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Biomaterials for musculoskeletal reg...
~
Basu, Bikramjit.
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Biomaterials for musculoskeletal regeneration.. Applications
Record Type:
Electronic resources : Monograph/item
Title/Author:
Biomaterials for musculoskeletal regeneration./ by Bikramjit Basu, Sourabh Ghosh.
remainder title:
Applications
Author:
Basu, Bikramjit.
other author:
Ghosh, Sourabh.
Published:
Singapore :Springer Singapore : : 2017.,
Description:
xxxii, 262 p. :ill., digital ;24 cm.
[NT 15003449]:
Chapter 1: Introduction -- Chapter 2: Case Study: Hydroxyapatite-Titanium Bulk Composites for Bone Tissue Engineering Applications -- Chapter 3: Case Study: Hydroxyapatite Based Microporous and Macroporous Scaffolds -- Chapter 4: Case Study: Osseointegration of a Strontium Containing Glass Ceramic -- Chapter 5: Microstructure and Composition Dependent Physical and Cytocompatibility Property of Glass-Ceramics for Dental Restoration -- Chapter 6: Processing, Tensile and Fracture Properties of Injection Molded HDPE-Al2O3-HAp Hybrid Composites -- Chapter 7: Case Study: Development of Acetabular Socket Prototype -- Chapter 8: Case study: 3D printed cartilage -- Chapter 9: Clinical trials -- Chapter 10: Case study: Development of constructs for maxillofacial reconstruction -- Chapter 11: Assessment of Technology and Manufacturing Readiness Levels -- Chapter 12: A Way Forward.
Contained By:
Springer eBooks
Subject:
Biomedical materials. -
Online resource:
http://dx.doi.org/10.1007/978-981-10-3017-8
ISBN:
9789811030178
Biomaterials for musculoskeletal regeneration.. Applications
Basu, Bikramjit.
Biomaterials for musculoskeletal regeneration.
Applications[electronic resource] /Applicationsby Bikramjit Basu, Sourabh Ghosh. - Singapore :Springer Singapore :2017. - xxxii, 262 p. :ill., digital ;24 cm. - Indian institute of metals series,2509-6400. - Indian institute of metals series..
Chapter 1: Introduction -- Chapter 2: Case Study: Hydroxyapatite-Titanium Bulk Composites for Bone Tissue Engineering Applications -- Chapter 3: Case Study: Hydroxyapatite Based Microporous and Macroporous Scaffolds -- Chapter 4: Case Study: Osseointegration of a Strontium Containing Glass Ceramic -- Chapter 5: Microstructure and Composition Dependent Physical and Cytocompatibility Property of Glass-Ceramics for Dental Restoration -- Chapter 6: Processing, Tensile and Fracture Properties of Injection Molded HDPE-Al2O3-HAp Hybrid Composites -- Chapter 7: Case Study: Development of Acetabular Socket Prototype -- Chapter 8: Case study: 3D printed cartilage -- Chapter 9: Clinical trials -- Chapter 10: Case study: Development of constructs for maxillofacial reconstruction -- Chapter 11: Assessment of Technology and Manufacturing Readiness Levels -- Chapter 12: A Way Forward.
This book discusses a number of case studies to showcase the translation of research concepts to lab-scale materials development for biomedical applications. The book intends to motivate active researchers to develop new generation biomaterials. This book is meant for readers, who are already familiar with the broad area of biomaterials. The book introduces readers to the field of additive manufacturing of biomaterials and teaches them how to extend this innovative processing approach to a variety of biomaterials for musculoskeletal applications. It covers both in vitro and in vivo biocompatibility and toxicity assessment for a broad range of biomaterials in the context of bone tissue engineering. It works to sensitise researchers in the field of translational biomedical engineering on the importance of clinical trials and discusses the challenges ahead in this important field of research. This book will bee useful to clinicians, professionals and researchers alike.
ISBN: 9789811030178
Standard No.: 10.1007/978-981-10-3017-8doiSubjects--Topical Terms:
605745
Biomedical materials.
LC Class. No.: R857.M3
Dewey Class. No.: 610.28
Biomaterials for musculoskeletal regeneration.. Applications
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Chapter 1: Introduction -- Chapter 2: Case Study: Hydroxyapatite-Titanium Bulk Composites for Bone Tissue Engineering Applications -- Chapter 3: Case Study: Hydroxyapatite Based Microporous and Macroporous Scaffolds -- Chapter 4: Case Study: Osseointegration of a Strontium Containing Glass Ceramic -- Chapter 5: Microstructure and Composition Dependent Physical and Cytocompatibility Property of Glass-Ceramics for Dental Restoration -- Chapter 6: Processing, Tensile and Fracture Properties of Injection Molded HDPE-Al2O3-HAp Hybrid Composites -- Chapter 7: Case Study: Development of Acetabular Socket Prototype -- Chapter 8: Case study: 3D printed cartilage -- Chapter 9: Clinical trials -- Chapter 10: Case study: Development of constructs for maxillofacial reconstruction -- Chapter 11: Assessment of Technology and Manufacturing Readiness Levels -- Chapter 12: A Way Forward.
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This book discusses a number of case studies to showcase the translation of research concepts to lab-scale materials development for biomedical applications. The book intends to motivate active researchers to develop new generation biomaterials. This book is meant for readers, who are already familiar with the broad area of biomaterials. The book introduces readers to the field of additive manufacturing of biomaterials and teaches them how to extend this innovative processing approach to a variety of biomaterials for musculoskeletal applications. It covers both in vitro and in vivo biocompatibility and toxicity assessment for a broad range of biomaterials in the context of bone tissue engineering. It works to sensitise researchers in the field of translational biomedical engineering on the importance of clinical trials and discusses the challenges ahead in this important field of research. This book will bee useful to clinicians, professionals and researchers alike.
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Chemistry and Materials Science (Springer-11644)
based on 0 review(s)
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W9314574
電子資源
11.線上閱覽_V
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EB R857.M3
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