Bioceramics and their Clinical Applications: Woodhead Publishing Series in Biomaterials
Editat de Kunio Ishikawa, Ahmed El-Ghannam, Tadashi Kokuboen Limba Engleză Paperback – 31 dec 2020
- Reviews the most relevant bioceramics for bone regeneration, tooth and joint replacements, tissue engineering, cell therapy and disease treatment
- Includes new discussion on immune response and biological behavior of ceramics
- Reviews the latest processing technologies, such as 3D printing, sol-gel, powder metallurgy and coatings
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Specificații
ISBN-13: 9780081030011
ISBN-10: 0081030010
Pagini: 925
Ilustrații: Approx. 288 illustrations (88 in full color)
Dimensiuni: 152 x 229 mm
Ediția:2
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Biomaterials
ISBN-10: 0081030010
Pagini: 925
Ilustrații: Approx. 288 illustrations (88 in full color)
Dimensiuni: 152 x 229 mm
Ediția:2
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Biomaterials
Cuprins
I.
Bone1.
Anatomy,
structure
and
properties
2.
Bone
metabolism,
cells
and
molecules
3.
Bone
fracture
and
healing
4.
Bone
diseases
II. Biological bone grafts5. Autografts and allografts 6. Advantages and limitations
III. Bioactive Ceramics for Bone Regeneration7. Carbonate apatite HAp:CO3Ap: Kunio Ishikawa 8. TCP 9. ACP: Chrisian Rey 10. OCP: Osamu Suzuki 11. Calcium sulfate: Ricchi 12. CaCO3: Toshihiro Kasuga 13. BCP: Guy Daculsi 14. Silica calcium phosphate composite: Ahmed El-Ghannam 15. Bioglass: Mohamed Rahman; Julia Jones
IV. Bioceramics for Tooth and Total Joint Replacements16. Alumina: Corrido from Itali 17. Zirconia: Corado from Itali
V. Bioactive Bone Cement18. Apatite cement: Kochi 19. Brushite cement: 20. Dental cement
VI. Bioactive Ceramic Coatings21. Methods of coating 22. Advantages and disadvantages
VII. Future Clinical Applications of BioceramicsA. Bioactive Ceramics for infection treatment B. Bioactive Ceramic and Cell Therapy 1. Combination with cells: Ohgushi C. Bioactive Ceramics for Soft Tissue regeneration and Disease Treatment 1. Urination incontinence 2. Breast Cancer Treatment 3. Infection treatment 4. Ophthalmology 5. ENT D. Composites for tissue engineering 1. Collagen composite: Kikuchi 2. Osteoinductive materials: Habibovic E. Bioceramics processing technology 1. 3D printing: Susmita Bose 2. Sol-Gel 3. Powder Metallurgy F. Analysis of the Biological Behavior of Bioceramics 1. Cell-tissue fluids interactions 2. Cell-Material interaction: Andres Garcia 3. Experimental animals: BenGuzzi, Hamed
II. Biological bone grafts5. Autografts and allografts 6. Advantages and limitations
III. Bioactive Ceramics for Bone Regeneration7. Carbonate apatite HAp:CO3Ap: Kunio Ishikawa 8. TCP 9. ACP: Chrisian Rey 10. OCP: Osamu Suzuki 11. Calcium sulfate: Ricchi 12. CaCO3: Toshihiro Kasuga 13. BCP: Guy Daculsi 14. Silica calcium phosphate composite: Ahmed El-Ghannam 15. Bioglass: Mohamed Rahman; Julia Jones
IV. Bioceramics for Tooth and Total Joint Replacements16. Alumina: Corrido from Itali 17. Zirconia: Corado from Itali
V. Bioactive Bone Cement18. Apatite cement: Kochi 19. Brushite cement: 20. Dental cement
VI. Bioactive Ceramic Coatings21. Methods of coating 22. Advantages and disadvantages
VII. Future Clinical Applications of BioceramicsA. Bioactive Ceramics for infection treatment B. Bioactive Ceramic and Cell Therapy 1. Combination with cells: Ohgushi C. Bioactive Ceramics for Soft Tissue regeneration and Disease Treatment 1. Urination incontinence 2. Breast Cancer Treatment 3. Infection treatment 4. Ophthalmology 5. ENT D. Composites for tissue engineering 1. Collagen composite: Kikuchi 2. Osteoinductive materials: Habibovic E. Bioceramics processing technology 1. 3D printing: Susmita Bose 2. Sol-Gel 3. Powder Metallurgy F. Analysis of the Biological Behavior of Bioceramics 1. Cell-tissue fluids interactions 2. Cell-Material interaction: Andres Garcia 3. Experimental animals: BenGuzzi, Hamed