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Materials for Biomedical Engineering: Hydrogels and Polymer-Based Scaffolds
Materials for Biomedical Engineering: Hydrogels and Polymer-Based Scaffolds
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ISBN No.: 9780128169018
Pages: 558
Year: 201903
Format: Trade Paper
Price: $ 376.44
Dispatch delay: Dispatched between 7 to 15 days
Status: Available

1. Hydrogels and non-hydrogel scaffolds and cell interaction 2. Interactions between Tissues, Cells and Biomaterials: an Advanced Evaluation by Synchrotron Radiation-based High Resolution Microtomography 3. Bioprinted scaffolds 4. Superabsorbent Hydrogels Based on Chitosan: Current State and Potential Applications 5. Development and characterization of hydrogels based on chitosan and xyloglucan from Chia Seed (Salvia Hispanica L.) 6. Bioresorbable polymers for use in tissue engineering: PLA, PGA and their Copolymers 7.


Technological challenges and advances: from lactic acid to Polylactate and co-polymers 8. PLGA scaffolds: Building blocks for the new age of biomaterials 9. Biodegradable scaffolds based on chitosan-g-polylactide copolymers 10. Electro-spun Scaffolds of Poly (3-hydroxybutyrate). Morphology, aging and Adhesion and Cell Viability of HEK293 and NHOst cells 11. Polyurethane-based structures obtained by 3D printing technologies 12. Composites based on bio-derived polymers: potential role in tissue engineering 13. Techniques for the fabrication of inorganic scaffolds 14.


Composite Scaffolds for Bone and Osteochondral Defects 15. Pristine and Plasma Treated Thermoplastic Biopolymers/Biocomposites in Tissue Engineering and Biodegradable Implants 16. The design of two different structural scaffolds using ß-tricalcium phosphate (ß-TCP) and collagen for bone tissue engineering 17. Composite materials based on hydroxyapatite embedded in biopolymer matrices. Ways of synthesis and application 18. Biopolymers-Graphene Oxide Nanoplatelets Composites with Enhanced Conductivity and Biocompatibility Suitable for Tissue Engineering Applications 19. Study of microstructural, structural, mechanical, and vibrational properties of defatted trabecular bovine bones: natural sponges 20. Laser Processing of Biocompatible Polymers for Development of Mems for Medical and High-tech Applications.



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Browse Subject Headings