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PMID: 15531564 Published · ppublish English Evaluation Study Journal Article Research Support, N.I.H., Extramural Research Support, U.S. Gov't, P.H.S.

Circumferential vascular deformation after stent implantation alters wall shear stress evaluated with time-dependent 3D computational fluid dynamics models.

Journal of applied physiology (Bethesda, Md. : 1985) ·Vol. 98 ·No. 3 ·2005-03-00 ·页码 947-57

LaDisa JF, Olson LE, Guler I, Hettrick DA, Kersten JR, Warltier DC, Pagel PS

Abstract

The success of vascular stents in the restoration of blood flow is limited by restenosis. Recent data generated from computational fluid dynamics (CFD) models suggest that stent geometry may cause local alterations in wall shear stress (WSS) that have been associated with neointimal hyperplasia and subsequent restenosis. However, previous CFD studies have ignored histological evidence of vascular straightening between circumferential stent struts. We tested the hypothesis that consideration of stent-induced vascular deformation may more accurately predict alterations in indexes of WSS that may subsequently account for histological findings after stenting. We further tested the hypothesis that the severity of these alterations in WSS varies with the degree of vascular deformation after implantation. Steady-state and time-dependent simulations of three-dimensional CFD arteries based on canine coronary artery measurements of diameter and blood flow were conducted, and WSS and WSS gradients were calculated. Circumferential straightening introduced areas of high WSS between stent struts that were absent in stented vessels of circular cross section. The area of vessel exposed to low WSS was dependent on the degree of circumferential vascular deformation and axial location within the stent. Stents with four vs. eight struts increased the intrastrut area of low WSS in vessels, regardless of cross-sectional geometry. Elevated WSS gradients were also observed between struts in vessels with polygonal cross sections. The results obtained using three-dimensional CFD models suggest that changes in vascular geometry after stent implantation are important determinants of WSS distributions that may be associated with subsequent neointimal hyperplasia.

MeSH 主题词
Animals Arteries/pathology,physiopathology,surgery Blood Flow Velocity Blood Pressure Blood Vessel Prosthesis/adverse effects Computer Simulation Elasticity Equipment Failure Analysis/methods Graft Occlusion, Vascular/etiology,pathology,physiopathology Humans Hyperplasia/etiology,pathology,physiopathology Models, Cardiovascular Prosthesis Failure Severity of Illness Index Shear Strength Stents/adverse effects Stress, Mechanical Time Factors
作者与单位
共 7 位作者,点击展开单位 / ORCID
LaDisa John F
Department of Biomedical Engineering, Marquette University, Milwaukee, Wisconsin, USA.
Olson Lars E
Guler Ismail
Hettrick Douglas A
Kersten Judy R
Warltier David C
Pagel Paul S
Article Info
Journal
Journal of applied physiology (Bethesda, Md. : 1985)
Abbr.
J Appl Physiol (1985)
ISSN
8750-7587
Published
2005-03-00
电子出版
2004-00-05
页码
947-57
Language
English
Country/Region
United States
NLM ID
8502536
基金资助
NIGMS NIH HHS · GM-08377 · United States
NHLBI NIH HHS · HL-03690 · United States
NHLBI NIH HHS · HL-54820 · United States
NHLBI NIH HHS · HL-63705 · United States
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