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Bioceramics, Biomimetic and Other Compatible Materials Features for Medical Applications

About Bioceramics, Biomimetic and Other Compatible Materials Features for Medical Applications

This book reports on advanced biomaterials such as bioceramics, hydrogels, biopolymers, nanomaterials, membranes, and other compatible materials for medical applications. It introduces materials as bioactive coatings that utilize or mimic natural mechanisms and structures important for tissue and organ healing and repair. One section of the book is devoted to bone substitutes and osteogenic biomaterials. It also describes biomaterial-cell-tissue interactions, which are of critical importance for various applications in regenerative medicine, orthopedics, and implant functions. The chapters present fabrication methods and testing of various materials for medical applications. Special emphasis is given to natural patterns, theoretical models, and new insights into material characterization, particularly on fractal natural boundaries and mimicry designs taken from nature and implemented in photonics science and engineering. This multidisciplinary book is written by leading researchers andexperts in their fields, and serves researchers, students, physicians, and engineers.

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  • Language:
  • English
  • ISBN:
  • 9783031172717
  • Binding:
  • Paperback
  • Pages:
  • 428
  • Published:
  • January 2, 2024
  • Edition:
  • 24001
  • Dimensions:
  • 155x22x235 mm.
  • Weight:
  • 723 g.
Delivery: 2-4 weeks
Expected delivery: August 22, 2025

Description of Bioceramics, Biomimetic and Other Compatible Materials Features for Medical Applications

This book reports on advanced biomaterials such as bioceramics, hydrogels, biopolymers, nanomaterials, membranes, and other compatible materials for medical applications. It introduces materials as bioactive coatings that utilize or mimic natural mechanisms and structures important for tissue and organ healing and repair. One section of the book is devoted to bone substitutes and osteogenic biomaterials. It also describes biomaterial-cell-tissue interactions, which are of critical importance for various applications in regenerative medicine, orthopedics, and implant functions. The chapters present fabrication methods and testing of various materials for medical applications. Special emphasis is given to natural patterns, theoretical models, and new insights into material characterization, particularly on fractal natural boundaries and mimicry designs taken from nature and implemented in photonics science and engineering. This multidisciplinary book is written by leading researchers andexperts in their fields, and serves researchers, students, physicians, and engineers.

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