Yoon Mi-Jeong, Park Hye Min, Won Sun Jae
Department of Rehabilitation Medicine, Yeouido St. Mary's Hospital, College of Medicine, The Catholic University of Korea, Seoul, Korea.
Ann Rehabil Med. 2020 Dec;44(6):459-467. doi: 10.5535/arm.20022. Epub 2020 Dec 31.
To evaluate the effect of fascia penetration and develop a new technique for lateral femoral cutaneous nerve (LFCN) conduction studies based on the fascia penetration point (PP) identified using ultrasound.
The fascia PP of the LFCN was localized in 20 healthy subjects, and sensory nerve action potentials (SNAPs) were obtained at four different stimulation points-2 cm proximal to the PP (2PPP), PP, 2 cm distal to the PP (2DPP), and 4 cm distal to the PP (4DPP). We compared the stimulation technique based on the fascia penetration point (STBFP) with the conventional technique.
The SNAP amplitude of the LFCN was significantly higher when stimulation was performed at the PP and 2DPP than at other stimulation points. Using the STBFP, SNAP responses were elicited in 38 of 40 legs, whereas they were elicited in 32 of 40 legs using the conventional technique (p=0.041). STBFP had a comparable SNAP amplitude and slightly delayed negative peak latency compared to the conventional technique. In terms of the time required, the time spent on STBFP showed a more consistent distribution than the time spent on the conventional technique (two-sample Kolmogorov-Smirnov test, p<0.05).
SNAP of the LFCN significantly changed near the fascia PP, and stimulation at PP and at 2DPP provided high amplitudes. STBFP can help increase the response rate and ensure stable and consistent procedure time of the LFCN conduction study.
评估筋膜穿透的效果,并基于超声确定的筋膜穿透点(PP)开发一种用于股外侧皮神经(LFCN)传导研究的新技术。
在20名健康受试者中定位LFCN的筋膜PP,并在四个不同刺激点——PP近端2 cm(2PPP)、PP、PP远端2 cm(2DPP)和PP远端4 cm(4DPP)获取感觉神经动作电位(SNAPs)。我们将基于筋膜穿透点的刺激技术(STBFP)与传统技术进行了比较。
在PP和2DPP进行刺激时,LFCN的SNAP波幅显著高于其他刺激点。使用STBFP,40条腿中有38条引出了SNAP反应,而使用传统技术时,40条腿中有32条引出了SNAP反应(p = 0.041)。与传统技术相比,STBFP的SNAP波幅相当,负峰潜伏期略有延迟。在所需时间方面,与传统技术相比,STBFP所花费的时间分布更一致(双样本柯尔莫哥洛夫-斯米尔诺夫检验,p<0.05)。
LFCN的SNAP在筋膜PP附近显著变化,在PP和2DPP进行刺激可提供高波幅。STBFP有助于提高反应率,并确保LFCN传导研究的操作时间稳定且一致。