Surface engineered surgical tools and medical devices:
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
New York, NY
Springer
2007
|
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | XXIII, 581 S. Ill., graph. Darst. |
ISBN: | 9780387270265 0387270264 |
Internformat
MARC
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245 | 1 | 0 | |a Surface engineered surgical tools and medical devices |c ed. by Mark J. Jackson ... |
264 | 1 | |a New York, NY |b Springer |c 2007 | |
300 | |a XXIII, 581 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
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Datensatz im Suchindex
_version_ | 1804135975953104896 |
---|---|
adam_text | Contents
Foreword
v
Preface
vii
List of Authors
xv
Nomenclature
xxi
1.
Atomic Scale Machining of Surfaces
1
1.1
Introduction
1
1.2
Theoretical Basis of Nanomachining
3
1.3
Further Developments
18
References
18
2.
Anodization: A Promising Nano-Modification
Technique of Titanium-based Implants
for Orthopedic Applications
21
2.1
Introduction
21
2.2
Anodization of Titanium
23
2.3
Structure and Properties of Anodized Oxide Film
34
2.4
Future Directions
44
References
45
3.
Titanium Dioxide Coatings in Medical Device
Applications
49
3.1
Introduction
49
References
62
4.
The Effect of Shape and Surface Modification
on the Corrosion of
Biomedical Nitinol
Alloy
Wires Exposed to Saline Solution
65
4.1
Introduction
65
4.2
Experimental Methods
66
4.3
Summary
78
References
80
χ
Contents
5.
Cardiovascular Interventional
and
Impiantatale
Devices
83
5.1
Introduction
83
5.2
Cardiovascular Interventional
Tools
83
5.3 Key
Surface
Properties for Cardiovascular
Interventional Devices
86
5.4
Cardiovascular Implantable Devices
87
5.5
Electrical Implantable Devices
88
5.6
Mechanical Implantables
91
5.7
Important Surface Properties
for Implantable Cardiovascular Devices
94
References
96
6.
Surface Engineering Artificial Heart Valves
to Improve Quality of Life and Lifetime
using Modified Diamond-like Coatings
99
6.1
Introduction
99
6.2
History of Mechanical Heart Valves
100
6.3
Thrombosis
107
6.4
Hemocompatibility
109
6.5
Endothelium and Endothelial Cell Seeding
112
6.6
Surface Engineering Artificial Heart Valves
114
6.7
Summary
133
References
135
7.
Diamond Surgical Tools
141
7.1
Introduction
141
7.2
Properties of Diamond
143
7.3
History of Diamond
143
7.4
CVD Diamond Technology
149
7.5
CVD Diamond Processes
150
7.6
Treatment of Substrate
154
7.7
Modification of HFCVD Process
159
7.8
Nucleation and Growth
162
7.9
Deposition on
3-D
Substrates
171
7.10
Wear of Diamond
180
7.11
Time-Modulated CVD Diamond
188
7.12
Conclusions
196
References
196
Contents
xi
8.
Dental
I Tool Technology
201
8.1
Introduction
201
8.2
Burs and Abrasive Points
203
8.3
Classification of Dental Burs
207
8.4
Coding of Dental Tools
207
8.5
Dental Devices
212
8.6
Dental Laboratory Materials
213
8.7
Dental Cutting Tools
224
8.8
Health and Safety
229
References
231
9.
Nanocrystalline Diamond:
Deposition
Routes
and Clinical
Applications
241
9.1
Introduction
241
9.2
Nanocrystalline Diamond
243
9.3
Clinical Applications
256
9.4
Summary
264
References
265
10.
Environmental
Engineering Controls
and Monitoring in Medical Device Manufacturing
273
10.1
Introduction
273
10.2
Stressor
Source, Properties,
and Characteristics
275
10.3
Sterilization
275
10.4
Cleaning, Etching, and Surface Preparation
284
10.5
Adhesive Applications
294
10.6
Coating Applications
295
10.7
Drilling, Grinding, Cutting, and Machining
296
10.8
Welding and Soldering
298
10.9
General Maintenance Activities
299
10.10
Laboratory Research and Testing
300
10.11
Environmental and Engineering Controls
301
10.12
Substitution
302
10.13
Process Controls
302
10.14
Enclosure/Isolation
303
10.15
Process Change or Elimination
304
10.16
Ventilation Controls
304
10.17
Personal Protective Equipment and Clothing
312
10.18
Control Strategies in Device Manufacturing
312
10.19
Monitoring
314
10.20
Particle, Fumes, and Aerosol Monitoring
315
xii Contents
10.21
Vapors and Gases
321
10.22
Ionizing Radiation
327
10.23
Non-Ionizing Radiation
329
10.24
Noise and Heat Stress
330
10.25
Microbial Environmental Monitoring
331
10.26
Clean Room Monitoring Requirements
334
10.27
Monitor Selection in Device Manufacturing
335
10.28
Summary
337
References
337
11.
