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Influence of different computational approaches for stent deployment on cerebral aneurysm haemodynamics

机译:支架部署的不同计算方法对脑动脉瘤血流动力学的影响

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摘要

Cerebral aneurysms are abnormal focal dilatations of artery walls. The interest in virtual tools to help clinicians to value the effectiveness of different procedures for cerebral aneurysm treatment is constantly growing. This study is focused on the analysis of the influence of different stent deployment approaches on intra-aneurysmal haemodynamics using computational fluid dynamics (CFD). A self-expanding stent was deployed in an idealized aneurysmatic cerebral vessel in two initial positions. Different cases characterized by a progression of simplifications on stent modelling (geometry and material) and vessel material properties were set up, using finite element and fast virtual stenting methods. Then, CFD analysis was performed for untreated and stented vessels. Haemodynamic parameters were analysed qualitatively and quantitatively, comparing the cases and the two initial positions. All the cases predicted a reduction of average wall shear stress and average velocity of almost 50 per cent after stent deployment for both initial positions. Results highlighted that, although some differences in calculated parameters existed across the cases based on the modelling simplifications, all the approaches described the most important effects on intra-aneurysmal haemodynamics. Hence, simpler and faster modelling approaches could be included in clinical workflow and, despite the adopted simplifications, support clinicians in the treatment planning.
机译:脑动脉瘤是动脉壁的异常局灶性扩张。对虚拟工具的兴趣正在不断增长,以帮助临床医生评估脑动脉瘤治疗不同程序的有效性。这项研究的重点是使用计算流体力学(CFD)分析不同支架部署方法对动脉瘤内血流动力学的影响。在理想的动脉瘤脑血管的两个初始位置部署了一个自扩张式支架。使用有限元和快速虚拟支架方法,建立了以简化支架模型(几何形状和材料)和血管材料特性为特征的不同案例。然后,对未处理和置入支架的血管进行CFD分析。定性和定量分析血流动力学参数,比较病例和两个初始位置。所有病例都预言了在两个初始位置均展开支架后,平均壁切应力和平均速度将降低近50%。结果强调,尽管基于简化的模型,案例之间在计算参数上存在一些差异,但所有方法均描述了对动脉瘤内血流动力学的最重要影响。因此,可以将更简单,更快速的建模方法包括在临床工作流程中,并且尽管采取了简化措施,但仍支持临床医生进行治疗计划。

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