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目前用于极小型动脉瘤血管内栓塞的微导管和弹簧圈的结构局限性。

Structural limitations of currently available microcatheters and coils for endovascular coiling of very small aneurysms.

作者信息

Lim Yong Cheol, Kim Byung Moon, Shin Yong Sam, Kim Sun Yong, Chung Joonho

机构信息

Department of Neurosurgery, School of Medicine, Ajou University, Yongtong-Ku, Suwon 442-721, Republic of Korea.

出版信息

Neuroradiology. 2008 May;50(5):423-7. doi: 10.1007/s00234-008-0365-y.

Abstract

INTRODUCTION

Coil embolization for very small aneurysms (<3 mm in maximum diameter) has been considered a technically challenging method due to increased risk of potential aneurysm perforation during the procedure. We present our observations about the structural limitations of eight types of microcatheters and three types of detachable coils, and technical pitfalls in the coiling of very small aneurysms.

METHODS

The structures of each type of microcatheter and coil were carefully evaluated under a stereoscopic microscope. The evaluation the microcatheters was focused on the distance between the distal end of the distal marker and the tip of microcatheter. The evaluation of the coils was focused on the length of the detachment zone.

RESULTS

With markers of the coil delivery systems and microcatheters aligned under fluoroscopic visualization according to the manufacturers' recommendations, the stiff detachment zones protruded approximately 0.2-1 mm from the microcatheter tip. The lengths of the detachment zone, which is known to be a stiff segment, of the currently available coils were approximately 0.5-0.8 mm. The distance between the distal end of the distal markers of the microcatheters and the detachment zone of the coil ranged from approximately 1.2 to 2.8 mm.

CONCLUSION

To prevent rupture of very small aneurysms during coiling, the distal marker of the selected microcatheter should be carefully located near the aneurysm neck, considering all the structural characteristic of the currently available coils and microcatheters. Refinement of currently available devices may be essential to achieve safer coiling of very small aneurysms.

摘要

引言

对于最大直径小于3毫米的极小动脉瘤,由于在操作过程中动脉瘤穿孔的潜在风险增加,线圈栓塞术被认为是一种技术上具有挑战性的方法。我们介绍了我们对八种类型的微导管和三种类型的可脱卸线圈的结构局限性以及极小动脉瘤线圈栓塞术的技术陷阱的观察结果。

方法

在立体显微镜下仔细评估每种类型的微导管和线圈的结构。对微导管的评估重点在于远端标记物的远端与微导管尖端之间的距离。对线圈的评估重点在于脱卸区的长度。

结果

按照制造商的建议,在透视可视化下将线圈输送系统和微导管的标记物对齐后,僵硬的脱卸区从微导管尖端突出约0.2 - 1毫米。目前可用线圈的脱卸区(已知为僵硬段)长度约为0.5 - 0.8毫米。微导管远端标记物的远端与线圈脱卸区之间的距离约为1.2至2.8毫米。

结论

为防止在栓塞极小动脉瘤过程中动脉瘤破裂,应考虑目前可用线圈和微导管的所有结构特征,将所选微导管的远端标记物小心地置于动脉瘤颈部附近。对现有设备进行改进对于实现更安全地栓塞极小动脉瘤可能至关重要。

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