ISBN13: | 9781032210452 |
ISBN10: | 1032210451 |
Binding: | Paperback |
No. of pages: | 170 pages |
Size: | 234x156 mm |
Weight: | 312 g |
Language: | English |
Illustrations: | 74 Illustrations, black & white; 28 Halftones, black & white; 46 Line drawings, black & white; 16 Tables, black & white |
693 |
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Additive Manufacturing of Polymers for Tissue Engineering
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Additive Manufacturing and Tissue Engineering applications are a field of science and technology that manufactures biocompatible, customized, reliable, and cost-effective parts to restore functionality of a failed human body part. This book offers a platform for recent breakthroughs in additive manufacturing related to biomedical applications.
Application of additive manufacturing and tissue engineering in the fields of science and technology enables the manufacturing of biocompatible, customized, reliable, and cost-effective parts, restoring the functionality of a failed human body part. This book offers a platform for recent breakthroughs in additive manufacturing related to biomedical applications.
This book highlights some of the top innovations and advances in additive manufacturing and processing technologies that are the future of the manufacturing industry while also presenting current challenges and opportunities regarding the choice of material. This book includes areas of applications such as surgical guides, tissue regeneration, artificial scaffolds, implants, and drug delivery and release. Throughout the book, an emphasis is placed on rapid tooling for engineering applications.
Additive Manufacturing of Polymers for Tissue Engineering: Fundamentals, Applications, and Future Advancements acts as a first-hand source of information for academic scholars and commercial manufacturers as they make strategic manufacturing and development plans.
1. 3D Bioprinting in Biomedical Applications. 2. Polymer 3D Bioprinting for Bionics and Tissue Engineering Applications. 3. An Introduction to Bio-Implants and Biodegradable Materials: A Review. 4. Biocompatible and Bioactive Ceramics for Biomedical Applications: Content Analysis. 5. Stimuli Responsive Bio-Based Hydrogels: Potential Employers for Biomedical Applications. 6. Scaffold-Based Tissue Engineering for Craniofacial Deformities. 7. Cold Spray Additive Manufacturing: A New Trend in Metal Additive Manufacturing. 8. Development and Mechanical Characterization of Coir Fiber-Based Thermoplastic Polyurethane Composite. 9. Advancement in the Fabrication of Composites using Biocompatible Polymers for Biomedical Applications.