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PMID: 25913485 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Analysis of flow dynamics in right ventricular outflow tract.

The Journal of surgical research ·Vol. 197 ·No. 1 ·2015-07-00 ·页码 50-7

Berdajs DA, Mosbahi S, Charbonnier D, Hullin R, von Segesser LK

Abstract

The mechanism behind early graft failure after right ventricular outflow tract (RVOT) reconstruction is not fully understood. Our aim was to establish a three-dimensional computational fluid dynamics (CFD) model of RVOT to investigate the hemodynamic conditions that may trigger the development of intimal hyperplasia and arteriosclerosis. Pressure, flow, and diameter at the RVOT, pulmonary artery (PA), bifurcation of the PA, and left and right PAs were measured in 10 normal pigs with a mean weight of 24.8 ± 0.78 kg. Data obtained from the experimental scenario were used for CFD simulation of pressure, flow, and shear stress profile from the RVOT to the left and right PAs. Using experimental data, a CFD model was obtained for 2.0 and 2.5-L/min pulsatile inflow profiles. In both velocity profiles, time and space averaged in the low-shear stress profile range from 0-6.0 Pa at the pulmonary trunk, its bifurcation, and at the openings of both PAs. These low-shear stress areas were accompanied to high-pressure regions 14.0-20.0 mm Hg (1866.2-2666 Pa). Flow analysis revealed a turbulent flow at the PA bifurcation and ostia of both PAs. Identified local low-shear stress, high pressure, and turbulent flow correspond to a well-defined trigger pattern for the development of intimal hyperplasia and arteriosclerosis. As such, this real-time three-dimensional CFD model may in the future serve as a tool for the planning of RVOT reconstruction, its analysis, and prediction of outcome.

Keywords
Computational fluid dynamics modeling Pulmonary artery Right ventricular outflow tract
MeSH 主题词
Animals Computer Simulation Heart Ventricles/physiopathology Hemorheology/physiology Hydrodynamics Models, Cardiovascular Pressure Pulmonary Artery/physiopathology Stress, Mechanical Sus scrofa Ventricular Outflow Obstruction/physiopathology
作者与单位
共 5 位作者,点击展开单位 / ORCID
Berdajs Denis A
Department of Surgery and Anesthesiology, Cardiovascular Research, University Hospital Lausanne, Lausanne, Switzerland. Electronic address: [email protected].
Mosbahi Selim
Department of Surgery and Anesthesiology, Cardiovascular Research, University Hospital Lausanne, Lausanne, Switzerland.
Charbonnier Dominique
CFS Engineering, Lausanne, Switzerland.
Hullin Roger
Department of Cardiology, University Hospital Lausanne, Lausanne, Switzerland.
von Segesser Ludwig K
Department of Surgery and Anesthesiology, Cardiovascular Research, University Hospital Lausanne, Lausanne, Switzerland.
Article Info
Journal
The Journal of surgical research
Abbr.
J Surg Res
ISSN
1095-8673
Corresponding email
Published
2015-07-00
电子出版
2015-00-14
页码
50-7
Language
English
Country/Region
United States
NLM ID
0376340
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