Materials for Biomedical Engineering: Nanobiomaterials in Tissue Engineering
Editat de Alina Maria Holban, Alexandru Grumezescuen Limba Engleză Paperback – 27 mar 2019
- Provides a valuable resource of recent scientific progress, highlighting the most well-known applications of bioactive materials in tissue engineering that can be used by researchers, engineers and academics
- Includes novel opportunities and ideas for developing or improving technologies in composites by companies, biomedical industries, and in related sectors
- Features at least 50% of references from the last 2-3 years
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Specificații
ISBN-13: 9780128169094
ISBN-10: 0128169095
Pagini: 512
Dimensiuni: 191 x 235 x 31 mm
Greutate: 0.89 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128169095
Pagini: 512
Dimensiuni: 191 x 235 x 31 mm
Greutate: 0.89 kg
Editura: ELSEVIER SCIENCE
Public țintă
KEYWORDS: bioactive materials for tissue engineering, bioactive composite materials, bioactive glass-based composites, nanobiomaterials, biomedical applicationsCuprins
1. Nanobiomaterials for tissue engineering
2. Resorbable biomaterials: role of chitosan as a graft in bone tissue engineering
3. Novel twisted and coiled polymer artificial muscles for biomedical and robotics applications
4. Electrospun nanofibers for tissue enginneering applications
5. Recent advances of chitosan composites in artificial skin: the next era for potential biomedical application.
6. Resorbable polymer fiber reinforced composites in biomedical application
7. Possibilities and perspectives of chitosan scaffolds and their composites for tissue engineering
8. Hydroxyapatite: an inorganic ceramic for biomedical applications
9. Mechanical behaviour of hydroxyapatite-based dental resin composites
10. Molecular study of simulated body fluid and temperature on polyurethane/graphene polymeric nanocomposites: calcium carbonate and polymethyl methacrylate using dynamics modeling by Monte Carlo for applications in bone regeneration
11. New insights into nanohydroxyapatite/chitosan nanocomposites for bone tissue regeneration
12. Production of polymer
13. Bioactive glass-based composites in bone tissue engineering: synthesis, processing, and cellular responses
14. Mechanical and wear properties of nano titanium based dental composite resin
15. In vitro and in vivo technologies: an up to date overview in tissue engineering
2. Resorbable biomaterials: role of chitosan as a graft in bone tissue engineering
3. Novel twisted and coiled polymer artificial muscles for biomedical and robotics applications
4. Electrospun nanofibers for tissue enginneering applications
5. Recent advances of chitosan composites in artificial skin: the next era for potential biomedical application.
6. Resorbable polymer fiber reinforced composites in biomedical application
7. Possibilities and perspectives of chitosan scaffolds and their composites for tissue engineering
8. Hydroxyapatite: an inorganic ceramic for biomedical applications
9. Mechanical behaviour of hydroxyapatite-based dental resin composites
10. Molecular study of simulated body fluid and temperature on polyurethane/graphene polymeric nanocomposites: calcium carbonate and polymethyl methacrylate using dynamics modeling by Monte Carlo for applications in bone regeneration
11. New insights into nanohydroxyapatite/chitosan nanocomposites for bone tissue regeneration
12. Production of polymer
13. Bioactive glass-based composites in bone tissue engineering: synthesis, processing, and cellular responses
14. Mechanical and wear properties of nano titanium based dental composite resin
15. In vitro and in vivo technologies: an up to date overview in tissue engineering