Impact of bifurcation angle and other anatomical characteristics on blood flow - A computational study of non-stented and stented coronary arteries

被引:45
|
作者
Beier, Susann [1 ]
Ormiston, John [2 ]
Webster, Mark [3 ]
Cater, John [4 ]
Norris, Stuart [4 ]
Medrano-Gracia, Pau [1 ]
Young, Alistair [1 ]
Cowan, Brett [1 ]
机构
[1] Univ Auckland, Fac Med & Hlth Sci, Private Bag 92019, Auckland 1142, New Zealand
[2] Mercy Angiog, 98 Mt Rd, Auckland 1023, New Zealand
[3] Auckland City Hosp, Green Lane Cardiovasc Serv, Pk Rd, Auckland 1030, New Zealand
[4] Univ Auckland, Fac Engn, Private Bag 92019, Auckland 1142, New Zealand
关键词
Bifurcation angle; Computational fluid dynamics (CFD); Coronary artery disease; Hemodynamics; Stent; WALL SHEAR-STRESS; FLUID-DYNAMICS; ATHEROSCLEROTIC PLAQUE; NUMERICAL-SIMULATION; PULSATILE FLOW; LESIONS; INTERVENTION; GEOMETRY; DISEASE; STATE;
D O I
10.1016/j.jbiomech.2016.03.038
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The hemodynamic influence of vessel shape such as bifurcation angle is not fully understood with clinical and quantitative observations being equivocal. The aim of this study is to use computational modeling to study the hemodynamic effect of shape characteristics, in particular bifurcation angle (BA), for non-stented and stented coronary arteries. Nine bifurcations with angles of 40 degrees, 60 degrees and 80 degrees, representative of +/- 1 SD of 101 asymptomatic computed tomography angiogram cases (average age 54 +/- 8 years; 57 females), were generated for (1) a non-stented idealized, (2) stented idealized, and (3) non-stented patient-specific geometry. Only the bifurcation angle was changed while the geometries were constant to eliminate flow effects induced by other vessel shape characteristics. The commercially available Biomatrix stent was used as a template and virtually inserted into each branch, simulating the T-stenting technique. Three patient-specific geometries with additional shape variation and 2 +/- SD BA variation (33 degrees, 42 degrees and 117 degrees) were also computed. Computational fluid dynamics (CFD) analysis was performed for all 12 geometries to simulate physiological conditions, enabling the quantification of the hemodynamic stress distributions, including a threshold analysis of adversely low and high wall shear stress (WSS), low time-averaged WSS (TAWSS), high spatial WSS gradient (WSSG) and high Oscillatory Shear Index (OSI) area. The bifurcation angle had a minor impact on the areas of adverse hemodynamics in the idealized non-stented geometries, which fully disappeared once stented and was not apparent for patient geometries. High WSS regions were located close to the carina around peak-flow, and WSSG increased significantly after stenting for the idealized bifurcations. Additional shape variations affected the hemodynamic profiles, suggesting that BA alone has little effect on a patient's hemodynamic profile. Incoming flow angle, diameter and tortuosity appear to have stronger effects. This suggests that other bifurcation shape characteristics and stent placement/strategy may be more important than bifurcation angle in atherosclerotic disease development, progression, and stent outcome. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1570 / 1582
页数:13
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