Emerging Materials and Technologies for Bone Repair and Regeneration

 
Kiadás sorszáma: 1
Kiadó: CRC Press
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GBP 170.00
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Kedvezmény(ek): 20% (kb. 16 422 Ft)
A kedvezmény érvényes eddig: 2024. június 30.
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Rövid leírás:

This book emphasizes on advancement in the field of bone repair and regeneration. It introduces bone development, repair and regeneration emphasizing the correlation of the processes including details about different biomaterials and technologies involved in the fabrication, characterization of bone related scaffolds and implants.

Hosszú leírás:

This book covers advancements in the field of bone repair and regeneration. It introduces bone development, repair, and regeneration and details different biomaterials and technologies involved in the fabrication and characterization of bone-related scaffolds and implants. The book explores nanotechnological intervention and folklore phytomedicines and their prospects in regenerating bone including major bone related disease conditions, infection, and their tackling via tissue engineering strategies.


FEATURES:



  • Covers polymer materials and technologies for bone repair and regeneration based on tissue engineering

  • Defines the interdisciplinary mechanism of bone tissue repair ranging from the fields of material science, nanotechnology, and phytomedicine includes basic sciences, scaffolds, and bone infection

  • Examines fabrication and characterization methods for the bone repair materials

  • Reviews fundamentals of interlinked mechanisms of bone development, repair, and regeneration.

This book is aimed at graduate students and researchers in biomedical and tissue engineering and biomaterial sciences.

Tartalomjegyzék:

I Introduction: The Synthesis and Characterization of Biomaterials for Bone Regeneration 1 Cellular and Molecular Interplay in Bone Homeostasis and Healing; 2 Choice and Selection of Biomaterials for Bone Repair; 3 Synthetic Bone Analogue Materials and Design for Skeletal Tissue Healing; 4 Integrating 3D Printing and Electrospinning to Fabricate Scaffolds for Bone Regeneration; 5 The 3D/4D Printing of Polymeric Scaffolds for Bone Tissue Engineering; 6 Recent Advances in Biodegradable Implants in Bone Tissue Engineering; 7 Recent Advances in Characterization Techniques for Bone Substitutes; II Application of Nanotechnology and Phytomedicines for Bone Repair and Regeneration 8 Spatially Controlled Delivery of Bioactive Cues for Bone Tissue Engineering: From Nano to Macro Scale; 9 Nanotechnology Advancements for Improved Bone Metabolism, Regeneration and Treatment of Bone Diseases; 10 Osteoblast and Osteoclast Crosstalk during Osteo-Homeostasis and Biotherapeutic Interventions; 11 Modulatory Effects of Phytobioactives in Bone Metabolism and Regeneration; III Advancement and Application of Tissue Engineering toward Orthopedic Concerns 12 Unraveling Translational Research on Ultra-High Molecular Weight Polyethylene in Total Hip Joint Arthroplasty: A Lab-to-Industry-Scale Pilot Study; 13 The Physiology of Bone Homeostasis to Aid Experimental Therapeutics in Disease Conditions; 14 Biomimetic Bone Models in Advancing Bone Regeneration and Repair; 15 Biomaterials and Their Carriers for Managing Bone Disorders; 16 Next-Generation Theranostic Tools for Bone Repair and Skeletal Metabolism with Exosomes; 17 Clinically Relevant Bone Diseases and Bone Fracture Animal Models; 18 Advanced Biomaterial-Based Strategies for Intervertebral Disc Repair and Regeneration; 19 Osteoarthritis Pain and Current Therapeutic Strategies