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Connective Tissue Research
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April 11, 2003
Viscoelastic properties of self-assembled type I collagen fibers: molecular basis of elastic and viscous behaviors
Frederick H Silver, Ali Ebrahimi, Patrick B Snowhill
Annals of Biomedical Engineering
|
September 16, 2003
Mechanical behavior of vessel wall: a comparative study of aorta, vena cava, and carotid artery
Frederick H Silver, Patrick B Snowhill, David J Foran
The Breast Journal
|
May 12, 2001
LETTER TO THE EDITOR
Patrick B. Snowhill, Frederick H. Silver, Robert M. Olson
Connective Tissue Research
|
April 15, 2010
A link between stent radial forces and vascular wall remodeling: the discovery of an optimal stent radial force for minimal vessel restenosis
Joseph W Freeman, Patrick B Snowhill, John L Nosher
AJNR. American Journal of Neuroradiology
|
April 16, 2002
Interaction of vascular smooth muscle cells with collagen-impregnated embolization coils studied with a novel quantitative in vitro model
Todd Abruzzo, Harry J Cloft, Miroslav Marek, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 5) with videos related to
Sort By:
Page
of 1
Connective Tissue Research
|
April 11, 2003
Viscoelastic properties of self-assembled type I collagen fibers: molecular basis of elastic and viscous behaviors
Frederick H Silver, Ali Ebrahimi, Patrick B Snowhill
Annals of Biomedical Engineering
|
September 16, 2003
Mechanical behavior of vessel wall: a comparative study of aorta, vena cava, and carotid artery
Frederick H Silver, Patrick B Snowhill, David J Foran
The Breast Journal
|
May 12, 2001
LETTER TO THE EDITOR
Patrick B. Snowhill, Frederick H. Silver, Robert M. Olson
Connective Tissue Research
|
April 15, 2010
A link between stent radial forces and vascular wall remodeling: the discovery of an optimal stent radial force for minimal vessel restenosis
Joseph W Freeman, Patrick B Snowhill, John L Nosher
AJNR. American Journal of Neuroradiology
|
April 16, 2002
Interaction of vascular smooth muscle cells with collagen-impregnated embolization coils studied with a novel quantitative in vitro model
Todd Abruzzo, Harry J Cloft, Miroslav Marek, et al.
Page
of 1