Department of Anesthesiology, Niigata University Medical and Dental Hospital, Niigata-city, Japan.
Division of Anesthesiology, Niigata University Graduate School of Medical and Dental Sciences, Niigata-city, Japan.
Anaesthesia. 2016 Mar;71(3):291-7. doi: 10.1111/anae.13336. Epub 2015 Dec 1.
We evaluated an alternative technique for ultrasound-guided proximal level obturator nerve block that might facilitate needle visualisation using in-plane ultrasound guidance. Twenty patients undergoing transurethral bladder tumour resection requiring an obturator nerve block were enrolled into a prospective observational study. With the patient in the lithotomy position, the transducer was placed on the medial thigh along the extended line of the inguinal crease, and aimed cephalad to view a thick fascia between the pectineus and obturator externus muscles that contains the obturator nerve. A stimulating nerve block needle was inserted at the pubic region and advanced in-plane with the transducer in an anterior-to-posterior direction. Eight ml levobupivacaine 0.75% was injected within the fascia. The median (IQR [range]) duration for ultrasound identification of the target and injection were 8.5 (7-12 [5-24]) s and 62 (44.5-78.25 [39-383]) s, respectively. All blocks were successful. A cadaver evaluation demonstrated that the dye injected into the target fascia using our technique travelled retrogradely through the obturator canal, and surrounded the anterior and posterior branches of the obturator nerve both proximally and distally to the obturator canal. We believe that this is a promising new technique for ultrasound-guided proximal level obturator nerve block.
我们评估了一种替代技术,用于超声引导下的近端闭孔神经阻滞,该技术可能有助于使用平面内超声引导进行针可视化。 20 名接受经尿道膀胱肿瘤切除术且需要闭孔神经阻滞的患者参与了这项前瞻性观察研究。患者取截石位,将换能器置于大腿内侧,沿腹股沟皱襞的延长线放置,向头侧观察包含闭孔神经的耻骨肌和闭孔外肌之间的厚筋膜。刺激神经阻滞针在耻骨区域插入,并与换能器一起从前向后进行平面内推进。在筋膜内注射 8ml 0.75%左旋布比卡因。超声识别目标和注射的中位数(IQR [范围])分别为 8.5(7-12 [5-24])秒和 62(44.5-78.25 [39-383])秒。所有阻滞均成功。尸体评估表明,使用我们的技术将染料注入目标筋膜后,染料会逆行通过闭孔管,并在闭孔管的近端和远端围绕闭孔神经的前支和后支。我们认为这是一种有前途的新的超声引导下近端闭孔神经阻滞技术。