Literature DB >> 17012350

Hemodynamics in the mouse aortic arch as assessed by MRI, ultrasound, and numerical modeling.

Akiva Feintuch1, Permyos Ruengsakulrach, Amy Lin, Ji Zhang, Yu-Qing Zhou, Jonathon Bishop, Lorinda Davidson, David Courtman, F Stuart Foster, David A Steinman, R Mark Henkelman, C Ross Ethier.   

Abstract

Mice are widely used to study arterial disease in humans, and the pathogenesis of arterial diseases is known to be strongly influenced by hemodynamic factors. It is, therefore, of interest to characterize the hemodynamic environment in the mouse arterial tree. Previous measurements have suggested that many relevant hemodynamic variables are similar between the mouse and the human. Here we use a combination of Doppler ultrasound and MRI measurements, coupled with numerical modeling techniques, to characterize the hemodynamic environment in the mouse aortic arch at high spatial resolution. We find that the hemodynamically induced stresses on arterial endothelial cells are much larger in magnitude and more spatially uniform in the mouse than in the human, an effect that can be explained by fluid mechanical scaling principles. This surprising finding seems to be at variance with currently accepted models of the role of hemodynamics in atherogenesis and the known distribution of atheromatous lesions in mice.

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Year:  2006        PMID: 17012350     DOI: 10.1152/ajpheart.00796.2006

Source DB:  PubMed          Journal:  Am J Physiol Heart Circ Physiol        ISSN: 0363-6135            Impact factor:   4.733


  38 in total

1.  Fluid Mechanics, Arterial Disease, and Gene Expression.

Authors:  John M Tarbell; Zhong-Dong Shi; Jessilyn Dunn; Hanjoong Jo
Journal:  Annu Rev Fluid Mech       Date:  2014-01       Impact factor: 18.511

2.  Relationship between hemodynamics and atherosclerosis in aortic arches of apolipoprotein E-null mice on 129S6/SvEvTac and C57BL/6J genetic backgrounds.

Authors:  Hirofumi Tomita; John Hagaman; Morton H Friedman; Nobuyo Maeda
Journal:  Atherosclerosis       Date:  2011-10-21       Impact factor: 5.162

3.  Replacing vascular corrosion casting by in vivo micro-CT imaging for building 3D cardiovascular models in mice.

Authors:  Bert Vandeghinste; Bram Trachet; Marjolijn Renard; Christophe Casteleyn; Steven Staelens; Bart Loeys; Patrick Segers; Stefaan Vandenberghe
Journal:  Mol Imaging Biol       Date:  2011-02       Impact factor: 3.488

4.  Effects of severity and location of stenosis on the hemodynamics in human aorta and its branches.

Authors:  Mahsa Dabagh; Paritosh Vasava; Payman Jalali
Journal:  Med Biol Eng Comput       Date:  2015-03-01       Impact factor: 2.602

5.  Flow interactions with cells and tissues: cardiovascular flows and fluid-structure interactions. Sixth International Bio-Fluid Mechanics Symposium and Workshop, March 28-30, 2008, Pasadena, California.

Authors:  Morton H Friedman; Rob Krams; Krishnan B Chandran
Journal:  Ann Biomed Eng       Date:  2010-03       Impact factor: 3.934

Review 6.  Patient-specific modeling of cardiovascular mechanics.

Authors:  C A Taylor; C A Figueroa
Journal:  Annu Rev Biomed Eng       Date:  2009       Impact factor: 9.590

7.  Effect of Reynolds number and flow division on patterns of haemodynamic wall shear stress near branch points in the descending thoracic aorta.

Authors:  A Kazakidi; S J Sherwin; P D Weinberg
Journal:  J R Soc Interface       Date:  2008-09-23       Impact factor: 4.118

8.  Contribution of macromolecular structure to the retention of low-density lipoprotein at arterial branch points.

Authors:  Gina P Kwon; Jamie L Schroeder; Marcelo J Amar; Alan T Remaley; Robert S Balaban
Journal:  Circulation       Date:  2008-05-27       Impact factor: 29.690

Review 9.  Emerging role of Toll-like receptors in atherosclerosis.

Authors:  Linda K Curtiss; Peter S Tobias
Journal:  J Lipid Res       Date:  2008-11-01       Impact factor: 5.922

10.  Poly(vinyl alcohol) gel ultrasound phantom with durability and visibility of internal flow.

Authors:  Kenichi Funamoto; Osamu Yamashita; Toshiyuki Hayase
Journal:  J Med Ultrason (2001)       Date:  2014-08-05       Impact factor: 1.314

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