Introduction to bioengineering:
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Singapore
World Scientific
2002
|
Ausgabe: | Reprinted |
Schriftenreihe: | Advanced series in biomechanics
2 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Klappentext |
Beschreibung: | Hier auch später erschienene, unveränderte Nachdrucke |
Beschreibung: | XVII, 293 S. graph. Darst., Ill. 26 cm |
ISBN: | 9810240236 9810243987 |
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490 | 1 | |a Advanced series in biomechanics |v 2 | |
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Datensatz im Suchindex
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---|---|
adam_text | CONTENTS Q
Preface v
Table
of Contents
vii
To the Instructor
xi
To the Students
xiii
Sample Assignments
xv
1.
Roles of Flow Mechanics in Vascular Cell Biology in Health and Disease
1
Shu
Chien
Paper:
Chiu,
J. J., D. L.
Wang, S. Chien, R.
Skalák
and S.
Usami.
Effects of
disturbed flows on endothelial cells. J. Biomech.
Eng. 120: 2-8, 1998,
by
permission.
2.
Perspectives of Biomechanics
21
Yuan Cheng Fang
Paper: Fung, Y. C. Pressure, flow, stress, and remodeling in the pulmonary
vasculature. In: The Pulmonary Circulation and Gas Exchange, edited by
W. W. Wagner and E. K. Weir.
Futura
Pub. Co., pp.
343-364, 1994,
by
permission.
3.
The Implantable Glucose Sensor: An Example of Bioengineering Design
57
David A. Gough
Paper: Gough, D.
Α.,
J.
Y.
Lucisano and P.
H. S.
Tse. Two-dimensional
enzyme electrode sensor for glucose. Analytical Chemistry,
57: 2351-2357,
1985,
by permission.
4.
Design and Development of Artificial Blood
75
Marcos Intalietta
Paper: Tsai, A. G., B.
Friesenecker,
M.
С.
Mazzoni,
H.
Kerger,
D.
G.
Buerk,
P.
С.
Johnson and M. Intaglietta. Microvascular
and tissue oxygen
gradients
in the rat mesentery.
Proc.
Nati.
Acad.
Sci. USA.
95: 6590-6595, 1998,
by
permission.
5.
Analysis of Coronary Circulation: A Bioengineering Approach
93
Ghassan S.
Kassab
Paper: Kassab,
G. S., J.
Berkley and
Y. C.
Fung. Analysis of pig s coronary
arterial blood flow with detailed anatomical data. Ann. Biomed.
Eng. 25:
204-217, 1997,
by permission.
6.
What Lies Beyond Bioinformatics?
121
Bernhard
Poisson
Paper: Schilling, C. H., J. S. Edwards and B. O. Palsson. Toward metabolic
phenomics: Analysis of genomic data using flux balances. Biotechnol. Prog.
15: 288-295, 1999,
by permission.
vii
viii Contents
Paper: Edwards,
J. S.
and
В. О.
Palsson. The Escherichia
coli MG1655
in
silico metabolic genotype: Its definition, characteristics, and capabilities.
PNAS
97: 5528-5533, 2000,
by permission.
7.
Tissue Engineering of Articular Cartilage
145
Robert L.
Sah
Paper: Reindel, E. S., A. M. Ayroso, A. C. Chen, D. M. Chun, R. M. Schinagl
and R. L.
Sah.
Integrative
repair of articular in vitro: Adhesive strength of
the interface region. J. Orth. Res.
13: 751-760, 1995,
by permission.
8.
Cell Activation in the Circulation
185
Geert
W.
Schmid-Schönbein
Paper: Mazonic,
M. C.
and
G. W.
Schmid-Schönbein.
Mechanisms and
consequences of cell activation in the
microcirculation. Cardiovas.
Res.
32:
709-719, 1996,
by permission.
Paper: Mitsuoka,
H., E. B.
Kistler and
G. W.
Schmid-Schönbein.
Generation
of in vivo activating factors in the
ischemie
intestine by pancreatic enzymes.
PNAS
97: 1772-1777, 2000,
by permission.
9.
Molecular Basis of Cell Membrane Mechanics
217
Lanping Amy Sung
Paper: Sung, L.
Α.,
S. Chien,
L. S.
Chang,
К.
Lambert,
S.
A. Bliss,
E. E.
Bonhassion,
R. L.
Nagel,
R. S.
Schwartz and A. C. Rybicki. Molecular
cloning of human protein
4.2:
A major component of the erythrocyte
membrane.
Proc.
Nati.
Acad.
