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PMID: 20166238 Published · ppublish English Journal Article

Minimisation of the wall shear stress gradients in bypass grafts anastomoses using meshless CFD and genetic algorithms optimisation.

Computer methods in biomechanics and biomedical engineering ·Vol. 13 ·No. 1 ·2010-02-00 ·页码 35-47

El Zahab Z, Divo E, Kassab A

Abstract

The wall shear stress (WSS) spatial and temporal gradients are two hemodynamics parameters correlated with endothelial damage. Those two gradients become well pronounced in a bypass graft anastomosis geometry where the blood flow patterns are quite disturbed. The WSS gradient minimisation on the host artery floor can be achieved by optimising the anastomosis shape and hence may lead to an improved long-term post-surgical performance of the graft. The anastomosis shape optimisation can be executed via an integrated computational tool comprised of a meshless computational fluid dynamics (CFD) solver and a genetic algorithm (GA) shape optimiser. The meshless CFD solver serves to evaluate the WSS gradients and the GA optimiser serves to search for the end-to-side distal anastomosis (ETSDA) optimal shape that best minimises those gradients. We utilise a meshless CFD method to resolve hemodynamics and a GA for the purpose of optimisation. We consider three different anastomotic models: the conventional ETSDA, the Miller Cuff ETSDA and the hood ETSDA. The results reported herein demonstrate that the graft calibre should always be maximised whether a conventional or Miller Cuff ETSDA model is utilised. Also, it was noted that the Miller Cuff height should be minimised. The choice of an optimal anastomotic angle should be optimised to achieve a compromise between the concurrent minimisations of both the spatial WSS gradient and the temporal WSS gradient.

MeSH 主题词
Algorithms Anastomosis, Surgical/methods Biomedical Engineering Computer Simulation Hemodynamics Hemorheology Humans Hyperplasia Models, Cardiovascular Peripheral Vascular Diseases/pathology,physiopathology,surgery Tunica Intima/pathology
作者与单位
共 3 位作者,点击展开单位 / ORCID
El Zahab Zaher
Department of Mechanical, Materials and Aerospace Engineering, University of Central Florida, Orlando, FL, USA.
Divo Eduardo
Kassab Alain
Article Info
Journal
Computer methods in biomechanics and biomedical engineering
Abbr.
Comput Methods Biomech Biomed Engin
ISSN
1476-8259
Published
2010-02-00
页码
35-47
Language
English
Country/Region
England
NLM ID
9802899
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