Hug François, Raux Mathieu, Prella Maura, Morelot-Panzini Capucine, Straus Christian, Similowski Thomas
UPRES EA 2397, Université Pierre et Marie Curie Paris VI, Paris, France.
Respir Physiol Neurobiol. 2006 Jan 25;150(1):75-81. doi: 10.1016/j.resp.2005.04.008.
Studying the inspiratory recruitment of the scalenes is clinically relevant, but the interpretation of surface electromyographic (EMG) recordings is difficult. The aim of this study was to optimize an averaging method to analyze the surface EMG activity of the scalenes. Ten healthy subjects were studied. Nasal flow and surface EMG of the right scalene were recorded during 15 min epochs of quiet breathing. In four subjects, needle scalene EMG was also recorded. The flow signal was used to trigger the ensemble averaging of the ventilatory wave forms from 80 consecutive breaths. In eight cases, this evidenced a phasic inspiratory activation of the scalenes and permitted the determination of the electromechanical inspiratory delay (134+/-55 ms) and post-inspiratory activity (811+/-233 ms). When simultaneously available, surface and intramuscular recordings provided identical results. An averaging method triggered from a respiratory flow signal can identify and characterize a low phasic inspiratory activity of the scalenes within a noisy surface signal.
研究斜角肌的吸气募集具有临床相关性,但表面肌电图(EMG)记录的解读存在困难。本研究的目的是优化一种平均方法,以分析斜角肌的表面肌电活动。对10名健康受试者进行了研究。在安静呼吸的15分钟时段内记录右斜角肌的鼻气流和表面肌电图。在4名受试者中,还记录了斜角肌的针电极肌电图。气流信号用于触发对80次连续呼吸的通气波形进行总体平均。在8例中,这证明了斜角肌的阶段性吸气激活,并允许确定机电吸气延迟(134±55毫秒)和吸气后活动(811±233毫秒)。当同时获得表面和肌肉内记录时,结果相同。由呼吸气流信号触发的平均方法可以在嘈杂的表面信号中识别并表征斜角肌的低阶段性吸气活动。