Hemodynamics and mechanobiology of endothelium

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245 1 0 |a Hemodynamics and mechanobiology of endothelium  |c editors, Tzung K. Hsiai, Brett Blackman, Hanjoong Jo 
264 1 |a New Jersey  |b World Scientific  |c ©2010 
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500 |a Includes bibliographical references and index 
500 |a Ch. 1. Flow and atherosclerosis / Ian Campbell and W. Robert Taylor -- ch. 2. Shear stress-mediated signal transduction / Jun-Ichi Abe [and others] -- ch. 3. Endothelial glycocalyx structure and role in mechanotransduction / John M. Tarbell and Eno E. Ebong -- ch. 4. Role of Kruppel-like factors in shear stress-mediated vasoprotection / Daiji Kawanami [and others] -- ch. 5. Rho family small GTPases in shear stress signaling / Daniel T. Sweet and Ellie Tzima -- ch. 6. Nitric oxide and endothelial mitochondrial function : Implications for ischemia/reperfusion / B.R. Alevriadou, C.I. Jones and R.J. Giedt -- ch. 7. Genomic approaches to endothelial cell phenotyping / Anthony G. Passerini -- ch. 8. Endothelial cell proliferation and differentiation in response to shear stress / Lingfang Zeng, Anna Zampetaki and Qingbo Xu -- ch. 9. Vascular differentiation of stem cells by mechanical forces / Timothy M. Maul, Alejandro Nieponice and David A Vorp -- ch. 10. Tissue engineered blood vessels : From the bench to the bedside and back again (Development of a vascular conduit for use in congenital heart surgery) / Bernard S. Salameh [and others] -- ch. 11. Design implications for endovascular stents and the endothelium / Juan M. Jimenez and Peter F. Davies -- ch. 12. Vascular mimetic microfluidic systems for the study of endothelial activation and leukocyte recruitment in models of atherogenesis / R. Michael Gower and Scott Simon -- ch. 13. Micro shear stress sensors : From in vitro to in vivo assessment of inflammatory responses / Lisong Ai [and others] 
500 |a The book represents a paradigm shift from the traditional static model of investigation of oxidative biology to the dynamic model of vascular oxidative stress. The investigation of vascular biology and cardiovascular medicine is made possible by the use of fluid dynamics, molecular signaling, genomic approach, tissue engineering, stem cell biology, and microfluidics. This is the first book to target a wide readership from academia to industry and government agencies in the field of cardiovascular diseases 
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650 4 |a Blood Circulation / physiology 
650 4 |a Endothelium, Vascular / cytology 
650 4 |a Mechanotransduction, Cellular / physiology 
650 4 |a Models, Cardiovascular 
650 4 |a Oxidative Stress / physiology 
650 4 |a Blood Circulation / Physiology 
650 4 |a Endothelium, Vascular / Cytology 
650 4 |a Hemodynamics / Physiology 
650 4 |a Mechanotransduction, Cellular / Physiology 
650 4 |a Oxidative Stress / Physiology 
650 4 |a Science 
650 4 |a Physiology 
650 4 |a Natural history 
650 7 |a MEDICAL / Physiology  |2 bisacsh 
650 7 |a SCIENCE / Life Sciences / Human Anatomy & Physiology  |2 bisacsh 
650 7 |a Hemodynamics  |2 fast 
650 7 |a Oxidative stress  |2 fast 
650 4 |a Medizin 
650 4 |a Naturwissenschaft 
650 4 |a Hemodynamics 
650 4 |a Oxidative stress 
700 1 |a Hsiai, Tzung K.  |e Sonstige  |4 oth 
700 1 |a Blackman, Brett  |e Sonstige  |4 oth 
700 1 |a Jo, Hanjoong  |e Sonstige  |4 oth 
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physical 1 Online-Ressource (viii, 370 pages)
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publisher World Scientific
record_format marc
spelling Hemodynamics and mechanobiology of endothelium editors, Tzung K. Hsiai, Brett Blackman, Hanjoong Jo
New Jersey World Scientific ©2010
1 Online-Ressource (viii, 370 pages)
txt rdacontent
c rdamedia
cr rdacarrier
Includes bibliographical references and index
Ch. 1. Flow and atherosclerosis / Ian Campbell and W. Robert Taylor -- ch. 2. Shear stress-mediated signal transduction / Jun-Ichi Abe [and others] -- ch. 3. Endothelial glycocalyx structure and role in mechanotransduction / John M. Tarbell and Eno E. Ebong -- ch. 4. Role of Kruppel-like factors in shear stress-mediated vasoprotection / Daiji Kawanami [and others] -- ch. 5. Rho family small GTPases in shear stress signaling / Daniel T. Sweet and Ellie Tzima -- ch. 6. Nitric oxide and endothelial mitochondrial function : Implications for ischemia/reperfusion / B.R. Alevriadou, C.I. Jones and R.J. Giedt -- ch. 7. Genomic approaches to endothelial cell phenotyping / Anthony G. Passerini -- ch. 8. Endothelial cell proliferation and differentiation in response to shear