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E-grāmata: Foundations of Biomaterials Engineering

(Associate Professor, Department of Chemistry, Materials and Chemical Engineering 'G. Natta', Politecnico di Milano, Italy), (Depart), (Department of Chemistry, Materials and Chemical Engineering 'G. Natta' Politecnico di Milano, Italy)
  • Formāts: PDF+DRM
  • Izdošanas datums: 16-Mar-2019
  • Izdevniecība: Academic Press Inc.(London) Ltd
  • Valoda: eng
  • ISBN-13: 9780128094594
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  • Formāts: PDF+DRM
  • Izdošanas datums: 16-Mar-2019
  • Izdevniecība: Academic Press Inc.(London) Ltd
  • Valoda: eng
  • ISBN-13: 9780128094594
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Foundations of Biomaterials Engineering provides readers with an introduction to biomaterials engineering. With a strong focus on the essentials of materials science, the book also examines the physiological mechanisms of defense and repair, tissue engineering and the basics of biotechnology.

An introductory section covers materials, their properties, processing and engineering methods. The second section, dedicated to Biomaterials and Biocompatibility, deals with issues related to the use and application of the various classes of materials in the biomedical field, particularly within the human body, the mechanisms underlying the physiological processes of defense and repair, and the phenomenology of the interaction between the biological environment and biomaterials.

The last part of the book addresses two areas of growing importance: Tissue Engineering and Biotechnology. This book is a valuable resource for researchers, students and all those looking for a comprehensive and concise introduction to biomaterials engineering.

  • Offers a one-stop source for information on the essentials of biomaterials and engineering
  • Useful as an introduction or advanced reference on recent advances in the biomaterials field
  • Developed by experienced international authors, incorporating feedback and input from existing customers

Papildus informācija

An essential resource for researchers and students, offering a foundational introduction to biomaterials, their properties and applications
Preface vii
Acknowledgments ix
SECTION A INTRODUCTION TO MATERIALS
1 Organization, Structure, and Properties of Materials
1.1 The Main Classes of Materials
3(8)
1.2 Polymeric Materials
11(20)
1.3 Metallic Materials
31(20)
1.4 Ceramic Materials
51(5)
1.5 Composite Materials
56(9)
1.6 Natural Polymers
65(35)
Annex 1 Chirality
100(3)
References
103(1)
Further Reading
103(2)
2 Mechanical Properties of Materials
2.1 Introduction
105(1)
2.2 The Mechanical Behavior of Materials
105(31)
Further Reading
136(1)
3 Manufacturing Technologies
3.1 Production and Processing of Materials
137(1)
3.2 Polymeric Materials (Plastics)
138(12)
3.3 Metallic Materials
150(15)
3.4 Ceramic Materials (Advanced)
165(7)
3.5 Manufacturing of Carbon and Graphite Materials
172(3)
3.6 Manufacturing of Composite Materials
175(4)
3.7 Advanced Technologies
179(16)
References
195(1)
Further Reading
195(4)
SECTION B BIOMATERIALS AND BIOCOMPATIBILITY
4 Biomaterials and Applications
4.1 Biomaterials and Biocompatibility
199(2)
4.2 Polymeric Biomaterials
201(29)
4.3 Natural Polymers as Biomaterials
230(14)
4.4 Metallic Biomaterials
244(22)
4.5 Ceramic Biomaterials
266(11)
4.6 Composite Biomaterials
277(7)
References
284(1)
Further Reading
285(4)
5 Sterilization and Degradation
5.1 Sterilization
289(19)
5.2 Degradation
308(15)
5.3 Wear Phenomena
323(5)
References
328(1)
Further Reading
328(1)
6 Interactions Between Biomaterials and the Physiological Environment
6.1 Physiological Structures and Mechanisms
329(20)
6.2 Defense and Repair Mechanisms
349(24)
6.3 Interactions Biomaterial/Human Body (Biocompatibility)
373(16)
References
389(2)
Further Reading
391(2)
7 Techniques of Analysis
7.1 Introduction
393(1)
7.2 Biomaterial Characterization
393(40)
7.3 Diagnostic Techniques
433(24)
7.4 Biocompatibility and Cytocompatibility Analyses
457(11)
References
468(1)
Further Reading
468(3)
8 Advanced Applications
8.1 Tissue Engineering
471(42)
8.2 Fundamentals of Biotechnology
513(30)
References
543(1)
Further Reading
544(3)
Index 547
Maria Cristina Tanzi is Full Professor of Industrial Bioengineering at the Department of Chemistry, Materials and Chemical Engineering 'G. Natta' of Politecnico di Milano, Italy. She is the Scientific Director of the BioCell Lab, Laboratory of Biocompatibility and Cell Culture, of Politecnico di Milano and in May 2008 she was nominated a member of the The International College of Fellows of Biomaterials Science and Engineering (ICF-BSE). Her main research interests cover the development of natural and synthetic polymers for biomedical applications and characterization and properties of polymeric biomaterials Silvia Farč is Associate Professor at the Department of Chemistry, Materials and Chemical Engineering 'G. Natta' of Politecnico di Milano, Italy. Her research interests comprise the synthesis and characterization of polymeric materials, with special reference to biomedical applications, tissue engineering and cell/drug release. She has published 80 scientific papers; more than 100 contributions to scientific meetings and is the author of Italian and International Patents. Gabriele Candiani is Associate Professor of Industrial Bioengineering at the Department of Chemistry, Materials and Chemical Engineering 'G. Natta' of Politecnico di Milano, Italy. His research focuses on biocompatibility, cell-biomaterial interactions, tissue engineering and therapeutic delivery.