, materials scientists, chemists, clinicians and biologists and engineers working in ceramic materials for biomedical applicationsCuprins
1. Introduction
2. Importance of nano-structured surfaces
3. Nano-structured TiO2 layers on Ti for bone-bonding
4. Organic modification of magnetite nanoparticles for biomedical applications
5. NIR excitation of rare earth ions for diagnosis and bioimaging
6. Organic-Inorganic Nanohybrid Particles for Biomedical Applications
7. Incorporation behavior and biomedical applications of inorganic-layered compounds
8. Nano apatite formation on DCPD
9. Bone structure and formation: A new perspective
10. Sol-gel preparation of titanium oxide and hydroxyapatite microparticles for blood purification
11. Design of silica-doped calcium carbonates and their composites for biomedical use
12. Ceramics for Artificial Joints: Alumina, Zirconia and Alumina-Zirconia composites
13. Chemistry of bioceramics in joint arthroplasty: the missing key
14. Robocasting of mesoporous bioactive glasses (MBGs)
15. Glass and glass ceramics for tissue engineering
16. Bioactive ceramics: past and future
17. PILP and bone regeneration
18. Electrospinning and Nanofibrous Structures for Biomedical Applications
2. Importance of nano-structured surfaces
3. Nano-structured TiO2 layers on Ti for bone-bonding
4. Organic modification of magnetite nanoparticles for biomedical applications
5. NIR excitation of rare earth ions for diagnosis and bioimaging
6. Organic-Inorganic Nanohybrid Particles for Biomedical Applications
7. Incorporation behavior and biomedical applications of inorganic-layered compounds
8. Nano apatite formation on DCPD
9. Bone structure and formation: A new perspective
10. Sol-gel preparation of titanium oxide and hydroxyapatite microparticles for blood purification
11. Design of silica-doped calcium carbonates and their composites for biomedical use
12. Ceramics for Artificial Joints: Alumina, Zirconia and Alumina-Zirconia composites
13. Chemistry of bioceramics in joint arthroplasty: the missing key
14. Robocasting of mesoporous bioactive glasses (MBGs)
15. Glass and glass ceramics for tissue engineering
16. Bioactive ceramics: past and future
17. PILP and bone regeneration
18. Electrospinning and Nanofibrous Structures for Biomedical Applications