首页> 外文期刊>Neurological Research: An Interdisciplinary Quarterly Journal >Influence of stent properties on the alteration of cerebral intra-aneurysmal haemodynamics: flow quantification in elastic sidewall aneurysm models.
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Influence of stent properties on the alteration of cerebral intra-aneurysmal haemodynamics: flow quantification in elastic sidewall aneurysm models.

机译:支架性质对脑动脉瘤内血流动力学改变的影响:弹性侧壁动脉瘤模型中的血流定量。

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OBJECTIVES: Stent implantation across the neck of cerebral aneurysms may induce intra-aneurysmal flow reduction, and consequently saccular thrombosis and vessel wall repair. To analyse the influence of different stent parameters on such flow reduction, we studied the flow changes in vascular models, induced by a series of stents. METHODS: Two different neck-sized elastic sidewall aneurysm models were connected to a circulatory loop. Twenty different stents were introduced in both models to analyse the effect of their parameters, such as porosity, filament diameter and permeability. Flow patterns were visualized by using glass particles and laser sheet translumination. The digitally recorded data were transferred for computer analysis. The changes of the vortex velocity for each stent model combination were investigated and statistically evaluated. RESULTS: Intra-aneurysmal flow analysis showed dispersion of the vortices of a variable degree, and velocity reduction of 30% mean in model 1 and 49% mean inmodel 2. By statistical analysis three groups of stents ('best', 'medium', 'worst') were identified, according to their haemodynamic efficacy. No correlations were observed between the haemodynamic performance of the stents and the porosity, filament diameter and permeability values separately. The stent effects were on average more important in the large-necked than in the small-necked aneurysm model. DISCUSSION: Stent implantation induces intra-aneurysmal loss of vortex coherence and flow reduction. The analysed stent parameters show complex interrelationship, including also stent 'design'. The difference in the haemodynamic efficacy of the individual stents between the two models raises the question of 'stent positioning effects'.
机译:目的:将支架植入脑动脉瘤的颈部可能会导致动脉瘤内血流减少,从而导致囊状血栓形成和血管壁修复。为了分析不同支架参数对这种流量减少的影响,我们研究了由一系列支架引起的血管模型中的流量变化。方法:将两个不同的颈部大小的弹性侧壁动脉瘤模型连接到循环回路。在两个模型中都引入了20种不同的支架,以分析其参数的影响,例如孔隙率,细丝直径和渗透率。通过使用玻璃颗粒和激光片半透明显示流动模式。将数字记录的数据传输进行计算机分析。研究了每种支架模型组合的涡旋速度变化并进行了统计评估。结果:动脉瘤内血流分析显示涡流的分散程度不同,模型1的平均速度降低30%,模型2的平均速度降低49%。通过统计分析,三组支架(“最佳”,“中”,根据其血流动力学功效确定“最差”)。支架的血液动力学性能与孔隙率,细丝直径和渗透率值之间没有相关性。平均而言,大颈动脉瘤模型的支架作用比小颈动脉瘤模型重要。讨论:支架植入可引起动脉瘤内涡旋连贯性的丧失和血流的减少。分析的支架参数显示出复杂的相互关系,包括支架“设计”。两种模型之间单个支架的血液动力学功效的差异提出了“支架定位效应”的问题。

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