Biomaterial-Cell-Tissue Interactions In Surface
Engineered Carbon-Based
Biomedical
Implants
and Devices
341
11.1
Introduction
341
11.2
Potential
Biomedical
Applications of DLC
347
11.3
Definitions and General Aspects
of Biocompatibility
348
11.4
Blood
350
11.5
Cell Culture/Seeding Peculiar to Each Cell
356
11.6
Statistics and Counting of Cells
359
11.7
Stereological Investigations
360
11.8
Photo-Fluorescent Imaging of Cells/Tissues
361
11.9
Biocompatibility and Hemo-compatibility
Models
363
11.10
Carbon-based Materials Interaction
with Selected Proteins and Cells
367
11.11
DLC Interactions with
Fibroblasts In-Vitro
368
11.12
Endothelial Pre-seeding on
Biomaterials
for Tissue Engineering
400
11.13
Bio-Assays and Assessment of Intracellular
Activities
406
11.14
In-vivo Studies of Carbon-based Materials:
Cell-Tissue Interactions In-situ
417
11.15
On-going and Future Investigations
426
References
429
12.
Applications of Carbon Nanotubes
in Bio-Nanotechnology
439
12.1
Introduction
439
12.2
Bio-Nanomaterials
440
12.3
Carbon Nanotubes
441
12.4
Analysis
464
Contents xiii
12.5
Toxicity
of Carbon Nanotubes
468
12.6
Conclusions
469
References
469
13.
Bonelike Graft for Regenerative Bone Applications
477
13.1
Introduction
477
13.2
Synthetic Bone Graft Material
-
Bonelike
486
13.3
Summary
509
References
509
14.
Machining Cancellous Bone Prior to Prosthetic
Implantation
513
14.1
Introduction
513
14.2
Structure of Cancellous Bone
514
14.3
Theory of Micromachining
515
14.4
Initial Chip Curl Modeling
518
14.5
Experimental
524
14.6
Discussion
529
14.7
Conclusions
530
References
531
15.
Titanium and Titanium Alloy Applications
in Medicine
533
15.1
Metallurgical Aspects
533
15.2
Principal Requirements of Medical Implants
545
15.3
Shape Memory Alloys
554
15.4
Conclusions
568
References
568
Subject Index
577
|
adam_txt |
Contents
Foreword
v
Preface
vii
List of Authors
xv
Nomenclature
xxi
1.
Atomic Scale Machining of Surfaces
1
1.1
Introduction
1
1.2
Theoretical Basis of Nanomachining
3
1.3
Further Developments
18
References
18
2.
Anodization: A Promising Nano-Modification
Technique of Titanium-based Implants
for Orthopedic Applications
21
2.1
Introduction
21
2.2
Anodization of Titanium
23
2.3
Structure and Properties of Anodized Oxide Film
34
2.4
Future Directions
44
References
45
3.
Titanium Dioxide Coatings in Medical Device
Applications
49
3.1
Introduction
49
References
62
4.
The Effect of Shape and Surface Modification
on the Corrosion of
Biomedical Nitinol
Alloy
Wires Exposed to Saline Solution
65
4.1
Introduction
65
4.2
Experimental Methods
66
4.3
Summary
78
References
80
χ
Contents
5.
Cardiovascular Interventional
and
Impiantatale
Devices
83
5.1
Introduction
83
5.2
Cardiovascular Interventional
Tools
83
5.3 Key
Surface
Properties for Cardiovascular
Interventional Devices
86
5.4
Cardiovascular Implantable Devices
87
5.5
Electrical Implantable Devices
88
5.6
Mechanical Implantables
91
5.7
Important Surface Properties
for Implantable Cardiovascular Devices
94
References
96
6.
