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首页> 外文期刊>Operative Neurosurgery. >Crossing the Carotid Siphon: Techniques to Facilitate Distal Access in Tortuous Anatomy: 2-Dimensional Operative Video
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Crossing the Carotid Siphon: Techniques to Facilitate Distal Access in Tortuous Anatomy: 2-Dimensional Operative Video

机译:跨越颈动脉虹吸:促进曲折解剖结构远端访问的技术:二维手术视频

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摘要

As capabilities for endovascular treatment of intracranial vascular pathologies continue to expand, the need for access to the distal internal carotid artery with rigid support catheter systems continues to increase. One of the dominant factors limiting this access is patient anatomy, specifically vessel tortuosity. Increased tortuosity of the carotid siphon is a frequently encountered anatomic variant and may complicate endovascular procedures in adults and children.(,) Failed attempts to navigate the carotid siphon with a distal access catheter carry a risk of vessel injury and treatment failure. For this reason, techniques that aid in supporting safe advancement of a distal access catheter across a tortuous carotid siphon are essential.(,) In this video, we demonstrate 2 ways in which this may be accomplished. The first technique uses a larger diameter microcatheter, such as the AXS Offset catheter (Stryker, Kalamazoo, Michigan), to increase support for the distal access catheter, while the second uses a buddy wire technique to accomplish this increased support. Both of these techniques can help increase the safety of navigating a tortuous carotid siphon and increase the likelihood of successful treatment. The procedures shown were performed with the informed consent of the patients.
机译:随着颅内血管病理的血管内治疗的能力不断扩大,需要使用刚性支撑导管系统进入颈内动脉的远端内动脉的需求继续增加。限制此通道的主要因素之一是患者解剖学,特别是血管曲折。颈动脉虹吸管的曲折增加是一种经常遇到的解剖变体,可能使成人和儿童的血管内手术复杂化。因此,有助于支持沿曲折颈动脉虹吸管的远端通道导管安全进步的技术至关重要。(,)在本视频中,我们演示了可以实现这两种方法。第一种技术使用较大的直径微导管,例如轴偏移导管(Stryker,Stryker,Kalamazoo,Michigan)来增加对远端接入导管的支撑,而第二种则使用伙伴电线技术来实现这一增加的支撑。这两种技术都可以帮助提高导航颈动脉虹吸管的安全性,并增加成功治疗的可能性。在患者的知情同意书中进行了所示的程序。

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