Advanced Biomaterials for Biomedical Engineering
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2300元
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分類:中文書>自然科普>生命科學>生物追蹤? 追蹤分類後,您會在第一時間收到分類新品通知。
- 作者: Hossein Hosseinkhani 、 Keng-Liang Ou 追蹤 ? 追蹤作者後,您會在第一時間收到作者新書通知。
- 出版社: 五南 追蹤 ? 追蹤出版社後,您會在第一時間收到出版社新書通知。
- 出版日:2013/12/01
活動訊息
內容簡介
Biomedical engineering is the key technology of the 21st century. The possibility to exploit the structures and process of advanced materials for novel functional materials, biosensors, stem cells technology, regenerative medicine, drug delivery systems has created the rapidly growing field of biomaterials technology. Designed as a broad survey of the field, this book combines contributions from molecular biology, materials science and medicine to fathom the full scope of current and future developments.
It is divided into four main sections:
•Interface systems
•Physiochemical properties
•Structures of biomaterials
•Medical applications
Each chapter describes in detail currently valuable methods and contains numerous references to the primary literature, making this the perfect “filed guide” for chemists, biologists and physicians who want to explore the fascinating world of biomedical engineering.
It is divided into four main sections:
•Interface systems
•Physiochemical properties
•Structures of biomaterials
•Medical applications
Each chapter describes in detail currently valuable methods and contains numerous references to the primary literature, making this the perfect “filed guide” for chemists, biologists and physicians who want to explore the fascinating world of biomedical engineering.
目錄
Chapter 1 Introduction to Biomaterials
Chapter 2 Biomedical Materialxs
2.1 Introduction
2.2 Biodegradable Polymers
2.3 Natural Biomaterials
2.4 Biodegradable Nanoparticles
2.5 Controlled Release Drug Delivery Systems
using Biomaterials
References
Chapter 3 Physical Properties of Biomaterials
3.1 Physical properties of materials
3.2 Introduction of spectroscopy
3.3 Thermal properties
3.4 Thermal analysis
Reference
Chapter 4 Mechanical Behavior of Biomaterials
4.1 Introduction
4.2 Mechanics of Materials
4.3 Mechanical Testing
4.4 Fracture of Materials
References
Chapter 5 Hydrogels in Medicine
5.1 Introduction
5.2 Mechanical properties of hydrogels and
interpenetrating networks
5.3 Engineering hydrogels with controlled
mechanical , chemical and biological
properties
5.4 Developing methods of fabricating composite
biodegradable hydrogels using IPNs
5.5 Engineering approaches to deliver growth
factors from hydrogels
5.6 Drug delivery systems using polymeric
hydrogel
References
Chapter 6 Surface treatment of biomedical materials
6.1 Chemical method
6.2 Electrochemical method
6.3 Plasma method
6.4 Ion beam implantation
6.5 Characterization technique
Reference
Chapter 7 3D In Vitro Systems for Biological Application
7.1 Introduction
7.2 3D In Vitro Systems
7.3 3 D Cellular Microenvironment
7.4 3D Technology on Frontier of Neuroscience
7.5 Regenerative medicine therapy
7.6 Future prospects
References
Chapter 8 Cell and Gene Therapy based on Biomaterials
Technology
8.1 Introduction
8.2 Engineering Cellular Environment
8.3 Combinatorial Cell/Polymer Interaction
Studies
8.4 Biomaterial Control of Mesenchymal Stem
Cell Differentiation
8.5 Biomaterial Control of Embryonic Stem Cell
Differentiation
8.6 Classification of cellular barriers systems
8.7 Calissification of gene delivery systems
References
Chapter 9 Nanotechnology inMedicine
9.1 Introduction
9.2 Classification of nanomaterials
9.3 Nanocarriers
9.4 Nanoscaffoling Materials
9.5 Biocompatibility and toxicity of nanomaterials
9.6 Safety issue of nanomaterials
9.7 Limitations of nanomaterials technology in
nature and medicine
9.8 Future Prospects
References
Chapter 2 Biomedical Materialxs
2.1 Introduction
2.2 Biodegradable Polymers
2.3 Natural Biomaterials
2.4 Biodegradable Nanoparticles
2.5 Controlled Release Drug Delivery Systems
using Biomaterials
References
Chapter 3 Physical Properties of Biomaterials
3.1 Physical properties of materials
3.2 Introduction of spectroscopy
3.3 Thermal properties
3.4 Thermal analysis
Reference
Chapter 4 Mechanical Behavior of Biomaterials
4.1 Introduction
4.2 Mechanics of Materials
4.3 Mechanical Testing
4.4 Fracture of Materials
References
Chapter 5 Hydrogels in Medicine
5.1 Introduction
5.2 Mechanical properties of hydrogels and
interpenetrating networks
5.3 Engineering hydrogels with controlled
mechanical , chemical and biological
properties
5.4 Developing methods of fabricating composite
biodegradable hydrogels using IPNs
5.5 Engineering approaches to deliver growth
factors from hydrogels
5.6 Drug delivery systems using polymeric
hydrogel
References
Chapter 6 Surface treatment of biomedical materials
6.1 Chemical method
6.2 Electrochemical method
6.3 Plasma method
6.4 Ion beam implantation
6.5 Characterization technique
Reference
Chapter 7 3D In Vitro Systems for Biological Application
7.1 Introduction
7.2 3D In Vitro Systems
7.3 3 D Cellular Microenvironment
7.4 3D Technology on Frontier of Neuroscience
7.5 Regenerative medicine therapy
7.6 Future prospects
References
Chapter 8 Cell and Gene Therapy based on Biomaterials
Technology
8.1 Introduction
8.2 Engineering Cellular Environment
8.3 Combinatorial Cell/Polymer Interaction
Studies
8.4 Biomaterial Control of Mesenchymal Stem
Cell Differentiation
8.5 Biomaterial Control of Embryonic Stem Cell
Differentiation
8.6 Classification of cellular barriers systems
8.7 Calissification of gene delivery systems
References
Chapter 9 Nanotechnology inMedicine
9.1 Introduction
9.2 Classification of nanomaterials
9.3 Nanocarriers
9.4 Nanoscaffoling Materials
9.5 Biocompatibility and toxicity of nanomaterials
9.6 Safety issue of nanomaterials
9.7 Limitations of nanomaterials technology in
nature and medicine
9.8 Future Prospects
References
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