Magnusson S P, Simonsen E B, Dyhre-Poulsen P, Aagaard P, Mohr T, Kjaer M
Team Danmark Test Center, Rigshospitalet, Copenhagen, Denmark.
Scand J Med Sci Sports. 1996 Dec;6(6):323-8. doi: 10.1111/j.1600-0838.1996.tb00101.x.
The present study sought to investigate the role of EMG activity during passive static stretch. EMG and passive resistance were measured during static stretching of human skeletal muscle in eight neurologically intact control subjects and six spinal cord-injured (SCI) subjects with complete motor loss. Resistance to stretch offered by the hamstring muscles during passive knee extension was defined as passive torque (Nm). The knee was passively extended at 5 degrees/s to a predetermined final position, where it remained stationary for 90 s (static phase) while force and integrated EMG of the hamstring muscle were recorded. EMG was sampled for frequency domain analysis in a second stretch maneuver in five control and three SCI subjects. There was a decline in passive torque in the 90-s static phase for both control and SCI subjects, P < 0.05. Although peak passive torque was greater in control subjects, P < 0.05, there was no difference in time-dependent passive torque response between control (33%) and SCI (38%) subjects. Initial and final 5-s IEMG ranged from 1.8 to 3.4 microV.s and did not change during a stretch or differ between control and SCI subjects. Frequency domain analysis yielded similar results in both groups, with an equal energy distribution in all harmonics, indicative of 'white noise'. The present data demonstrate that no measurable EMG activity was detected in either group during the static stretch maneuver. Therefore, the decline in resistance to static stretch was a viscoelastic stress relaxation response.
本研究旨在探究肌电图(EMG)活动在被动静态拉伸过程中的作用。在八名神经功能正常的对照受试者和六名完全运动功能丧失的脊髓损伤(SCI)受试者的人体骨骼肌静态拉伸过程中,测量了EMG和被动阻力。在被动膝关节伸展过程中,腘绳肌提供的拉伸阻力被定义为被动扭矩(Nm)。膝关节以5度/秒的速度被动伸展至预定的最终位置,在此位置保持静止90秒(静态阶段),同时记录腘绳肌的力和积分EMG。在五次对照和三次SCI受试者的第二次拉伸操作中,对EMG进行采样以进行频域分析。对照受试者和SCI受试者在90秒静态阶段的被动扭矩均下降,P<0.05。尽管对照受试者的峰值被动扭矩更大,P<0.05,但对照(33%)和SCI(38%)受试者之间随时间变化的被动扭矩反应没有差异。初始和最终5秒的积分肌电图(IEMG)范围为1.8至3.4微伏·秒,在拉伸过程中没有变化,对照受试者和SCI受试者之间也没有差异。频域分析在两组中产生了相似的结果,所有谐波中的能量分布相等,表明为“白噪声”。目前的数据表明,在静态拉伸操作过程中,两组均未检测到可测量的EMG活动。因此,对静态拉伸阻力的下降是一种粘弹性应力松弛反应。