Literature DB >> 8850635

The influence of the angle of confluence on the flow in a vertebro-basilar junction model.

J Ravensbergen1, J K Krijger, B Hillen, H W Hoogstraten.   

Abstract

In earlier work, it was demonstrated that the flow in models of the vertebro-basilar junction is highly three-dimensional and the geometry exerts a strong influence on the hemodynamics. The morphology of the vertebro-basilar junction is very variable amongst individuals. In a study of 85 human vertebro-basilar junctions, the angle between the vertebral arteries varied between 10 and 160 degrees. To determine how the flow is influenced by this geometrical parameter, the flow is studied both experimentally, with laser Doppler velocimetry, and numerically, with a finite element package. A series of junction models is used with a range of confluence angles (45, 85 and 125 degrees). It appears that the angle of confluence has a strong influence on the structure and strength of the secondary flow field. The secondary velocities persist far downstream. Furthermore, near the apex, a region with low velocities is present. The larger the confluence angle is, the larger this region is, and even backflow may occur. In addition, the occurrence of atherosclerotic plaques in 85 human vertebro-basilar junctions is studied. Only one preferential location was found: the apex, the other plaques seem to be randomly distributed. The magnitude of the confluence angle of junctions with sharp-edged apices has a significant influence (p = 0.006) on the occurrence of a plaque at the apex. Apparently, a large confluence angle is a geometrical risk factor for atherosclerosis.

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Year:  1996        PMID: 8850635     DOI: 10.1016/0021-9290(95)00064-x

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  12 in total

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4.  Association between the vertebrobasilar artery geometry and basilar artery plaques determined by high-resolution magnetic resonance imaging.

Authors:  Jinmei Zheng; Bin Sun; Ruolan Lin; Yongqi Teng; Xihai Zhao; Yunjing Xue
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Authors:  Amanda K Wake-Buck; J Christopher Gatenby; John C Gore
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6.  Vertebral artery dominance contributes to basilar artery curvature and peri-vertebrobasilar junctional infarcts.

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7.  Interplay of Proximal Flow Confluence and Distal Flow Divergence in Patient-Specific Vertebrobasilar System.

Authors:  Xiaoping Yin; Xu Huang; Yundi Feng; Wenchang Tan; Huaijun Liu; Yunlong Huo
Journal:  PLoS One       Date:  2016-07-28       Impact factor: 3.240

8.  Relationship between the geometry patterns of vertebrobasilar artery and atherosclerosis.

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9.  PIV investigation of the flow fields in subject-specific vertebro-basilar (VA-BA) junction.

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