Reali-Forster C, Kolobow T, Giacomini M, Hayashi T, Horiba K, Ferrans V J
National Institutes of Health, National Heart, Lung, and Blood Institute, Bethesda, Maryland 20892-1412, USA.
Anesthesiology. 1996 Jan;84(1):162-72; discussion 27A. doi: 10.1097/00000542-199601000-00019.
A new endotracheal tube (ETT) was fabricated and tested in sheep. It had no tracheal cuff; airway seal was achieved at the level of the glottis through a no-pressure seal made of "gills"; the laryngeal portion was oval-shaped; and the wall thickness was reduced to 0.2 mm.
Sheep were tracheally intubated either with a standard tube or with the new tube, and their lungs were mechanically ventilated for 1 or 3 days. Air leak was recorded at different peak inspiratory pressures (PIPs). Liquid seepage into the trachea was assessed using an indicator dye. Tracheolaryngeal lesions were scored grossly and histologically.
There was no air leak up to 40 cmH2O of PIP, in either group, in short- and long-term studies. Methylene blue leaked across the cuff in two sheep with standard ETTs. No dye leaked across the gills with the new ETTs. In the new ETT group, the trachea appeared better preserved, grossly and histologically, than in the standard ETT group at both 1 and 3 days (P < 0.05). At day 1, the larynx and vocal cords appeared grossly less injured in the new ETT group (P < 0.05), whereas there was no difference at day 3. Histology did not show significant difference on vocal cords, epiglottis, and larynx between the two groups at any time.
The novel, no-pressure seal design of the new ETT is highly effective in preventing air leak and aspiration. It causes no significant tracheal injury.
一种新型气管内导管(ETT)已制作完成并在绵羊身上进行了测试。它没有气管套囊;通过由“鳃”构成的无压力密封在声门水平实现气道密封;喉部呈椭圆形;壁厚减至0.2毫米。
用标准导管或新型导管对绵羊进行气管插管,并对其肺部进行1或3天的机械通气。记录不同吸气峰压(PIP)下的漏气情况。使用指示剂染料评估液体渗入气管的情况。对气管喉部病变进行大体和组织学评分。
在短期和长期研究中,两组在PIP高达40 cmH₂O时均未出现漏气。两只使用标准ETT的绵羊出现亚甲蓝从套囊处渗漏。使用新型ETT时,没有染料从“鳃”处渗漏。在新型ETT组,在第1天和第3天,气管在大体和组织学上的保存情况均优于标准ETT组(P < 0.05)。在第1天,新型ETT组的喉部和声带出现在大体上损伤较轻(P < 0.05),而在第3天没有差异。在任何时候,两组在声带、会厌和喉部的组织学表现均无显著差异。
新型ETT的无压力密封设计在防止漏气和误吸方面非常有效。它不会造成明显的气管损伤。