Title :
Effects of Stenosis on the Porcine Left Anterior Descending Arterial Tree
Author :
Liang Zhong ; Boyang Su ; Jun-Mei Zhang ; Yunlong Huo ; Hwa Liang Leo ; Kassab, Ghassan S. ; Ru San Tan
Author_Institution :
Cardiac Mech. Eng. & Physiol. Unit, Nat. Heart Center, Singapore, Singapore
Abstract :
In this study, hemodynamics in the normal and diseased left anterior descending (LAD) arterial trees were compared to estimate the effects of stenosis on the flow rate distribution, detailed flow field and wall shear stress (WSS) distributions on both transient and steady flow conditions. The anatomical model was reconstructed from computed tomography (CT) images of a normal porcine heart. Stenosis was imposed at the trunk of LAD tree with different area stenosis ratios (25%, 50%, 75% and 90%) to study the effect of stenosis. It has been found that the steady-state simulation is competent to demonstrate the prominent flow features of transit flow. Only significant stenosis altered the flow rate considerably, and its effects diminished at the downstream bifurcations. Based on the WSS distribution, non-significant stenosis potentially led to the development of atherosclerosis near the ostium of the downstream side branch and significant stenosis might promote atherosclerosis in its wake.
Keywords :
cardiology; computerised tomography; diseases; haemodynamics; image reconstruction; medical image processing; atherosclerosis; computed tomography images; flow field distribution; flow rate distribution; hemodynamics; image reconstruction; porcine heart; porcine left anterior descending arterial tree; steady flow condition; steady-state simulation; stenosis; transient flow condition; wall shear stress distribution; Arteries; Atherosclerosis; Boundary conditions; Computational fluid dynamics; Heart; Physiology; Solid modeling;
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2013 35th Annual International Conference of the IEEE
Conference_Location :
Osaka
DOI :
10.1109/EMBC.2013.6610389