<p>Bone substitute biomaterials are fundamental to the biomedical sector, and have recently benefitted from extensive research and technological advances aimed at minimizing failure rates and reducing the need for further surgery. This book reviews these developments, with a particular focus on the
Bone substitute biomaterials
β Scribed by Kajal Mallick
- Publisher
- Woodhead Publishing
- Year
- 2014
- Tongue
- English
- Leaves
- 341
- Series
- Woodhead Publishing series in biomaterials, number 78
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Bone substitute biomaterials are fundamental to the biomedical sector, and have recently benefitted from extensive research and technological advances aimed at minimizing failure rates and reducing the need for further surgery. This book reviews these developments, with a particular focus on the desirable properties for bone substitute materials and their potential to encourage bone repair and regeneration.
Part I covers the principles of bone substitute biomaterials for medical applications. One chapter reviews the quantification of bone mechanics at the whole-bone, micro-scale, and non-scale levels, while others discuss biomineralization, osteoductivization, materials to fill bone defects, and bioresorbable materials. Part II focuses on biomaterials as scaffolds and implants, including multi-functional scaffolds, bioceramics, and titanium-based foams. Finally, Part III reviews further materials with the potential to encourage bone repair and regeneration, including cartilage grafts, chitosan, inorganic polymer composites, and marine organisms.
- Provides a detailed and accurate overview of the bone substitute biomaterials, a fundamental part of the biomaterials and biomedical sector
- Provides readers with the principles of bone substitute biomaterials
- Reviews biomaterials for bone regeneration
β¦ Table of Contents
Content:
Front matter, Pages i-iii
Copyright, Page iv
Contributor contact details, Pages xi-xiii, K.K. Mallick, S. Sprio, M. Sandri, M. Iafisco, A. Ruffini, S. Minardi, A. Tampieri, P. Bhattacharya, G.H. van Lenthe, E.B. Hunziker, T.J. Blokhuis, V. Guarino, M.G. Raucci, A. Ronca, V. Cirillo, L. Ambrosio, K.K. Mallick, J. Winnett, A. Bansiddhi, D.C. Dunand, G.C. Wang, et al.
Woodhead Publishing Series in Biomaterials, Pages xv-xix
Dedication, Page xxi
1 - Bone substitutes based on biomineralization, Pages 3-29, S. Sprio, M. Sandri, S. Panseri, M. Iafisco, A. Ruffini, S. Minardi, A. Tampieri
2 - Experimental quantification of bone mechanics, Pages 30-71, P. Bhattacharya, G.H. Van Lenthe
3 - Osteoinductivization of dental implants and bone-defect-filling materials, Pages 72-79, E.B. Hunziker
4 - Bioresorbable bone graft substitutes, Pages 80-92, T.J. Blokhuis
5 - Multifunctional scaffolds for bone regeneration, Pages 95-117, V. Guarino, M.G. Raucci, A. Ronca, V. Cirillo, L. Ambrosio
6 - 3D bioceramic foams for bone tissue engineering, Pages 118-141, K.K. Mallick, J. Winnett
7 - Titanium and NiTi foams for bone replacement, Pages 142-179, A. Bansiddhi, D.C. Dunand
8 - Bioceramics for skeletal bone regeneration, Pages 180-186,187e-190e,187-216, G.C. Wang, Z.F. Lu, H. Zreiqat
9 - Cartilage grafts for bone repair and regeneration, Pages 219-243, C.S. Bahney, R.S. Marcucio
10 - Chitosan for bone repair and regeneration, Pages 244-260, J. Venkatesan, S.K. Kim
11 - Inorganic polymer composites for bone regeneration and repair, Pages 261-293, L. GrΓΈndahl, K.S. Jack, C.S. Goonasekera
12 - Marine organisms for bone repair and regeneration, Pages 294-318, S.A. Clarke, P. Walsh
Index, Pages 319-330
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