Fortier G, Coté D, Bergeron C, Bussières J S
Department of Anesthesiology, Laval University, Québec, Québec, Canada.
Can J Anaesth. 2001 Sep;48(8):790-4. doi: 10.1007/BF03016696.
To compare a new technique (NT) for positioning the left modified Broncho-Cath double-lumen tube (LM- DLT) by fibreoptic bronchoscopy (FOB) to the classic technique (CT).
Sixty-one adult patients undergoing elective thoracic surgery with LM-DLT were randomly assigned to the NT or to the CT group. For the NT, the endoscopist confirms the left mainstem endobronchial intubation. The proximal edge of the blue bronchial cuff should not be visualized at the carina. Then, through the left bronchial lumen, by transparency across the wall of the tube, the position of the tube is adjusted so that the carina lies midway between the black radiopaque line and the top of the bronchial cuff. After this, the orifice of the left upper lobe (LUL) bronchus should be clearly seen. For the CT, the endoscopist uses the technique described by Benumof and Slinger. After lateral positioning of the patient, the LM-DLT was repositioned if the top of the endobronchial cuff was above the carina or when the LUL bronchus was obstructed.
The incidence of proximal repositioning was significantly less in the NT compared to the CT (16% vs 43%, P=0.007).
Using this new technique, the LM-DLT is inserted deeper in the left mainstem bronchus. This new landmark augments the range of movement that can be tolerated without requiring repositioning of the LM-DLT. This NT to position and to assess LM-DLT, by transparency across the wall of the tube with FOB, is better adapted to the LM-DLT and its recent modifications.
通过纤维支气管镜检查(FOB)将一种用于定位左改良支气管导管(LM-DLT)的新技术(NT)与经典技术(CT)进行比较。
61例接受择期胸外科手术并使用LM-DLT的成年患者被随机分配至NT组或CT组。对于NT,内镜医师确认左主支气管内插管。在隆突处不应看到蓝色支气管套囊的近端边缘。然后,通过左支气管腔,透过导管壁观察,调整导管位置,使隆突位于黑色不透射线标记线与支气管套囊顶部之间的中点。在此之后,应能清晰看到左上叶(LUL)支气管开口。对于CT,内镜医师采用贝努莫夫和斯林格描述的技术。患者侧卧位后,如果支气管内套囊顶部高于隆突或LUL支气管受阻,则重新定位LM-DLT。
与CT相比,NT组近端重新定位的发生率显著更低(16%对43%,P = 0.007)。
使用这种新技术,LM-DLT在左主支气管内插入得更深。这个新的标志增加了在无需重新定位LM-DLT的情况下可耐受的移动范围。这种通过FOB透过导管壁来定位和评估LM-DLT的NT技术,更适合LM-DLT及其最近的改进型。