Sci.
87: 955-959, 1990,
by permission.
10.
Biomechanics of Injury and Healing
237
Pin
Tong
and Yuan Cheng Fung
Paper: An Editorial Article by
Savio L.-Y.
Woo: The importance of
biomechanics for the new millennium. J. Orth. Sc.
5: 89-91, 2000,
by
permission.
Paper: Yen,
R. T., Y.
С.
Fung,
H. H. Ho
and G. Butterman.
Speed of stress
wave propagation in Lung. J.
Appi. Physiol.
61: 701-705, 1986,
by
permission.
Paper: Fung, Y. C, R. T. Yen, Z. L. Tao and S. Q. Liu. A hypothesis on the
mechanism of trauma of lung tissue subjected to impact load. J. Biomech.
Eng. 110: 50-56, 1988,
by permission.
11.
Pulsatile Blood Flow in the Lung Studied as an Engineering System
265
Michael R. T. Yen and Wei Huang
Paper: Huang, W., Y.
Tian,
J.
Gao
and R. T. Yen. Comparison of theory
and experiment in pulsatile flow in cat lung. Ann. Biomed.
Eng. 26:
812-820, 1998,
by permission.
Contents ix
Appendixes
A. About the Authors
285
B.
About the Department of
Bioengineering
at the University of California, San
Diego
291
Farewell to Students
293
Bioengineering
is attracting many high quality students. This invaluable book is written for
beginning students of
bioengineering,
and is aimed at instilling a sense of engineering in them.
Engineering is invention and designing things that do not exist in nature for the benefit of
humanity. Invention can be taught by making inventive thinking a conscious part of our daily
life. This is the approach taken by the authors of this book. Each author discusses an ongoing
project, and gives a sample of a professional publication. Students are asked to work through a
sequence of assignments and write a report. Almost everybody soon realizes that more scientific
knowledge is needed, and a strong motivation for the study of science is generated. The teaching
of inventive thinking is a new trend in engineering education.
Bioengineering
is a good field
with which to begin this revolution in engineering education, because it is a youthful, developing
interdisciplinary field.
Y. C. Fung works on solid mechanics, and has helped to establish the fields of aeroelasticity and biomechanics.
He received his BS and MS from the National Central University in China and PhD from the California Institute
of Technology. He received the United States Presidential National Medal of Science in the year
2000,
and the
Founders Award of the US National Academy of Engineering in
1998.
He was elected a member of the US
National Academy of Science in
1992,
the US Institute of Medicine in
1991,
the US National Academy of
Engineering in
1979,
the Academy of Science of China in
1994,
and the
Academia
Sinica in
1966.
He is
Distinguished Alumnus of Caltech, Honorary Member of
ASME,
and winner of the
von
Karman
Medal
(ASCE),
Timoshenko Medal
(ASME),
Poiseuille Medal (ISB), Borelli Medal
(ASB),
Landis
Award
(AMS),
and
Alza
Award (BMES).
|
adam_txt |
CONTENTS Q
Preface v
Table
of Contents
vii
To the Instructor
xi
To the Students
xiii
Sample Assignments
xv
1.
Roles of Flow Mechanics in Vascular Cell Biology in Health and Disease
1
Shu
Chien
Paper:
Chiu,
J. J., D. L.
Wang, S. Chien, R.
Skalák
and S.
Usami.
Effects of
disturbed flows on endothelial cells. J. Biomech.
Eng. 120: 2-8, 1998,
by
permission.
2.
Perspectives of Biomechanics
21
Yuan Cheng Fang
Paper: Fung, Y. C. Pressure, flow, stress, and remodeling in the pulmonary
vasculature. In: The Pulmonary Circulation and Gas Exchange, edited by
W. W. Wagner and E. K. Weir.
Futura
Pub. Co., pp.
343-364, 1994,
by
permission.
3.
The Implantable Glucose Sensor: An Example of Bioengineering Design
57
David A. Gough
Paper: Gough, D.
Α.,
J.
Y.
Lucisano and P.
H. S.
Tse. Two-dimensional
enzyme electrode sensor for glucose. Analytical Chemistry,
57: 2351-2357,
1985,
by permission.
4.
Design and Development of Artificial Blood
75
Marcos Intalietta
Paper: Tsai, A. G., B.
Friesenecker,
M.
С.
Mazzoni,
H.
Kerger,
D.
G.
Buerk,
P.
С.
Johnson and M. Intaglietta. Microvascular
and tissue oxygen
gradients
in the rat mesentery.
Proc.
