Department of Neurosurgery, Nagoya University Graduate School of Medicine.
Department of Neurosurgery, Yokkaichi Municipal Hospital.
Neurol Med Chir (Tokyo). 2021 Jun 15;61(6):356-360. doi: 10.2176/nmc.oa.2020-0348. Epub 2021 May 8.
The straightening phenomenon is known as a cause of catheter kickback in the late phase of coil embolization. The mechanism is supposed to be the relative shortage of the stretch resistance (SR) line, and it occurs when a coil is folded too small. Among many SR coils available, there should be a coil-specific tendency to cause this phenomenon. Here, we conducted an in-vitro experiment to know which coil is the most resistant to the straightening phenomenon. We developed an experimental model to reproduce the straightening phenomenon. Five different coils (Axium Prime, ED Coil, Hypersoft, SMART Coil, and Target 360 nano) of the same size (3 mm × 6 cm) were investigated for five times each. Resistance to the straightening phenomenon, which is represented by the insertion length at the onset of the phenomenon, was compared among coil types. The straightening phenomenon was successfully observed in all insertions. Insertion lengths were significantly different among coil types (p = 0.013). The insertion length of ED was the longest (mean ± SD, 27.0 ± 8.3 mm), which means the most resistant to the phenomenon. Axium was second (21.6 ± 7.0 mm), followed by Target (15.8 ± 6.9 mm), Hypersoft (13.8 ± 5.8 mm), and SMART (12.4 ± 4.7 mm). Difference between ED and Hypersoft (p = 0.037) and difference between ED and Smart (p = 0.018) were significant. ED coil was the one with the most resistance to the straightening phenomenon. Selecting the optimal coil is the key to avoid the phenomenon.
拉直现象是线圈栓塞晚期导管后退的一个已知原因。其机制被认为是拉伸阻力(SR)线相对不足,当线圈折叠得太小时就会发生这种情况。在许多可用的 SR 线圈中,应该有一种特定的线圈倾向于引起这种现象。在这里,我们进行了一项体外实验,以了解哪种线圈最能抵抗拉直现象。我们开发了一种实验模型来再现拉直现象。研究了五种不同尺寸(3mm×6cm)的线圈(Axium Prime、ED 线圈、Hypersoft、SMART 线圈和 Target 360 nano),每种线圈各进行了五次实验。通过拉直现象开始时的插入长度来比较线圈类型对拉直现象的抵抗力。所有插入物均成功观察到拉直现象。线圈类型之间的插入长度存在显著差异(p=0.013)。ED 线圈的插入长度最长(平均值±标准差,27.0±8.3mm),表明其对现象的抵抗力最强。Axium 排名第二(21.6±7.0mm),其次是 Target(15.8±6.9mm)、Hypersoft(13.8±5.8mm)和 SMART(12.4±4.7mm)。ED 与 Hypersoft 之间的差异(p=0.037)和 ED 与 Smart 之间的差异(p=0.018)均具有统计学意义。ED 线圈对拉直现象的抵抗力最强。选择最佳的线圈是避免这种现象的关键。