Biomaterials, artificial organs and tissue engineering:
Gespeichert in:
Weitere Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Cambridge [u.a.]
Woodhead [u.a.]
2005
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Ausgabe: | 1. publ. |
Schriftenreihe: | Woodhead publishing in materials
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XII, 284 S. Ill., graph. Darst. 1 CD-ROM (12 cm) + Begleith. (1 Bl.) |
ISBN: | 9781855737372 185573737X 0849325773 9781845690861 1845690869 |
Internformat
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Datensatz im Suchindex
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adam_text | Contents
1 Introduction 1
LARRY L. HENCH, Imperial College London, UK
1.1 Book and CD module 1
1.2 Aims and objectives 2
1.3 Integrated use of book and CD module 5
1.4 Introduction to the CD 6
1.5 Recommendations for self-study 6
1.6 Overview 7
1.7 Are transplants the solution to spare parts? 8
1.8 Implants and prostheses as spare parts 9
1.9 The limitations of implants 10
Part I Introduction to materials (living and non-living)
2 Metals 15
E. JANE MINAY and ALDO R. BOCCACCINI,
Imperial College London, UK
2.1 Introduction 15
2.2 The metallic bond 15
2.3 Microstructure 16
2.4 Mechanical properties 17
2.5 Fatigue properties 19
2.6 Hardness and wear 19
2.7 Shape memory effect and superelasticity 20
2.8 Corrosion 21
2.9 Effects of processing on structure, properties
and reliability 23
2.10 Clinical requirements 24
2.11 Summary 24
2.12 Reading list 24
vi Contents
3 Ceramics 26
ALDO R. BOCCACCINI, Imperial College London, UK
3.1 Introduction 26
3.2 Atomic bonds and atomic arrangements in ceramics 27
3.3 Microstructure of ceramics 30
3.4 Mechanical properties of ceramics 30
3.5 Processing of ceramics 33
3.6 Impact of fabrication on microstructure and properties 34
3.7 Clinical requirements 34
3.8 Summary 36
3.9 Reading list 36
4 Polymers 37
ROBERT G. HILL, Imperial College London, UK
4.1 Introduction 37
4.2 Polymer configuration and conformation 41
4.3 Tacticity 42
4.4 Glass transition temperature 42
4.5 Polymer processing 42
4.6 Polymer properties 44
4.7 Polymer composites 46
4.8 Summary 46
4.9 Reading list 46
5 Biocomposites 48
IAN D. THOMPSON, Imperial College London, UK
5.1 Introduction 48
5.2 Bioactive ceramic polymer composites 50
5.3 Design criteria for biocomposites 53
5.4 Inert ceramic composites 55
5.5 Resorbable polymer matrices 56
5.6 Conclusions 57
5.7 Summary 58
5.8 Reading list 58
6 Cells and tissues 59
JUNE WILSON HENCH, Imperial College London, UK
6.1 Introduction 59
6.2 Definitions 59
6.3 Epithelium 62
6.4 Connective tissue 66
6.5 Muscle 67
Contents vii
6.6 Nervous tissue 68
6.7 Summary 70
6.8 Reading list 70
7 Inflammation and wound healing 71
JUNE WILSON HENCH, Imperial College London, UK
7.1 Introduction 71
7.2 Definitions 71
7.3 Effects of implantation 72
7.4 Normal wound healing 72
7.5 Wound healing and implants 74
7.6 Implant-tissue interactions 75
7.7 Summary 76
7.8 Reading list 76
Part II Clinical needs and concepts of repair
8 The skeletal system 79
LARRY L. HENCH, Imperial College London, UK
8.1 Introduction 79
8.2 The structural components of bone 80
8.3 Microstructural features of bone 82
8.4 Biomechanics of bone: anisotropy of bone properties 83
8.5 Effect of age on bone 84
8.6 Effect of strain rate on bone 84
8.7 Fatigue failure of bone 85
8.8 Fracture of bone 85
8.9 Structure of tendons and ligaments 85
8.10 Mechanical behaviour of tendons and ligaments 86
8.11 Cartilage 88
8.12 Summary 89
8.13 Reading list 89
9 The cardiovascular system 90
M. JOHN LEVER, Imperial College London, UK
9.1 Introduction 90
9.2 Cardiovascular pathology 91
9.3 Control and treatment of cardiovascular pathologies 94
9.4 Summary 95
9.5 Reading list 96
viii Contents
10 Biomedical polymers 97
ROBERT G. HILL, Imperial College London, UK
10.1 Introduction 97
10.2 Bioinert polymers 97
10.3 Bioresorbable polymers 102
10.4 Summary 106
10.5 Reading list 106
11 Biomedical hydrogels 107