Nati.
Acad.
Sci. USA.
95: 6590-6595, 1998,
by
permission.
5.
Analysis of Coronary Circulation: A Bioengineering Approach
93
Ghassan S.
Kassab
Paper: Kassab,
G. S., J.
Berkley and
Y. C.
Fung. Analysis of pig's coronary
arterial blood flow with detailed anatomical data. Ann. Biomed.
Eng. 25:
204-217, 1997,
by permission.
6.
What Lies Beyond Bioinformatics?
121
Bernhard
Poisson
Paper: Schilling, C. H., J. S. Edwards and B. O. Palsson. Toward metabolic
phenomics: Analysis of genomic data using flux balances. Biotechnol. Prog.
15: 288-295, 1999,
by permission.
vii
viii Contents
Paper: Edwards,
J. S.
and
В. О.
Palsson. The Escherichia
coli MG1655
in
silico metabolic genotype: Its definition, characteristics, and capabilities.
PNAS
97: 5528-5533, 2000,
by permission.
7.
Tissue Engineering of Articular Cartilage
145
Robert L.
Sah
Paper: Reindel, E. S., A. M. Ayroso, A. C. Chen, D. M. Chun, R. M. Schinagl
and R. L.
Sah.
Integrative
repair of articular in vitro: Adhesive strength of
the interface region. J. Orth. Res.
13: 751-760, 1995,
by permission.
8.
Cell Activation in the Circulation
185
Geert
W.
Schmid-Schönbein
Paper: Mazonic,
M. C.
and
G. W.
Schmid-Schönbein.
Mechanisms and
consequences of cell activation in the
microcirculation. Cardiovas.
Res.
32:
709-719, 1996,
by permission.
Paper: Mitsuoka,
H., E. B.
Kistler and
G. W.
Schmid-Schönbein.
Generation
of in vivo activating factors in the
ischemie
intestine by pancreatic enzymes.
PNAS
97: 1772-1777, 2000,
by permission.
9.
Molecular Basis of Cell Membrane Mechanics
217
Lanping Amy Sung
Paper: Sung, L.
Α.,
S. Chien,
L. S.
Chang,
К.
Lambert,
S.
A. Bliss,
E. E.
Bonhassion,
R. L.
Nagel,
R. S.
Schwartz and A. C. Rybicki. Molecular
cloning of human protein
4.2:
A major component of the erythrocyte
membrane.
Proc.
Nati.
Acad.
Sci.
87: 955-959, 1990,
by permission.
10.
Biomechanics of Injury and Healing
237
Pin
Tong
and Yuan Cheng Fung
Paper: An Editorial Article by
Savio L.-Y.
Woo: The importance of
biomechanics for the new millennium. J. Orth. Sc.
5: 89-91, 2000,
by
permission.
Paper: Yen,
R. T., Y.
С.
Fung,
H. H. Ho
and G. Butterman.
Speed of stress
wave propagation in Lung. J.
Appi. Physiol.
61: 701-705, 1986,
by
permission.
Paper: Fung, Y. C, R. T. Yen, Z. L. Tao and S. Q. Liu. A hypothesis on the
mechanism of trauma of lung tissue subjected to impact load. J. Biomech.
Eng. 110: 50-56, 1988,
by permission.
11.
Pulsatile Blood Flow in the Lung Studied as an Engineering System
265
Michael R. T. Yen and Wei Huang
Paper: Huang, W., Y.
Tian,
J.
Gao
and R. T. Yen. Comparison of theory
and experiment in pulsatile flow in cat lung. Ann. Biomed.
Eng. 26:
812-820, 1998,
by permission.
Contents ix
Appendixes
A. About the Authors
285
B.
About the Department of
Bioengineering
at the University of California, San
Diego
291
Farewell to Students
293
Bioengineering
is attracting many high quality students. This invaluable book is written for
beginning students of
bioengineering,
and is aimed at instilling a sense of engineering in them.
Engineering is invention and designing things that do not exist in nature for the benefit of
humanity. Invention can be taught by making inventive thinking a conscious part of our daily
life. This is the approach taken by the authors of this book. Each author discusses an ongoing
project, and gives a sample of a professional publication. Students are asked to work through a
sequence of assignments and write a report. Almost everybody soon realizes that more scientific
knowledge is needed, and a strong motivation for the study of science is generated. The teaching
of inventive thinking is a new trend in engineering education.
Bioengineering
is a good field
with which to begin this revolution in engineering education, because it is a youthful, developing
interdisciplinary field.