Surface Engineering Artificial Heart Valves
to Improve Quality of Life and Lifetime
using Modified Diamond-like Coatings
99
6.1
Introduction
99
6.2
History of Mechanical Heart Valves
100
6.3
Thrombosis
107
6.4
Hemocompatibility
109
6.5
Endothelium and Endothelial Cell Seeding
112
6.6
Surface Engineering Artificial Heart Valves
114
6.7
Summary
133
References
135
7.
Diamond Surgical Tools
141
7.1
Introduction
141
7.2
Properties of Diamond
143
7.3
History of Diamond
143
7.4
CVD Diamond Technology
149
7.5
CVD Diamond Processes
150
7.6
Treatment of Substrate
154
7.7
Modification of HFCVD Process
159
7.8
Nucleation and Growth
162
7.9
Deposition on
3-D
Substrates
171
7.10
Wear of Diamond
180
7.11
Time-Modulated CVD Diamond
188
7.12
Conclusions
196
References
196
Contents
xi
8.
Dental
I Tool Technology
201
8.1
Introduction
201
8.2
Burs and Abrasive Points
203
8.3
Classification of Dental Burs
207
8.4
Coding of Dental Tools
207
8.5
Dental Devices
212
8.6
Dental Laboratory Materials
213
8.7
Dental Cutting Tools
224
8.8
Health and Safety
229
References
231
9.
Nanocrystalline Diamond:
Deposition
Routes
and Clinical
Applications
241
9.1
Introduction
241
9.2
Nanocrystalline Diamond
243
9.3
Clinical Applications
256
9.4
Summary
264
References
265
10.
Environmental
Engineering Controls
and Monitoring in Medical Device Manufacturing
273
10.1
Introduction
273
10.2
Stressor
Source, Properties,
and Characteristics
275
10.3
Sterilization
275
10.4
Cleaning, Etching, and Surface Preparation
284
10.5
Adhesive Applications
294
10.6
Coating Applications
295
10.7
Drilling, Grinding, Cutting, and Machining
296
10.8
Welding and Soldering
298
10.9
General Maintenance Activities
299
10.10
Laboratory Research and Testing
300
10.11
Environmental and Engineering Controls
301
10.12
Substitution
302
10.13
Process Controls
302
10.14
Enclosure/Isolation
303
10.15
Process Change or Elimination
304
10.16
Ventilation Controls
304
10.17
Personal Protective Equipment and Clothing
312
10.18
Control Strategies in Device Manufacturing
312
10.19
Monitoring
314
10.20
Particle, Fumes, and Aerosol Monitoring
315
xii Contents
10.21
Vapors and Gases
321
10.22
Ionizing Radiation
327
10.23
Non-Ionizing Radiation
329
10.24
Noise and Heat Stress
330
10.25
Microbial Environmental Monitoring
331
10.26
Clean Room Monitoring Requirements
334
10.27
Monitor Selection in Device Manufacturing
335
10.28
Summary
337
References
337
11.
Biomaterial-Cell-Tissue Interactions In Surface
Engineered Carbon-Based
Biomedical
Implants
and Devices
341
11.1
Introduction
341
11.2
Potential
Biomedical
Applications of DLC
347
11.3
Definitions and General Aspects
of Biocompatibility
348
11.4
Blood
350
11.5
Cell Culture/Seeding Peculiar to Each Cell
356
11.6
Statistics and Counting of Cells
359
11.7
Stereological Investigations
360
11.8
Photo-Fluorescent Imaging of Cells/Tissues
361
11.9
Biocompatibility and Hemo-compatibility
Models
363
11.10
Carbon-based Materials Interaction
with Selected Proteins and Cells
367
11.11
DLC Interactions with
Fibroblasts In-Vitro
368
11.12
Endothelial Pre-seeding on
Biomaterials
for Tissue Engineering
400
11.13
Bio-Assays and Assessment of Intracellular
Activities
406
11.14
In-vivo Studies of Carbon-based Materials:
Cell-Tissue Interactions In-situ
417
11.15
On-going and Future Investigations
426
References
429
12.
Applications of Carbon Nanotubes
in Bio-Nanotechnology
439
12.1
Introduction
439
12.2
Bio-Nanomaterials
440
12.3
Carbon Nanotubes
441
12.4
Analysis
464
Contents xiii
12.5
Toxicity
of Carbon Nanotubes
468
12.6
Conclusions
469
References
469
13.