JASON A. BURDICK, University of Pennsylvania, USA and
MOLLY M. STEVENS, Imperial College London, UK
11.1 Introduction 107
11.2 Mechanisms of hydrogel formation 107
11.3 Hydrogel properties 109
11.4 Types of hydrogels 110
11.5 Hydrogels for tissue engineering applications 112
11.6 Summary 115
11.7 Reading list 115
Part III Applications
12 Repair of skeletal tissues 119
LARRY L. HENCH, Imperial College London, UK
12.1 Introduction 119
12.2 Mechanisms and rates of bone repair 119
12.3 Fracture fixation objectives 120
12.4 Orthopaedic metals 122
12.5 Fracture fixation devices 123
12.6 Bioactive materials as bone graft supplements 126
12.7 Summary 127
12.8 Reading list 127
13 Joint replacement 129
LARRY L. HE NCH, Imperial College London, UK
13.1 Introduction 129
13.2 Hip joint replacement 130
13.3 Failure mechanisms 132
13.4 Survivability of total hip replacements 133
13.5 New developments to improve survivability 135
13.6 Knee joint replacements 136
13.7 Ankle joint replacements 138
13.8 Shoulder joint replacements 13°
Contents ix
13.9 Elbow joint replacements 139
13.10 Finger joint replacements 139
13.11 Prosthetic intervertebral disc 139
13.12 Summary 140
13.13 Key definitions 140
13.14 Reading list 140
14 Artificial organs 142
JULIAN R. JONES, Imperial College London, UK
14.1 Introduction 142
14.2 Kidney 142
14.3 Heart 143
14.4 Lung 144
14.5 Liver 144
14.6 Pancreas 145
14.7 Skin 146
14.8 The ear 147
14.9 The eye 149
14.10 The nose 150
14.11 The voice box 150
14.12 Summary 151
14.13 Reading list 152
15 Mass transport processes in artificial organs 153
M. JOHN LEVER, Imperial College London, UK
15.1 Introduction 153
15.2 Convective transport 153
15.3 Diffusional transport 160
15.4 Interaction of convection and diffusion 164
15.5 Dispersion 165
15.6 Reading list 166
16 Artificial exchange systems 167
M. JOHN LEVER, Imperial College London, UK
16.1 Introduction 167
16.2 Blood viscosity 168
16.3 Effects of shear on blood cells 169
16.4 Blood-air interactions 170
16.5 Blood flow in artificial devices 171
16.6 Exchangers 172
16.7 Dialysis 176
16.8 Summary 177
x Contents
16.9 Key definitions 177
16.10 Reading list 178
17 Cardiovascular assist systems 179
M. JOHN LEVER, Imperial College London, UK
17.1 Introduction 179
17.2 Heart valves 180
17.3 Pumps 183
17.4 Vascular prostheses 187
17.5 Summary 188
17.6 Key definitions 189
17.7 Reading list 190
Part IV Tissue engineering
18 Introduction to tissue engineering 193
LEE D.K. BUTTERY, University of Nottingham, UK and
ANNE E. BISHOP, Imperial College London, UK
18.1 Introduction 193
18.2 The challenge 193
18.3 Cell sources 194
18.4 Culture conditions 196
18.5 Three-dimensional interactions 197
18.6 Cell reprogramming 197
18.7 The way forward 198
18.8 Summary 199
18.9 Key definitions 199
18.10 Reading list 200
19 Scaffolds for tissue engineering 201
JULIAN R. JONES, Imperial College London, UK
19.1 Introduction 201
19.2 Classes of potential scaffold materials 201
19.3 The criteria for an ideal scaffold 202
19.4 Polymer scaffolds 204
19.5 Bioactive ceramic scaffolds 207
19.6 Bioactive glass scaffolds 209
19.7 Composites 211
19.8 Control of architecture 212
19.9 Summary 213
19.10 Reading list 213
Contents xi
20 A guide to basic cell culture and applications in
biomaterials and tissue engineering 215
JAMUNA SELVAKUMARAN and GAVIN JELL,
Imperial College London, UK
20.1 Introduction 215
20.2 Sterilisation 217
20.3 Cell culture protocols 221
20.4 Basic techniques for assessment of cell viability 224
20.5 Summary 225
20.6 Reading list 226
21 Immunochemical techniques in tissue engineering
and biomaterial science 227
GAVIN JELL and JAMUNA SELVAKUMARAN,
Imperial College London, UK
21.1 Introduction 227
21.2 Basic immunological principles 228
21.3 Common immunochemical techniques used in biomaterials 230
21.4 Immunochemical applications in biomaterial science and
tissue engineering research 238
21.5 Summary 239
21.6 Key definitions 239
21.7 Reading list 239
22 Clinical applications of tissue engineering 241