Y. C. Fung works on solid mechanics, and has helped to establish the fields of aeroelasticity and biomechanics.
He received his BS and MS from the National Central University in China and PhD from the California Institute
of Technology. He received the United States Presidential National Medal of Science in the year
2000,
and the
Founders Award of the US National Academy of Engineering in
1998.
He was elected a member of the US
National Academy of Science in
1992,
the US Institute of Medicine in
1991,
the US National Academy of
Engineering in
1979,
the Academy of Science of China in
1994,
and the
Academia
Sinica in
1966.
He is
Distinguished Alumnus of Caltech, Honorary Member of
ASME,
and winner of the
von
Karman
Medal
(ASCE),
Timoshenko Medal
(ASME),
Poiseuille Medal (ISB), Borelli Medal
(ASB),
Landis
Award
(AMS),
and
Alza
Award (BMES). |
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genre | (DE-588)4151278-9 Einführung gnd-content Aufsatzsammlung swd |
genre_facet | Einführung Aufsatzsammlung |
id | DE-604.BV021540691 |
illustrated | Illustrated |
index_date | 2024-07-02T14:28:12Z |
indexdate | 2024-07-09T20:38:11Z |
institution | BVB |
isbn | 9810240236 9810243987 |
language | English |
lccn | 2001270359 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-014756904 |
oclc_num | 175041192 |
open_access_boolean | |
owner | DE-898 DE-BY-UBR DE-703 |
owner_facet | DE-898 DE-BY-UBR DE-703 |
physical | XVII, 293 S. graph. Darst., Ill. 26 cm |
publishDate | 2002 |
publishDateSearch | 2002 |
publishDateSort | 2002 |
publisher | World Scientific |
record_format | marc |
series | Advanced series in biomechanics |
series2 | Advanced series in biomechanics |
spelling | Introduction to bioengineering ed. Y. C. Fung. Authors Shu Chien ... Reprinted Singapore World Scientific 2002 XVII, 293 S. graph. Darst., Ill. 26 cm txt rdacontent n rdamedia nc rdacarrier Advanced series in biomechanics 2 Hier auch später erschienene, unveränderte Nachdrucke Biomechanik swd Biomedizinische Technik swd Biotechnologie swd aBioengineering Biomechanik (DE-588)4006880-8 gnd rswk-swf Biotechnologie (DE-588)4069491-4 gnd rswk-swf Biomedizinische Technik (DE-588)4006882-1 gnd rswk-swf (DE-588)4151278-9 Einführung gnd-content Aufsatzsammlung swd Biotechnologie (DE-588)4069491-4 s DE-604 Biomedizinische Technik (DE-588)4006882-1 s Biomechanik (DE-588)4006880-8 s Fung, Yuan-cheng 1919-2019 Sonstige (DE-588)124296920 oth Chien, Shu Sonstige oth Advanced series in biomechanics 2 (DE-604)BV021803415 2 Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014756904&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014756904&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Klappentext |
spellingShingle | Introduction to bioengineering Advanced series in biomechanics Biomechanik swd Biomedizinische Technik swd Biotechnologie swd aBioengineering Biomechanik (DE-588)4006880-8 gnd Biotechnologie (DE-588)4069491-4 gnd Biomedizinische Technik (DE-588)4006882-1 gnd |
subject_GND | (DE-588)4006880-8 (DE-588)4069491-4 (DE-588)4006882-1 (DE-588)4151278-9 |
title | Introduction to bioengineering |
title_auth | Introduction to bioengineering |
title_exact_search | Introduction to bioengineering |
title_exact_search_txtP | Introduction to bioengineering |
title_full | Introduction to bioengineering ed. Y. C. Fung. Authors Shu Chien ... |
title_fullStr | Introduction to bioengineering ed. Y. C. Fung. Authors Shu Chien ... |
title_full_unstemmed | Introduction to bioengineering ed. Y. C. Fung. Authors Shu Chien ... |
title_short | Introduction to bioengineering |
title_sort | introduction to bioengineering |
topic | Biomechanik swd Biomedizinische Technik swd Biotechnologie swd aBioengineering Biomechanik (DE-588)4006880-8 gnd Biotechnologie (DE-588)4069491-4 gnd Biomedizinische Technik (DE-588)4006882-1 gnd |
topic_facet | Biomechanik Biomedizinische Technik Biotechnologie aBioengineering Einführung Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014756904&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014756904&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV021803415 |
work_keys_str_mv | AT fungyuancheng introductiontobioengineering AT chienshu introductiontobioengineering |