SAPHENOUS VEIN GRAFT PATENCY AFTER GEOMETRY REMODELING

Author:

BERNAD ELENA S.1,BERNAD SANDOR I.2,SARGAN IZABELLA1,CRAINA MARIUS L.1

Affiliation:

1. University of Medicine and Pharmacy “Victor Babes” Timisoara University Clinic “Bega” P-ta Eftimie Murgu 2, RO-300041, Timisoara, Romania

2. Romanian Academy, Timisoara Branch Centre for Fundamental and Advanced Technical Research Bd. Mihai Viteazul 24, RO-300223, Timisoara, Romania

Abstract

Tortuous saphenous vein graft (SVG) hemodynamics was investigated using computational fluid dynamics (CFD) techniques. Computed tomography (CT) technology is used for noninvasive bypass graft assessment seven days after surgery. CT investigation shows two regions with severe shape remodeling, one is an angle type contortion and the other one is a sharp curvature with tortuous area reduction. The numerical analysis carefully examines the effect of an SVG geometry remodeling through flow separation, particle deposition, and wall shear stress (WSS). During the cardiac cycle, overall pressure drop increases from 2.6[Formula: see text]mmHg to 4.4[Formula: see text]mmHg. In the accelerating part of the systolic phase, particles released in the inlet section move downstream toward the first narrowed part (elbow type contortion) with a helical motion. WSS range along the cardiac cycle varies from 2[Formula: see text]Pa to 42[Formula: see text]Pa, enough to damage the endothelial cells. Vessel torsion induced helical flow can reduce the flow disturbance and separation. Additionally, in the distal end of the graft, the high particle concentrations can promote the inflammatory processes in the vessels.

Publisher

World Scientific Pub Co Pte Lt

Subject

Biomedical Engineering

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Hemodynamic Analysis of Bifurcated Artery Using Computational Fluid Dynamics;Translating Healthcare Through Intelligent Computational Methods;2023

2. Wall shear stress evolution in carotid artery bifurcation;AIP Conference Proceedings;2017

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