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在动物模型中使用自制装置进行经皮气管紧急通气。

Percutaneous transtracheal emergency ventilation with a self-made device in an animal model.

作者信息

Schaefer Raik, Hueter Lars, Preussler Niels-Peter, Schreiber Torsten, Schwarzkopf Konrad

机构信息

Department of Trauma Surgery, University of Jena, Jena, Germany.

出版信息

Paediatr Anaesth. 2007 Oct;17(10):972-6. doi: 10.1111/j.1460-9592.2007.02244.x.

Abstract

BACKGROUND

Special equipment for emergency percutaneous transtracheal ventilation is often not immediately available. We used a self-made device consisting of a three-way stopcock connected between a G-15 transtracheal airway catheter and an oxygen supply in a simulated 'cannot intubate, cannot ventilate' scenario and tested the hypothesis that the effectiveness of the device depends on the body weight of the experimental animals.

METHODS

With approval of the local animal protection committee, two groups of six pigs each with a body weight of 21 +/- 2 and 36 +/- 6 kg, respectively, were tracheally intubated and mechanically ventilated after induction of anesthesia. Hemodynamic monitoring included cardiac output and arterial, central venous and pulmonary artery pressures. An emergency transtracheal airway catheter was inserted into the trachea and a situation of partial expiratory airway obstruction was created. Each animal was ventilated for 15 min via the transtracheal airway catheter with the self-made device (FiO(2) 1.0 at an oxygen flow of 15 l x min(-1); respiratory rate of 60 min(-1); I/E ratio approximately 1:1).

RESULTS

Whereas satisfactory oxygenation was achieved in all animals, sufficient ventilation was obtained only in the lightweight animals.

CONCLUSIONS

Adequate oxygenation could be provided by jet-like transtracheal ventilation with a simple self-made device using easily available materials. Sufficient ventilation depends on the body weight of the animals.

摘要

背景

紧急经皮气管通气的专用设备往往无法立即获得。在模拟“无法插管、无法通气”的场景中,我们使用了一种自制装置,该装置由一个三通旋塞组成,连接在G - 15气管内气道导管和氧气供应之间,并测试了该装置的有效性取决于实验动物体重的假设。

方法

经当地动物保护委员会批准,两组猪,每组6只,体重分别为21±2 kg和36±6 kg,麻醉诱导后行气管插管并机械通气。血流动力学监测包括心输出量以及动脉压、中心静脉压和肺动脉压。将一根紧急气管内气道导管插入气管,并制造部分呼气气道梗阻的情况。每只动物通过气管内气道导管使用自制装置通气15分钟(吸入氧浓度1.0,氧流量15 l·min⁻¹;呼吸频率60次·min⁻¹;吸呼比约为1:1)。

结果

所有动物均实现了满意的氧合,但仅在体重较轻的动物中获得了足够的通气。

结论

使用容易获得的材料制成的简单自制装置进行喷射式经气管通气可以提供足够的氧合。足够的通气取决于动物的体重。

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