stress / Lingfang Zeng, Anna Zampetaki and Qingbo Xu -- ch. 9. Vascular differentiation of stem cells by mechanical forces / Timothy M. Maul, Alejandro Nieponice and David A Vorp -- ch. 10. Tissue engineered blood vessels : From the bench to the bedside and back again (Development of a vascular conduit for use in congenital heart surgery) / Bernard S. Salameh [and others] -- ch. 11. Design implications for endovascular stents and the endothelium / Juan M. Jimenez and Peter F. Davies -- ch. 12. Vascular mimetic microfluidic systems for the study of endothelial activation and leukocyte recruitment in models of atherogenesis / R. Michael Gower and Scott Simon -- ch. 13. Micro shear stress sensors : From in vitro to in vivo assessment of inflammatory responses / Lisong Ai [and others]
The book represents a paradigm shift from the traditional static model of investigation of oxidative biology to the dynamic model of vascular oxidative stress. The investigation of vascular biology and cardiovascular medicine is made possible by the use of fluid dynamics, molecular signaling, genomic approach, tissue engineering, stem cell biology, and microfluidics. This is the first book to target a wide readership from academia to industry and government agencies in the field of cardiovascular diseases
Hemodynamics / physiology
Blood Circulation / physiology
Endothelium, Vascular / cytology
Mechanotransduction, Cellular / physiology
Models, Cardiovascular
Oxidative Stress / physiology
Blood Circulation / Physiology
Endothelium, Vascular / Cytology
Hemodynamics / Physiology
Mechanotransduction, Cellular / Physiology
Oxidative Stress / Physiology
Science
Physiology
Natural history
MEDICAL / Physiology bisacsh
SCIENCE / Life Sciences / Human Anatomy & Physiology bisacsh
Hemodynamics fast
Oxidative stress fast
Medizin
Naturwissenschaft
Hemodynamics
Oxidative stress
Hsiai, Tzung K. Sonstige oth
Blackman, Brett Sonstige oth
Jo, Hanjoong Sonstige oth
http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=374819 Aggregator Volltext
spellingShingle Hemodynamics and mechanobiology of endothelium
Hemodynamics / physiology
Blood Circulation / physiology
Endothelium, Vascular / cytology
Mechanotransduction, Cellular / physiology
Models, Cardiovascular
Oxidative Stress / physiology
Blood Circulation / Physiology
Endothelium, Vascular / Cytology
Hemodynamics / Physiology
Mechanotransduction, Cellular / Physiology
Oxidative Stress / Physiology
Science
Physiology
Natural history
MEDICAL / Physiology bisacsh
SCIENCE / Life Sciences / Human Anatomy & Physiology bisacsh
Hemodynamics fast
Oxidative stress fast
Medizin
Naturwissenschaft
Hemodynamics
Oxidative stress
title Hemodynamics and mechanobiology of endothelium
title_auth Hemodynamics and mechanobiology of endothelium
title_exact_search Hemodynamics and mechanobiology of endothelium
title_full Hemodynamics and mechanobiology of endothelium editors, Tzung K. Hsiai, Brett Blackman, Hanjoong Jo
title_fullStr Hemodynamics and mechanobiology of endothelium editors, Tzung K. Hsiai, Brett Blackman, Hanjoong Jo
title_full_unstemmed Hemodynamics and mechanobiology of endothelium editors, Tzung K. Hsiai, Brett Blackman, Hanjoong Jo
title_short Hemodynamics and mechanobiology of endothelium
title_sort hemodynamics and mechanobiology of endothelium
topic Hemodynamics / physiology
Blood Circulation / physiology
Endothelium, Vascular / cytology
Mechanotransduction, Cellular / physiology
Models, Cardiovascular
Oxidative Stress / physiology
Blood Circulation / Physiology
Endothelium, Vascular / Cytology
Hemodynamics / Physiology
Mechanotransduction, Cellular / Physiology
Oxidative Stress / Physiology
Science
Physiology
Natural history
MEDICAL / Physiology bisacsh
SCIENCE / Life Sciences / Human Anatomy & Physiology bisacsh
Hemodynamics fast
Oxidative stress fast
Medizin
Naturwissenschaft
Hemodynamics
Oxidative stress
topic_facet Hemodynamics / physiology
Blood Circulation / physiology
Endothelium, Vascular / cytology
Mechanotransduction, Cellular / physiology
Models, Cardiovascular
Oxidative Stress / physiology
Blood Circulation / Physiology
Endothelium, Vascular / Cytology
Hemodynamics / Physiology
Mechanotransduction, Cellular / Physiology
Oxidative Stress / Physiology
Science
Physiology
Natural history
MEDICAL / Physiology
SCIENCE / Life Sciences / Human Anatomy & Physiology
Hemodynamics
Oxidative stress
Medizin
Naturwissenschaft
url http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=374819
work_keys_str_mv AT hsiaitzungk hemodynamicsandmechanobiologyofendothelium
AT blackmanbrett hemodynamicsandmechanobiologyofendothelium
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