Advances in Polyurethane Biomaterials: Woodhead Publishing Series in Biomaterials
Editat de Stuart L. Cooper, Jianjun Guanen Limba Engleză Hardback – 27 ian 2016
Written by an international team of leading authors, the book is a comprehensive and essential reference on this important biomaterial.
- Brings together in-depth coverage of an important material, essential for many advanced biomedical applications
- Connects the fundamentals of polyurethanes with state-of-the-art analysis of significant new applications, including tissue engineering and drug delivery
- Written by a team of highly knowledgeable authors with a range of professional and academic experience, overseen by an editor who is a leading expert in the field
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Specificații
ISBN-13: 9780081006146
ISBN-10: 0081006144
Pagini: 718
Dimensiuni: 152 x 229 x 38 mm
Greutate: 1.25 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Biomaterials
ISBN-10: 0081006144
Pagini: 718
Dimensiuni: 152 x 229 x 38 mm
Greutate: 1.25 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Biomaterials
Public țintă
- Biomaterials scientists and researchers in academia and industry- Chemistry scientists and researchers in academia and industry
- Biomedical engineers
- postgraduates and other academics
Cuprins
Part One: Chemistry, Processing and Applications of Polyurethane Biomaterials
1. Hierarchical Structure-Property Relationships of Segmented Polyurethanes
2. Surface Characterization Techniques for Polyurethane Biomaterials
3. Design of Biodegradable Polyurethanes and the Interaction of the Polymers and their Degradation By-Products within in vitro and in vivo environments
4. Biodegradable Elastomers using Urethane Chemistry
5. 3 D Printing of Polyurethane Biomaterials
6. Nanoparticle Induced Phenomena in Polyurethanes
7. Polyurethane Nanoparticles, a New Tool for Biomedical Applications?, Polyurethane Nanoparticles, a New Tool for Biomedical Applications?
8. Polyurethanes for Controlled Drug Delivery
9. Antibacterial Polyurethanes
Part Two: Polyurethanes for Vascular Applications
10. Regulating Blood Cell Adhesion via Surface Modification of Polyurethanes
11. Enhancing Polyurethane Blood Compatibility
12. Antimicrobial Polyurethanes for Intravascular Medical Devices
13. Polyurethanes for Cardiac Applicantions
14. Nitric Oxide Releasing Polyurethanes
15. Mechanical properties of polyurethane-based small-diameter vascular grafts
Part Three: Polyurethane Scaffolds for Tissue Engineering
16. Polyurethanes for Bone Tissue Engineering
17. Antimicrobial Polyurethane Scaffolds
18. Interaction of Stem Cells with Polyurethane Scaffolds
19. Fibrous Polyurethane Scaffolds
20. Embolic Applications of Shape Memory Polyurethane Scaffolds
21. Scaffolds of Biodegradable Block Polyurethanes for Nerve Regeneration
22. Biodegradable Polyurethane Dermal Scaffolds
1. Hierarchical Structure-Property Relationships of Segmented Polyurethanes
2. Surface Characterization Techniques for Polyurethane Biomaterials
3. Design of Biodegradable Polyurethanes and the Interaction of the Polymers and their Degradation By-Products within in vitro and in vivo environments
4. Biodegradable Elastomers using Urethane Chemistry
5. 3 D Printing of Polyurethane Biomaterials
6. Nanoparticle Induced Phenomena in Polyurethanes
7. Polyurethane Nanoparticles, a New Tool for Biomedical Applications?, Polyurethane Nanoparticles, a New Tool for Biomedical Applications?
8. Polyurethanes for Controlled Drug Delivery
9. Antibacterial Polyurethanes
Part Two: Polyurethanes for Vascular Applications
10. Regulating Blood Cell Adhesion via Surface Modification of Polyurethanes
11. Enhancing Polyurethane Blood Compatibility
12. Antimicrobial Polyurethanes for Intravascular Medical Devices
13. Polyurethanes for Cardiac Applicantions
14. Nitric Oxide Releasing Polyurethanes
15. Mechanical properties of polyurethane-based small-diameter vascular grafts
Part Three: Polyurethane Scaffolds for Tissue Engineering
16. Polyurethanes for Bone Tissue Engineering
17. Antimicrobial Polyurethane Scaffolds
18. Interaction of Stem Cells with Polyurethane Scaffolds
19. Fibrous Polyurethane Scaffolds
20. Embolic Applications of Shape Memory Polyurethane Scaffolds
21. Scaffolds of Biodegradable Block Polyurethanes for Nerve Regeneration
22. Biodegradable Polyurethane Dermal Scaffolds