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通过放置自膨式支架改变动脉瘤内血流动力学。实验室研究。

Alteration of intraaneurysmal hemodynamics by placement of a self-expandable stent. Laboratory investigation.

作者信息

Tateshima Satoshi, Tanishita Kazuo, Hakata Yasuhiro, Tanoue Shin-ya, Viñuela Fernando

机构信息

Division of Interventional Neuroradiology, University of California, Los Angeles Medical Center and David Geffen School of Medicine, Department of Radiological Sciences, Los Angeles, California 90095-7437, USA.

出版信息

J Neurosurg. 2009 Jul;111(1):22-7. doi: 10.3171/2009.2.JNS081324.

Abstract

OBJECT

Development of a flexible self-expanding stent system and stent-assisted coiling technique facilitates endovascular treatment of wide-necked brain aneurysms. The hemodynamic effect of self-expandable stent placement across the neck of a brain aneurysm has not been well documented in patient-specific aneurysm models.

METHODS

Three patient-specific silicone aneurysm models based on clinical images were used in this study. Model 1 was constructed from a wide-necked internal carotid artery-ophthalmic artery aneurysm, and Models 2 and 3 were constructed from small wide-necked middle cerebral artery aneurysms. Neuroform stents were placed in the in vitro aneurysm models, and flow structures were compared before and after the stent placements. Flow velocity fields were acquired with particle imaging velocimetry.

RESULTS

In Model 1, a clockwise, single-vortex flow pattern was observed in the aneurysm dome before stenting was performed. There were multiple vortices, and a very small fast flow stream was newly formed in the aneurysm dome after stenting. The mean intraaneurysmal flow velocity was reduced by approximately 23-40%. In Model 2, there was a clockwise vortex flow in the aneurysm dome and another small counterclockwise vortex in the tip of the aneurysm dome before stenting. The small vortex area disappeared after stenting, and the mean flow velocity in the aneurysm dome was reduced by 43-64%. In Model 3, a large, counterclockwise, single vortex was seen in the aneurysm dome before stenting. Multiple small vortices appeared in the aneurysm dome after stenting, and the mean flow velocity became slower by 22-51%.

CONCLUSIONS

The flexible self-expandable stents significantly altered flow velocity and also flow structure in these aneurysms. Overall flow alterations by the stent appeared favorable for the long-term durability of aneurysm embolization. The possibility that the placement of a low-profile self-expandable stent might induce unfavorable flow patterns such as a fast flow stream in the aneurysm dome cannot be excluded.

摘要

目的

开发一种可弯曲的自膨式支架系统及支架辅助弹簧圈栓塞技术,以促进宽颈脑动脉瘤的血管内治疗。在特定患者的动脉瘤模型中,关于自膨式支架跨脑动脉瘤颈部置入后的血流动力学效应尚未有充分记录。

方法

本研究使用了基于临床影像构建的三个特定患者硅胶动脉瘤模型。模型1由宽颈颈内动脉 - 眼动脉动脉瘤构建而成,模型2和模型3由小型宽颈大脑中动脉动脉瘤构建而成。将Neuroform支架置入体外动脉瘤模型中,并比较支架置入前后的血流结构。采用粒子图像测速技术获取流速场。

结果

在模型1中,支架置入前在动脉瘤腔内观察到顺时针单涡血流模式。支架置入后出现多个涡流,且在动脉瘤腔内新形成了一个非常小的快速血流束。动脉瘤腔内平均血流速度降低了约23% - 40%。在模型2中,支架置入前在动脉瘤腔内有顺时针涡流,在动脉瘤顶部尖端还有另一个小的逆时针涡流。支架置入后小涡流区域消失,动脉瘤腔内平均流速降低了43% - 64%。在模型3中,支架置入前在动脉瘤腔内可见一个大的逆时针单涡。支架置入后在动脉瘤腔内出现多个小涡流,平均流速减慢了22% - 51%。

结论

可弯曲的自膨式支架显著改变了这些动脉瘤的流速和血流结构。支架引起的总体血流改变似乎有利于动脉瘤栓塞的长期稳定性。不能排除置入低轮廓自膨式支架可能会在动脉瘤腔内诱导出如快速血流束等不良血流模式的可能性。

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