LARRY L. HENCH and JULIAN R. JONES,
Imperial College London, UK
22.1 Introduction 241
22.2 Skin 243
22.3 Cartilage 243
22.4 Tendons, ligaments and bone 244
22.5 Pancreas (islets of Langerhans) 244
22.6 Liver 245
22.7 Kidney 245
22.8 The cardiovascular system 246
22.9 Nerves 247
22.10 Summary 247
22.11 Reading list 247
xii Contents
Part V Societal, regulatory and ethical issues
23 Regulatory classification of biomaterials and
medical devices 251
DAVID C. GREENSPAN, US Biomaterials, USA and
LARRY L. HENCH, Imperial College London, UK
23.1 Introduction 251
23.2 How are medical devices regulated? 252
23.3 Classification of medical devices 252
23.4 History of regulatory agencies 253
23.5 What is the CE mark? 255
23.6 Differences between FDA and EU regulations 256
23.7 How do companies get through the FDA process? 257
23.8 Summary 257
23.9 Reading list 257
24 Technology transfer 258
LARRY L. HENCH, Imperial College London, UK
24.1 Introduction 258
24.2 Technology transfer paths 258
24.3 Efficient technology transfer 260
24.4 Factors affecting rapid technology transfer 262
24.5 Alternative routes to commercialisation of biomaterials 263
24.6 Summary 263
24.7 Reading list 264
25 Ethical issues 265
LARRY L. HENCH, Imperial College London, UK
25.1 Introduction 265
25.2 The ethical problem 266
25.3 Moral uncertainties 267
25.4 General moral principles 269
25.5 Principles of distributive justice 269
25.6 Consequences of the theoretical problem 271
25.7 Sources of conflict 271
25.8 Specific ethical concerns about biomaterials 273
25.9 Summary 274
25.10 Reading list 274
Index 275
|
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discipline | Medizin |
edition | 1. publ. |
format | Book |
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institution | BVB |
isbn | 9781855737372 185573737X 0849325773 9781845690861 1845690869 |
language | English |
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oclc_num | 255073902 |
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owner | DE-29T |
owner_facet | DE-29T |
physical | XII, 284 S. Ill., graph. Darst. 1 CD-ROM (12 cm) + Begleith. (1 Bl.) |
publishDate | 2005 |
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publisher | Woodhead [u.a.] |
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series2 | Woodhead publishing in materials |
spelling | Biomaterials, artificial organs and tissue engineering ed. by Larry L. Hench ... 1. publ. Cambridge [u.a.] Woodhead [u.a.] 2005 XII, 284 S. Ill., graph. Darst. 1 CD-ROM (12 cm) + Begleith. (1 Bl.) txt rdacontent n rdamedia nc rdacarrier Woodhead publishing in materials Biomedical engineering Implantatwerkstoff (DE-588)4161409-4 gnd rswk-swf Implantatwerkstoff (DE-588)4161409-4 s DE-604 Hench, Larry L. 1938- (DE-588)13942248X edt HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020674554&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Biomaterials, artificial organs and tissue engineering Biomedical engineering Implantatwerkstoff (DE-588)4161409-4 gnd |
subject_GND | (DE-588)4161409-4 |
title | Biomaterials, artificial organs and tissue engineering |
title_auth | Biomaterials, artificial organs and tissue engineering |
title_exact_search | Biomaterials, artificial organs and tissue engineering |
title_full | Biomaterials, artificial organs and tissue engineering ed. by Larry L. Hench ... |
title_fullStr | Biomaterials, artificial organs and tissue engineering ed. by Larry L. Hench ... |
title_full_unstemmed | Biomaterials, artificial organs and tissue engineering ed. by Larry L. Hench ... |
title_short | Biomaterials, artificial organs and tissue engineering |
title_sort | biomaterials artificial organs and tissue engineering |
topic | Biomedical engineering Implantatwerkstoff (DE-588)4161409-4 gnd |
topic_facet | Biomedical engineering Implantatwerkstoff |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020674554&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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