Experimental Investigation of Blood Flow in the Vertebral Artery Bifurcation

被引:0
|
作者
Zhu, G. Y. [1 ]
Yuan, Q. [1 ]
Chen, Z. [1 ]
机构
[1] Xi An Jiao Tong Univ, Sch Energy & Power Engn, Xian 710049, Peoples R China
关键词
In-vitro and in-vivo prototype development; Modelling and simulation; PIV; SHEAR-STRESS; ATHEROSCLEROSIS; MODEL;
D O I
暂无
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Background: The prone sites of cerebral atherosclerosis are located at the artery bifurcations of the Circle of Willis. Hemodynamic parameters of wall shear stress, vortex and secondary flow play an important role in the initiation, growth and rupture of the atherosclerosis, so investigate the hemodynamic characteristics will help us to understand the atherosclerosis better. Some numerical and experimental studies were carried out at the ICA and MCA bifurcation. However, none of them are focus on the VA bifurcation, where is also prone to atherosclerosis. Method: In this study, in order to investigate the hemodynamic characteristics in VA-BA bifurcation, the Particle Image Velocity (PIV) technique was applied to a scaled-up transparent patient-specific phantom, which is reconstructed from CT angiography (CTA) images and fabricated with rapid prototyping technique. A water-glycerin mixture was used to simulate the viscosity of blood and matched the refractive index of the flow phantom. The experiment was carried out under steady flow conditions of Re=300, Re=500. Results: The experimental results showed that a low wall shear stress and low fluid momentum region was in the bifurcation and right wall of BA. The wall shear stress in these areas was less than 0.4 Pa. Meanwhile, a strong secondary flow was observed at the bifurcate site. These results support the hypothesis that low shear stress(less than 0.4 Pa) is vital in the formation of plaque and thrombosis. Secondary flow at the downstream may rollback some blood through the high shear stress area repeatedly and causes the damage of the ingredients of blood; subsequently speed up the development of plaque.
引用
收藏
页码:1346 / 1349
页数:4
相关论文
共 50 条
  • [31] Carotid duplex with contralateral disease: The influence of vertebral artery blood flow
    Welch, HJ
    Murphy, MC
    Raftery, KB
    Jewell, ER
    ANNALS OF VASCULAR SURGERY, 2000, 14 (01) : 82 - 88
  • [32] REVERSAL OF VERTEBRAL ARTERY BLOOD-FLOW DEMONSTRATED BY DOPPLER ULTRASOUND
    CORSON, JD
    MENZOIAN, JO
    LOGERFO, FW
    ARCHIVES OF SURGERY, 1977, 112 (06) : 715 - 719
  • [33] Vertebral Artery Hypoplasia Frequency and Effect on Cerebellar Blood Flow Characteristics
    Thierfelder, Kolja M.
    Baumann, Alena B.
    Sommer, Wieland H.
    Armbruster, Marco
    Opherk, Christian
    Janssen, Hendrik
    Reiser, Maximilian F.
    Straube, Andreas
    von Baumgarten, Louisa
    STROKE, 2014, 45 (05) : 1363 - 1368
  • [34] The age-related reduction in cerebral blood flow affects vertebral artery more than internal carotid artery blood flow
    Olesen, Niels D.
    Nielsen, Henning B.
    Olsen, Niels, V
    Secher, Niels H.
    CLINICAL PHYSIOLOGY AND FUNCTIONAL IMAGING, 2019, 39 (04) : 255 - 260
  • [35] RETROGRADE FLOW IN VERTEBRAL ARTERY
    GONZALEZ, LL
    WIOT, JF
    BOYD, AD
    ARCHIVES OF SURGERY, 1965, 91 (01) : 185 - &
  • [36] Effect of premanipulative tests on vertebral artery and internal carotid artery blood flow: A pilot study
    Rivett, DA
    Sharples, KJ
    Milburn, PD
    JOURNAL OF MANIPULATIVE AND PHYSIOLOGICAL THERAPEUTICS, 1999, 22 (06) : 368 - 375
  • [37] Effect of internal carotid artery occlusion on vertebral artery blood flow -: A duplex ultrasonographic evaluation
    Nicolau, C
    Gilabert, R
    García, A
    Blasco, J
    Chamorro, A
    Brú, C
    JOURNAL OF ULTRASOUND IN MEDICINE, 2001, 20 (02) : 105 - 111
  • [38] Study of common carotid artery, vertebral artery blood flow velocity in the circle of Willis variations
    Mizuno, S.
    Tsutsumi, Y.
    Moriya, S.
    Toi, S.
    Adachi, U.
    Kitagawa, K.
    INTERNATIONAL JOURNAL OF STROKE, 2014, 9 : 328 - 328
  • [39] Experimental investigation on fire smoke bifurcation flow in longitudinal ventilated tunnels
    Zhao, Shengzhong
    Liu, Fang
    Wang, Jun
    Obadi, Imad
    Weng, Miaocheng
    Xu, Tiantian
    FIRE AND MATERIALS, 2020, 44 (05) : 648 - 659
  • [40] Corrigendum to “Finite element simulation of blood flow in a flexible carotid artery bifurcation”
    Sang Hoon Lee
    Hyoung Gwon Choi
    Jung Yul Yoo
    Journal of Mechanical Science and Technology, 2012, 26 : 3369 - 3369