Fundamental Biomaterials: Metals: Woodhead Publishing Series in Biomaterials
Editat de Preetha Balakrishnan, M.S. Sreekala, Sabu Thomasen Limba Engleză Paperback – 25 iul 2018
It represents the second volume in a three volume set, each of which reviews the most important and commonly used classes of biomaterials, providing comprehensive information on materials properties, behavior, biocompatibility and applications.
- Provides current information on metals and their conversion from base materials to medical devices
- Includes analyses of types of metals, discussion of a range of biomedical applications, and essential information on corrosion, degradation and wear and lifetime prediction of metal biomaterials
- Explores both theoretical and practical aspects of metals in biomaterials
Toate formatele și edițiile | Preț | Express |
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Paperback (2) | 1329.69 lei 36-50 zile | |
ELSEVIER SCIENCE – 25 iul 2018 | 1329.69 lei 36-50 zile | |
ELSEVIER SCIENCE – 20 feb 2018 | 1389.72 lei 36-50 zile |
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Specificații
ISBN-13: 9780081022054
ISBN-10: 0081022050
Pagini: 438
Dimensiuni: 152 x 229 x 30 mm
Greutate: 0.62 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Biomaterials
ISBN-10: 0081022050
Pagini: 438
Dimensiuni: 152 x 229 x 30 mm
Greutate: 0.62 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Biomaterials
Public țintă
Materials scientists, biomedical engineers, medical professionals working in device and application design and orthopaedicsCuprins
1. Metallic Biomaterials: state of the art and new challenges
2. Degradable metallic biomaterials: the concept, current developments and future directions
3. Theory modelling and stimulation of metallic biomaterials
4. Micro- and Nanopatterning of Biomaterial Surfaces
5. Bioactive metallic surfaces for bone tissue engineering
6. Wear Characteristics and Fatigue behavior of Metallic Biomaterials
7. Degradable metallic biomaterials for cardiovascular applications
8. Nanostructured Biomimetic, Bioresponsive, and Bioactive Biomaterials
9. Metallic biomaterials for dental implant systems
10. Enhancing the mechanical and biological performance of a metallic biomaterial for orthopedic applications
11. Interface Influence of Materials and Surface Modifications
12. Metallic biomaterials for bone support and replacement
13. Surface modification of metallic bone implants-porous coating for bone ingrowth
14. Biomaterials and Biotechnology Schemes Utilizing TiO2 Nanotube Arrays
15. Optical Detection of Protein Adsorption on Doped Titanium Surface
16. Biocompatible coatings for metallic biomaterials
17. Magnesium and its alloys as orthopedic biomaterials
18. Orthopedical and biomedical applications of titanium and zirconium metals
19. The Use of Porous Tantalum for Reconstructing Bone Loss in Orthopaedic Surgery
20. Reactions of metal in human body and cytotoxicity of metallic biomaterials
21. Ti-Based Bulk Metallic Glasses for Biomedical Applications
22. Life cycle analysis of metallic biomaterials
2. Degradable metallic biomaterials: the concept, current developments and future directions
3. Theory modelling and stimulation of metallic biomaterials
4. Micro- and Nanopatterning of Biomaterial Surfaces
5. Bioactive metallic surfaces for bone tissue engineering
6. Wear Characteristics and Fatigue behavior of Metallic Biomaterials
7. Degradable metallic biomaterials for cardiovascular applications
8. Nanostructured Biomimetic, Bioresponsive, and Bioactive Biomaterials
9. Metallic biomaterials for dental implant systems
10. Enhancing the mechanical and biological performance of a metallic biomaterial for orthopedic applications
11. Interface Influence of Materials and Surface Modifications
12. Metallic biomaterials for bone support and replacement
13. Surface modification of metallic bone implants-porous coating for bone ingrowth
14. Biomaterials and Biotechnology Schemes Utilizing TiO2 Nanotube Arrays
15. Optical Detection of Protein Adsorption on Doped Titanium Surface
16. Biocompatible coatings for metallic biomaterials
17. Magnesium and its alloys as orthopedic biomaterials
18. Orthopedical and biomedical applications of titanium and zirconium metals
19. The Use of Porous Tantalum for Reconstructing Bone Loss in Orthopaedic Surgery
20. Reactions of metal in human body and cytotoxicity of metallic biomaterials
21. Ti-Based Bulk Metallic Glasses for Biomedical Applications
22. Life cycle analysis of metallic biomaterials