首页> 外文期刊>Journal of critical care >Ultrasound-guided percutaneous dilatational tracheostomy using a saline-filled endotracheal tube cuff as an ultrasonographic puncture target: A feasibility study
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Ultrasound-guided percutaneous dilatational tracheostomy using a saline-filled endotracheal tube cuff as an ultrasonographic puncture target: A feasibility study

机译:超声引导的经皮扩张气管术,使用盐水填充的气管囊箍作为超声波穿刺目标:可行性研究

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PurposeThe saline-filled endotracheal tube (ETT) cuff can be easily identified under cervical ultrasound and can serve as an ideal puncture target during percutaneous dilatational tracheostomy (PDT). The authors present their initial experience with this novel technique. Materials and methodsThe records of 38 consecutive critically ill patients who underwent saline-filled cuff puncture PDT between October 2016 and December 2017 were retrospectively reviewed. The saline-filled ETT cuff was easily identified using ultrasound. Ultrasound-guided puncture into the cuff, followed by an inward-push of the ETT through the tube exchanger, facilitated accurate passage of the guidewire through the needle tip into the tracheal lumen. ResultsOf 38 consecutive procedures, 37 (97.4%) were performed successfully, with only one converted to surgical tracheostomy due to guidewire displacement. The median procedure time was 8?min. There were no complications, such as accidental extubation, major bleeding, or posterior tracheal wall laceration or pneumothorax, and no procedure-related mortalities. ConclusionsPDT performed using a saline-filled cuff as the ultrasound-guided puncture target and an endotracheal tube exchanger is feasible, and appeared to be easier to perform than standard PDT. Larger studies are required to confirm the safety and benefits of this technique.
机译:在宫颈超声下可以容易地鉴定出盐水填充的气囊管(ETT)袖带,可以作为经皮扩张的气管造口术(PDT)的理想穿刺靶标。作者呈现出他们的初步体验。回顾性审查,材料和方法38次接受盐水袖带刺破PDT的患者的患者。使用超声波容易识别出盐水填充的ETT袖带。超声引导穿刺进入袖带,然后通过管道交换器向内推动,便于将导丝通过针尖放入气管内腔中的精确通过。结果38个连续方法,37(97.4%)成功进行,仅由于导丝位移而转化为手术气管造口术。中位程序时间为8?min。没有并发症,例如意外拔管,重大出血或后气管磨损或气胸,没有程序相关的死亡率。结论PDT使用盐水填充的袖口进行,因为超声引导的穿刺靶和气管内的管道交换器是可行的,并且似乎比标准PDT更容易执行。需要更大的研究来确认这种技术的安全性和益处。

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