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通过伴有脑血管动脉瘤的分叉处的脉动血流。

Pulsatile flow through a bifurcation with a cerebrovascular aneurysm.

作者信息

Liou T M, Chang T W, Chang W C

机构信息

Department of Power Mechanical Engineering, National Tsing Hua University, Hsinchu, Taiwan, Republic of China.

出版信息

J Biomech Eng. 1994 Feb;116(1):112-8. doi: 10.1115/1.2895694.

Abstract

Laser-Doppler velocimetry measurements and flow visualization were complementarily made in pulsatile and steady flow in a cerebrovascular aneurysm model with bifurcation angles of 60, 90, and 140 deg, and volume-flow rate ratios between the branches of 1 to 1 and 3 to 1. The mean, peak, and minimal Reynolds numbers based on the bulk average velocity and diameter of the parent vessel were 600, 800, and 280, respectively. For uneven branch flow, it is found that the flow activity inside the aneurysm and the stresses acting on the aneurysmal wall increase with increasing bifurcation angle. More importantly, the present angle suggests the presence of a critical bifurcation angle below which the aneurysm is prone to thrombosis, whereas above which the aneurysm is susceptible to progression or rupture. For evenly distributed branch flow, the intra-aneurysmal flow is sluggish and therefore prone to thrombosis for all studied bifurcation angles.

摘要

在具有60度、90度和140度分叉角以及分支间体积流率比为1比1和3比1的脑血管动脉瘤模型中,对脉动流和稳定流进行了激光多普勒测速测量和流动可视化。基于母血管的总体平均速度和直径的平均、峰值和最小雷诺数分别为600、800和280。对于不均匀的分支流,发现动脉瘤内的流动活性和作用于动脉瘤壁的应力随着分叉角的增加而增加。更重要的是,目前的角度表明存在一个临界分叉角,低于该角度动脉瘤易于形成血栓,而高于该角度动脉瘤易进展或破裂。对于均匀分布的分支流,动脉瘤内的血流缓慢,因此对于所有研究的分叉角都易于形成血栓。

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