The influence of strut-connectors in stented vessels: a comparison of pulsatile flow through five coronary stents


Pant, Sanjay, Bressloff, Neil W., Forrester, Alexander I.J. and Curzen, Nick (2010) The influence of strut-connectors in stented vessels: a comparison of pulsatile flow through five coronary stents. Annals of Biomedical Engineering, 38, (5), 1893-1907. (doi:10.1007/s10439-010-9962-0).

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Description/Abstract

The design of coronary stents has evolved significantly over the past two decades. However, they still face the problem of in-stent restenosis, formation of neointima within 12 months of the implant. The biological response after stent implantation depends on various factors including the stent geometry which alters the hemodynamics. This study takes five different coronary stent designs, used in clinical practice, and explores the hemodynamic differences arising due to the difference in their design. Of particular interest is the design of the segments (connectors) that connect two struts.

Pulsatile blood flow analysis is performed for each stent, using 3-D computational fluid dynamics (CFD), and various flow features viz. recirculation zones, velocity profiles, wall shear stress (WSS) patterns, and oscillatory shear indices are extracted for comparison. Vessel wall regions with abnormal flow features, particularly low, reverse, and oscillating WSS, are usually more susceptible to restenosis. Unlike previous studies, which have tried to study the effect of design parameters such as strut thickness and strut spacing on hemodynamics, this work investigates the differences in the flow arising purely due to differences in stent-shape, other parameters being similar. Two factors, the length of the connectors in the cross-flow direction and their alignment with the main flow, are found to affect the hemodynamic performance. This study also formulates a design index (varying from 18.81% to 24.91% for stents used in this study) that quantifies the flow features that could affect restenosis rates and which, in future, could be used for optimization studies.

Item Type: Article
ISSNs: 0090-6964 (print)
1573-9686 (electronic)
Related URLs:
Keywords: stents, restenosis, computational fluid dynamics, coronary artery, pulsatile blood flow
Subjects: R Medicine > R Medicine (General)
Divisions: University Structure - Pre August 2011 > School of Medicine > Developmental Origins of Health and Disease
Item ID: 152515
Date Deposited: 14 May 2010 13:48
Last Modified: 24 Jul 2012 00:33
Contributors: Pant, Sanjay (Author)
Bressloff, Neil W. (Author)
Forrester, Alexander I.J. (Author)
Curzen, Nick (Author)
Date: 23 February 2010
Status: Published
URI: http://eprints.soton.ac.uk/id/eprint/152515

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