
Translating Biomaterials for Bone Graft
Bench-top to Clinical Applications
CRC Press
1. Auflage
Erschienen am 30. März 2021
Buch
Softcover
263 Seiten
978-0-367-65824-3 (ISBN)
Beschreibung
Translating Biomaterials for Bone Graft: Bench-top to Clinical Applications brings together the current translational research in bone tissue engineering, from design to application - from materials, drugs and biologic delivery used for bone graft applications to pre-clinical and clinical considerations. The book also discusses the regulatory approval pathways, which involves consideration of the class of devices; whether they are similar to existing solutions, minimal manipulation of donor tissue or completely novel materials, drugs and biologics. These considerations drive the ability to successfully transition the latest generations of bone graft materials into the clinics. Chapters come from materials scientists, clinicians, researchers, and consultants and provide a holistic understanding of the field. As such, the book is a state-of-the-art reference to bone therapies and should appeal to clinicians, scientists, as well as students interested in the current research and/or practices in the field of bone regeneration and restoration.
Weitere Details
Sprache
Englisch
Verlagsort
London
Großbritannien
Verlagsgruppe
Taylor & Francis Ltd
Zielgruppe
Für höhere Schule und Studium
Für Beruf und Forschung
Postgraduate and Professional Reference
Maße
Höhe: 234 mm
Breite: 156 mm
Dicke: 15 mm
Gewicht
424 gr
ISBN-13
978-0-367-65824-3 (9780367658243)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
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Personen
Joo L. Ong, Teja Guda
Herausgeber*in
University of Texas at San Antonio, USA
University of Texas at San Antonio, USA
Inhalt
Editorial Foreword. Introduction. Bone Grafting Evolution. Materials. Ceramics. Polymers. Composites. Currently available grafts on the market. Growth Factors. BMP-2 and BMP-7. Other growth factors and delivery mechanisms. DBM and grafts. Cells and Biologics. Cell sources for orthopaedic defects. Cell sources for craniofacial defects. Animal Models for regeneration. Infection and antibiotics. Clinical Perspective. Orthopaedic Trauma. Spinal reconstruction. Dental and craniofacial reconstruction. Regulatory and ease-of-use