首页> 外文期刊>Interventional neuroradiology: journal of peritherapeutic neuroradiology, surgical procedures and related neurosciences >The mechanism of catheter kickback in the final stage of coil embolization for aneurysms: the straightening phenomenon.
【24h】

The mechanism of catheter kickback in the final stage of coil embolization for aneurysms: the straightening phenomenon.

机译:动脉瘤线圈栓塞最后阶段的导管反冲机制:拉直现象。

获取原文
获取原文并翻译 | 示例
           

摘要

The catheter kickback phenomenon often occurs in the last stage of coil packing for cerebral aneurysms. This behavior is considered the result of either a lack of space in the sac or a stiff detaching zone. In order to clarify its mechanism, focused stretch-resistance (SR) coil simulation models were tested. Various commercially available SR coils were inserted into a cylinder or an aneurismal sac made from a silicone tube with a smaller than prescribed diameter. A magnified SR coil model (straight type) of fishing line was created for simulation. Numerical analysis for the changes in coil behavior were verified. All SR coils showed hardening and straightening at the last few millimeters, resulting in catheter kickback. In a magnified coil experiment, straightening was also realized when folding into a narrow cylinder. The SR line coursed in the canal of the first loops and shifted to the outside in the middle portion. Gaps among first coil pitches were enlarged on after insertion into the narrower space. Shortage of the SR line was calculated to reach a maximum of 32%. The straightening phenomenon is due to SR line shortening and subsequent condensation of pitches of the first loops at the coil end. Coil tail flexibility was lost, and the coil behaved as a stiff wire. Straightening is an important factor in the kickback phenomenon. Shorter final SR coils should be selected, and coil designs should be improved.
机译:导管反冲现象通常发生在脑动脉瘤线圈填充的最后阶段。这种现象被认为是由于囊中空间不足或分离区域僵硬的结果。为了阐明其机理,测试了聚焦拉伸电阻(SR)线圈仿真模型。将各种市售的SR线圈插入由直径小于规定直径的硅胶管制成的圆柱体或动脉瘤囊中。创建了一个放大的钓线SR线圈模型(直型)进行仿真。验证了线圈行为变化的数值分析。所有SR线圈在最后几毫米处均显示硬化和矫直,从而导致导管反冲。在放大的线圈实验中,折叠成一个狭窄的圆柱体时也可以实现矫直。 SR线在第一个回路的通道中行进,并在中间部分移至外部。在插入较窄的空间后,第一线圈节距之间的间隙增大。 SR线的短缺经计算最多可达到32%。矫直现象是由于SR线缩短以及随后线圈末端的第一个线圈的节距缩合所致。线圈尾部的柔韧性丧失,并且线圈表现为硬线。拉直是回弹现象的重要因素。应选择较短的最终SR线圈,并应改进线圈设计。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号