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Optimum coil insertion speed of various coils in brain aneurysm embolization in vitro

机译:体外脑动脉瘤栓塞中各种线圈的最佳线圈插入速度

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摘要

A coil must comprise material with shape memory to perform optimal coil embolization. To achieve this, the alloy characteristics of the coil (hardness, shape, and thickness) must be understood. In this experiment, a catheter was fixed in the bright position and the movement of the coil was observed under a constant rate of insertion; the optimal insertion rate during clinical use was investigated. The first coil insertion speed was evaluated using simulated aneurysms in an in vivo arterial model. The results showed that the insertion force relates to the deployment shape of the coil, that the feedback through the force indicator using sound is very effective, and that the recorder is useful for analysis of coil embolization. The inserted coils during aneurysm embolization were able to wind uniformly within the aneurysm due to a variety of factors (guiding or micro-catheter position and kick-back phenomenon such as delivery wire). Optimal speed is achieved with proper coil design, which allows the coil to be inserted into the aneurysm. The shape and size of the aneurysm can help determine the necessary size and design of the coil that should be used during the optimal speed range. Aneurysm wall and coil characteristics are considered, along with the friction state of the coil (hardness, shape, and thickness), leading to improvements in safety during the insertion procedure at optimum speed.
机译:线圈必须包含具有形状记忆的材料,以执行最佳的线圈栓塞。为此,必须了解线圈的合金特性(硬度,形状和厚度)。在该实验中,将导管固定在明亮的位置,并以恒定的插入速率观察线圈的运动。研究了临床使用期间的最佳插入率。在体内动脉模型中使用模拟动脉瘤评估第一个线圈的插入速度。结果表明,插入力与线圈的展开形状有关,通过使用声音的力指示器的反馈非常有效,并且记录仪可用于分析线圈栓塞。由于多种因素(引导或微导管位置和反冲现象,如输送线),在动脉瘤栓塞过程中插入的线圈能够在动脉瘤内均匀缠绕。适当的线圈设计可实现最佳速度,从而将线圈插入动脉瘤中。动脉瘤的形状和大小可以帮助确定在最佳速度范围内应使用的线圈的必要大小和设计。考虑了动脉瘤壁和线圈的特性,以及线圈的摩擦状态(硬度,形状和厚度),从而以最佳速度提高了插入过程中的安全性。

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