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Biodegradable metals : from concept to applications

Author: Hendra Hermawan
Publisher: Heidelberg : Springer, ©2012.
Series: SpringerBriefs in materials.
Edition/Format:   Print book : EnglishView all editions and formats
Summary:

This book in the emerging research field of biomaterials covers biodegradable metals for biomedical applications. The second part exposes an example of biodegradable metals from its concept to  Read more...

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Document Type: Book
All Authors / Contributors: Hendra Hermawan
ISBN: 9783642311697 3642311695 9783642311703 3642311709
OCLC Number: 794709573
Description: viii, 69 pages : illustrations, map ; 23 cm.
Contents: 1. Introduction to Metallic Biomaterials --
2. Biodegradable Metals: State of the Art --
3. Biodegradable Metals for Cardiovascular Applications --
4. Metallic Biodegradable Coronary Stent: Materials Development --
5. Metallic Biodegradable Coronary Stent: Degradation Study --
6. Metallic Biodegradable Coronary Stent: Stent Prototyping --
7. Perspective --
1. Introduction to Metallic Biomaterials --
1.1. Brief Overview --
1.2. General Requirements --
1.3. Type of Mostly Used Metals --
1.3.1. Stainless Steels --
1.3.2. Co-Cr Alloys --
1.3.3. Ti and Ti Alloys --
1.3.4. Precious Alloys --
1.3.5. Other Metals and Alloys --
1.4. Other Biomaterials --
1.4.1. Polymers --
1.4.2. Ceramics --
1.4.3. Composites --
1.5. Recent Development --
1.5.1. Low Elastic Modulus Alloys --
1.5.2. Nickel-Free Alloys --
1.5.3. Metallic Glasses --
1.5.4. Porous Metals --
1.5.5. Biodegradable Metals --
1.6. Conclusion --
2. Biodegradable Metals: State of the Art --
2.1. Paradigm Shifted --
2.2. The Concept --
2.3. Proof of Concept --
2.3.1. Mechanical Support --
2.3.2. Degradation --
2.4. Recent Development --
3. Biodegradable Metals for Cardiovascular Applications --
3.1. The Need for Biodegradable Stent --
3.2. Proposed Metals for Biodegradable Stent --
3.2.1. Iron and its Alloys --
3.2.2. Magnesium and its Alloys --
3.3. Mechanical Property of the Proposed Metals --
3.4. Validation of the Proposed Metals --
3.5. Idealization of Biodegradable Metals for Stent --
3.6. Strategy to Develop the Ideal Biodegradable Metals for Stent --
3.6.1. New Alloys Development --
3.6.2. New Processing Technique --
3.6.3. Iterative Validation Method --
4. Metallic Biodegradable Coronary Stent: Materials Development --
4.1. Materials Design --
4.2. Materials Production --
4.3. Microstructure Analysis --
4.4. Mechanical Property --
4.5. Magnetic Property --
4.6. Conclusion and Benchmarking --
5. Metallic Biodegradable Coronary Stent: Degradation Study --
5.1. Static Degradation --
5.2. Dynamic Degradation --
5.3. In Vitro Cytotoxicity --
5.4. Conclusion and Benchmarking --
6. Metallic Biodegradable Coronary Stent: Stent Prototyping --
6.1. Stent Design --
6.2. Minitube Fabrication --
6.3. Stent Fabrication --
6.3.1. Laser Cutting --
6.3.2. Annealing --
6.3.3. Descaling --
6.4. Stent's Mechanical Testing --
6.5. Critics to the Fabrication Process --
6.6. Stent's Degradation Testing --
6.7. Conclusion --
6.8. Suggestion --
7. Perspective.
Series Title: SpringerBriefs in materials.
Responsibility: Hendra Hermawan.

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