Literature DB >> 12757808

Experimental study of laminar blood flow through an artery treated by a stent implantation: characterisation of intra-stent wall shear stress.

Nicolas Benard1, Damien Coisne, Erwan Donal, Robert Perrault.   

Abstract

The stimulation of endothelial cells by arterial wall shear stress (WSS) plays a central role in restenosis. The fluid-structure interaction between stent wire and blood flow alters the WSS, particularly between stent struts. We have designed an in vitro model of struts of an intra-vascular prosthesis to study blood flow through a 'stented' section. The experimental artery consisted of a transparent square section test vein, which reproduced the strut design (100x magnifying power). A programmable pump was used to maintain a steady blood flow. Particle image velocimetry method was used to measure the flow between and over the stent branches, and to quantify WSS. Several prosthesis patterns that were representative of the total stent strut geometry were studied in a greater detail. We obtained WSS values of between -1.5 and 1.5Pa in a weak SS area which provided a source of endothelial stimulation propitious to restenosis. We also compared two similar patterns located in two different flow areas (one at the entry of the stent and one further downstream). We only detected a slight difference between the weakest SS levels at these two sites. As the endothelial proliferation is greatly influenced by the SS, knowledge of the SS modification induced by the stent implantation could be of importance for intra-vascular prostheses design optimisation and thus can help to reduce the restenosis incidence rate.

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Year:  2003        PMID: 12757808     DOI: 10.1016/s0021-9290(03)00068-x

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  8 in total

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2.  Luminal flow patterns dictate arterial drug deposition in stent-based delivery.

Authors:  Vijaya B Kolachalama; Abraham R Tzafriri; Davis Y Arifin; Elazer R Edelman
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3.  Comparison of two stents in modifying cerebral aneurysm hemodynamics.

Authors:  Minsuok Kim; Dale B Taulbee; Markus Tremmel; Hui Meng
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Review 4.  Endovascular stent-induced alterations in host artery mechanical environments and their roles in stent restenosis and late thrombosis.

Authors:  Jinxuan Wang; Xuepu Jin; Yuhua Huang; Xiaolin Ran; Desha Luo; Dongchuan Yang; Dongyu Jia; Kang Zhang; Jianhua Tong; Xiaoyan Deng; Guixue Wang
Journal:  Regen Biomater       Date:  2018-05-02

5.  In-stent Stenosis after p64 Flow Diverter Treatment.

Authors:  M Aguilar Pérez; P Bhogal; E Henkes; O Ganslandt; H Bäzner; H Henkes
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6.  Safety Evaluation and Flow Modification in the Anterior Cerebral Artery after Pipeline Embolization Device Deployment across the Internal Carotid Artery Terminus.

Authors:  Chao Xu; Pei Wu; Jianyi Han; Bowen Sun; Chunlei Wang; Shancai Xu; Bin Luo; Xinjian Yang; Qingchun Mu; Huaizhang Shi
Journal:  Biomed Res Int       Date:  2021-08-21       Impact factor: 3.411

7.  Haemodynamic Analysis of Branched Endografts for Complex Aortic Arch Repair.

Authors:  Sampad Sengupta; Mohamad Hamady; Xiao-Yun Xu
Journal:  Bioengineering (Basel)       Date:  2022-01-18

8.  Integrating particle tracking with computational fluid dynamics to assess haemodynamic perturbation by coronary artery stents.

Authors:  Luke Boldock; Amanda Inzoli; Silvia Bonardelli; Sarah Hsiao; Alberto Marzo; Andrew Narracott; Julian Gunn; Gabriele Dubini; Claudio Chiastra; Ian Halliday; Paul D Morris; Paul C Evans; Perrault C M
Journal:  PLoS One       Date:  2022-07-28       Impact factor: 3.752

  8 in total

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