Bonelike Graft for Regenerative Bone Applications
477
13.1
Introduction
477
13.2
Synthetic Bone Graft Material
-
Bonelike
486
13.3
Summary
509
References
509
14.
Machining Cancellous Bone Prior to Prosthetic
Implantation
513
14.1
Introduction
513
14.2
Structure of Cancellous Bone
514
14.3
Theory of Micromachining
515
14.4
Initial Chip Curl Modeling
518
14.5
Experimental
524
14.6
Discussion
529
14.7
Conclusions
530
References
531
15.
Titanium and Titanium Alloy Applications
in Medicine
533
15.1
Metallurgical Aspects
533
15.2
Principal Requirements of Medical Implants
545
15.3
Shape Memory Alloys
554
15.4
Conclusions
568
References
568
Subject Index
577 |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
building | Verbundindex |
bvnumber | BV022189658 |
classification_rvk | YI 1700 |
ctrlnum | (OCoLC)254903281 (DE-599)BVBBV022189658 |
dewey-full | 617.9178 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 617 - Surgery & related medical specialties |
dewey-raw | 617.9178 |
dewey-search | 617.9178 |
dewey-sort | 3617.9178 |
dewey-tens | 610 - Medicine and health |
discipline | Medizin |
discipline_str_mv | Medizin |
format | Book |
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id | DE-604.BV022189658 |
illustrated | Illustrated |
index_date | 2024-07-02T16:11:25Z |
indexdate | 2024-07-09T20:49:03Z |
institution | BVB |
isbn | 9780387270265 0387270264 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-015215187 |
oclc_num | 254903281 |
open_access_boolean | |
owner | DE-355 DE-BY-UBR DE-634 DE-1047 |
owner_facet | DE-355 DE-BY-UBR DE-634 DE-1047 |
physical | XXIII, 581 S. Ill., graph. Darst. |
publishDate | 2007 |
publishDateSearch | 2007 |
publishDateSort | 2007 |
publisher | Springer |
record_format | marc |
spelling | Surface engineered surgical tools and medical devices ed. by Mark J. Jackson ... New York, NY Springer 2007 XXIII, 581 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Medizintechnik (DE-588)4074676-8 gnd rswk-swf Oberflächenbehandlung (DE-588)4042908-8 gnd rswk-swf Biotechnologie (DE-588)4069491-4 gnd rswk-swf Biotechnologie (DE-588)4069491-4 s Medizintechnik (DE-588)4074676-8 s Oberflächenbehandlung (DE-588)4042908-8 s DE-604 Jackson, Mark J. Sonstige oth text/html http://deposit.dnb.de/cgi-bin/dokserv?id=2739584&prov=M&dok_var=1&dok_ext=htm Inhaltstext Digitalisierung UB Regensburg application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015215187&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Surface engineered surgical tools and medical devices Medizintechnik (DE-588)4074676-8 gnd Oberflächenbehandlung (DE-588)4042908-8 gnd Biotechnologie (DE-588)4069491-4 gnd |
subject_GND | (DE-588)4074676-8 (DE-588)4042908-8 (DE-588)4069491-4 |
title | Surface engineered surgical tools and medical devices |
title_auth | Surface engineered surgical tools and medical devices |
title_exact_search | Surface engineered surgical tools and medical devices |
title_exact_search_txtP | Surface engineered surgical tools and medical devices |
title_full | Surface engineered surgical tools and medical devices ed. by Mark J. Jackson ... |
title_fullStr | Surface engineered surgical tools and medical devices ed. by Mark J. Jackson ... |
title_full_unstemmed | Surface engineered surgical tools and medical devices ed. by Mark J. Jackson ... |
title_short | Surface engineered surgical tools and medical devices |
title_sort | surface engineered surgical tools and medical devices |
topic | Medizintechnik (DE-588)4074676-8 gnd Oberflächenbehandlung (DE-588)4042908-8 gnd Biotechnologie (DE-588)4069491-4 gnd |
topic_facet | Medizintechnik Oberflächenbehandlung Biotechnologie |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=2739584&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015215187&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT jacksonmarkj surfaceengineeredsurgicaltoolsandmedicaldevices |