Department of Anaesthesia, University Children's Hospital, Steinwiesstrasse 75, 8032, Zurich, Switzerland.
J Anesth. 2010 Apr;24(2):247-52. doi: 10.1007/s00540-010-0871-z. Epub 2010 Feb 23.
Longitudinal folds in tracheal tube (TT) cuffs cause leakage of pooled secretions past the tube cuff, and the most common in vitro method to test the efficacy of a new tube is a benchtop model using an artificial rigid trachea. This study compared the potential of a static and dynamic ventilation benchtop model and cuff lubrication in testing the tracheal sealing properties of a given TT cuff.
Static trial Six brands of 7.5 mm internal diameter (ID) cuffed TT (n = 8) with high volume-low pressure cuffs were inflated in an artificial trachea (18 mm ID) without and with lubrication. Dynamic trial The same tube cuffs, without lubrication, were subjected to positive pressure ventilation (PPV) + positive end-expiratory pressure (PEEP) of 5cmH(2)O or to PPV alone (without PEEP) or to PEEP alone (without PPV). Clear water (5 ml) was placed above the tube cuff, and fluid leakage (ml) was measured up to 60 min.
Gel lubrication, PEEP alone and PPV + PEEP completely prevented fluid leakage across the tube cuffs in all six TT brands tested within 60 min when compared to the static unlubricated model (0% leak versus 100% leak; P < 0.01). Fluid leakage in the static unlubricated model and the PPV group was 1.38-4.76 ml and 0.23-4.47 ml, respectively.
Gel lubrication, PEEP alone, and PPV + PEEP in the benchtop model had a much stronger protective effect than PPV alone on fluid leakage. Studies testing the fluid sealing efficiency of tube cuffs might be more conclusive in a static benchtop model without lubrication than in a dynamic model.
气管导管(TT)套囊中的纵向褶皱会导致积聚的分泌物从管套囊泄漏,体外测试新管效果的最常用方法是使用人工刚性气管的台式模型。本研究比较了静态和动态通气台式模型以及套囊润滑在测试特定 TT 套囊气管密封性能方面的潜力。
静态试验 将 6 个品牌的 7.5mm 内径(ID)带高压低容量套囊 TT(n=8)在无润滑和有润滑的人工气管(18mm ID)中充气。动态试验 对相同的管套囊,无润滑,给予正压通气(PPV)+5cmH(2)O 呼气末正压(PEEP)或仅给予 PPV(无 PEEP)或仅给予 PEEP(无 PPV)。将 5ml 清水置于管套囊上方,测量 60 分钟内的液体泄漏量(ml)。
与静态未润滑模型相比,凝胶润滑、单独 PEEP 和 PPV+PEEP 在 60 分钟内完全防止了所有 6 个 TT 品牌的管套囊发生液体泄漏(0%泄漏与 100%泄漏;P<0.01)。在静态未润滑模型和 PPV 组中,液体泄漏量分别为 1.38-4.76ml 和 0.23-4.47ml。
在台式模型中,凝胶润滑、单独 PEEP 和 PPV+PEEP 对液体泄漏的保护作用明显强于单独 PPV。在静态无润滑的台式模型中测试管套囊的液体密封效率可能比在动态模型中更具结论性。