Tonui Peter M, Nish Andrew D, Smith Hayden L, Letendre Paul V, Portela Dustin R
Trauma Services, Iowa Methodist Medical Center, Des Moines, IA.
Department of Radiology, Iowa Methodist Medical Center, Des Moines, IA.
Ochsner J. 2014 Fall;14(3):335-8.
Percutaneous tracheostomy (PCT) is a widely accepted method for the insertion of a tracheostomy tube in a critically ill patient. Because a patient's preexisting endotracheal tube is manipulated during the procedure, premature extubation with potential catastrophic loss of airway control is a risk. As portable ultrasound imaging becomes increasingly useful in the critical care setting, investigations continue to determine the safety of PCT with the technology.
Introduction of an endotracheal tube in the proximal airway under bronchoscopic guidance was performed in a cadaver. The endotracheal tube cuff was inflated with agitated water and visualized using a portable ultrasound device. The endotracheal tube cuff was then withdrawn under ultrasound guidance to the proximal trachea.
Sonographic visualization of the endotracheal tube cuff within the trachea was successfully achieved. The endotracheal tube was withdrawn to the proximal trachea, and satisfactory needle cannulation of the trachea was performed.
Ultrasound can be used to identify an endotracheal tube cuff during a PCT, and repositioning the endotracheal tube under ultrasound guidance could decrease the risk of accidental extubation. This approach to PCT may be used in a cadaveric model to teach anatomy and procedural skills to learners and possibly further adopted in real patients to improve the overall safety profile of the PCT procedure.
经皮气管切开术(PCT)是在危重病患者中插入气管切开管的一种广泛接受的方法。由于在该操作过程中会对患者预先存在的气管内导管进行操作,存在过早拔管并导致气道控制灾难性丧失的风险。随着便携式超声成像在重症监护环境中变得越来越有用,人们继续研究该技术用于PCT的安全性。
在一具尸体上,在支气管镜引导下将气管内导管插入近端气道。用搅拌的水使气管内导管的套囊充气,并使用便携式超声设备进行可视化观察。然后在超声引导下将气管内导管的套囊撤回至近端气管。
成功实现了气管内导管套囊在气管内的超声可视化。将气管内导管撤回至近端气管,并成功进行了气管穿刺置管。
在PCT过程中,超声可用于识别气管内导管的套囊,在超声引导下重新定位气管内导管可降低意外拔管的风险。这种PCT方法可用于尸体模型,向学习者传授解剖学和操作技能,并可能在实际患者中进一步采用,以改善PCT操作的整体安全性。