TY - GEN
T1 - Hemodynamics of Intracranial Aneurysms Following Various Stent Implantations
AU - Zhan, Tongyu
AU - Fan, Zhenmin
AU - Dong, Lijun
AU - Liu, Kailei
AU - Ye, Xia
AU - Deng, Xiaoyan
N1 - Publisher Copyright:
© The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2024.
PY - 2024
Y1 - 2024
N2 - Stent implantation is widely used for treating intracranial aneurysms, with the configuration of the stent critically influencing the hemodynamic characteristics within the aneurysm and thereby affecting its sealing efficiency. This research aims to explore the hemodynamic implications (including blood flow, wall pressure, and wall shear stress) of stent implantation on an idealized anterior cerebral artery following various stent interventions, and to compare the outcomes of aneurysm sealing after different stent placements. The study reveals that partially compressed stent implantation elevates the levels of velocity, pressure, and wall shear stress within the aneurysm in comparison to straight stent placement. Furthermore, as the compression of the stent increases, so does the velocity and wall shear stress within the aneurysm. The use of locally bulging stents also worsens the hemodynamic conditions within the aneurysm relative to straight stent implantation. However, the study also demonstrates that divergent cone stents effectively reduce flow and pressure within the aneurysm when compared to straight stents. It is therefore crucial to consider the potential effects of local incomplete expansion or bulging of the stent on the effectiveness of aneurysm sealing, as well as to adopt measures to prevent stent deformation after placement. Employing a tapered stent might provide a more optimal solution for treating intracranial aneurysms.
AB - Stent implantation is widely used for treating intracranial aneurysms, with the configuration of the stent critically influencing the hemodynamic characteristics within the aneurysm and thereby affecting its sealing efficiency. This research aims to explore the hemodynamic implications (including blood flow, wall pressure, and wall shear stress) of stent implantation on an idealized anterior cerebral artery following various stent interventions, and to compare the outcomes of aneurysm sealing after different stent placements. The study reveals that partially compressed stent implantation elevates the levels of velocity, pressure, and wall shear stress within the aneurysm in comparison to straight stent placement. Furthermore, as the compression of the stent increases, so does the velocity and wall shear stress within the aneurysm. The use of locally bulging stents also worsens the hemodynamic conditions within the aneurysm relative to straight stent implantation. However, the study also demonstrates that divergent cone stents effectively reduce flow and pressure within the aneurysm when compared to straight stents. It is therefore crucial to consider the potential effects of local incomplete expansion or bulging of the stent on the effectiveness of aneurysm sealing, as well as to adopt measures to prevent stent deformation after placement. Employing a tapered stent might provide a more optimal solution for treating intracranial aneurysms.
KW - Anterior cerebral artery aneurysm
KW - Computational fluid dynamics
KW - Hemodynamics
KW - Stent
KW - Stent
UR - https://www.scopus.com/pages/publications/85219201753
U2 - 10.1007/978-981-96-0188-2_7
DO - 10.1007/978-981-96-0188-2_7
M3 - 会议稿件
AN - SCOPUS:85219201753
SN - 9789819601875
T3 - Communications in Computer and Information Science
SP - 78
EP - 90
BT - Advancement in Computational Methods for Life Systems Modelling and Simulation - 8th International Conference on Life System Modeling and Simulation, LSMS 2024 and 8th International Conference on Intelligent Computing for Sustainable Energy and Environment, ICSEE 2024, Proceedings
A2 - Fei, Minrui
A2 - Niu, Qun
A2 - Li, Xin
A2 - Wu, Hongjie
A2 - Zhang, Jingjing
PB - Springer Science and Business Media Deutschland GmbH
T2 - 8th International Conference on Life System Modeling and Simulation, LSMS 2024 and 8th International Conference on Intelligent Computing for Sustainable Energy and Environment, ICSEE 2024
Y2 - 13 September 2024 through 15 September 2024
ER -