Sjøgaard Gisela, Jensen Bente R, Hargens Alan R, Søgaard Karen
Department of Physiology, National Institute of Occupational Health, DK-2100 Copenhagen Ø, Denmark.
J Appl Physiol (1985). 2004 Apr;96(4):1522-9; discussion. doi: 10.1152/japplphysiol.00687.2003. Epub 2003 Dec 5.
Intramuscular pressure (IMP) and electromyography (EMG) mirror muscle force in the nonfatigued muscle during static contractions. The present study explores whether the constant IMP-EMG relationship with increased force may be extended to dynamic contractions and to fatigued muscle. IMP and EMG were recorded from shoulder muscles in three sessions: 1). brief static arm abductions at angles from 0 to 90 degrees, with and without 1 kg in the hands; 2). dynamic arm abductions at angular velocities from 9 to 90 degrees /s, with and without 1 kg in the hands; and 3). prolonged static arm abduction at 30 degrees for 30 min followed by recovery. IMP and EMG increased in parallel with increasing shoulder torque during brief static tasks. During dynamic contractions, peak IMP and EMG increased to values higher than those during static contractions, and EMG, but not IMP, increased significantly with speed of abduction. In the nonfatigued supraspinatus muscle, a linear relationship was found between IMP and EMG; in contrast, during fatigue and recovery, significant timewise changes of the IMP-to-EMG ratio occurred. The results indicate that IMP should be included along with EMG when mechanical load sharing between muscles is evaluated during dynamic and fatiguing contractions.
在静态收缩过程中,肌肉内压(IMP)和肌电图(EMG)反映了非疲劳肌肉中的肌力。本研究探讨了随着力量增加,IMP与EMG之间恒定关系是否能扩展到动态收缩以及疲劳肌肉。在三个阶段记录了肩部肌肉的IMP和EMG:1). 手臂在0至90度角度进行短暂静态外展,手中有或无1千克重物;2). 手臂以9至90度/秒的角速度进行动态外展,手中有或无1千克重物;3). 手臂在30度进行30分钟的长时间静态外展,随后恢复。在短暂静态任务中,IMP和EMG随着肩部扭矩增加而平行升高。在动态收缩过程中,IMP和EMG峰值增加到高于静态收缩时的值,并且EMG随外展速度显著增加,但IMP没有。在非疲劳的冈上肌中,IMP与EMG之间存在线性关系;相反,在疲劳和恢复过程中,IMP与EMG比值出现了显著的时间变化。结果表明,在评估动态和疲劳收缩过程中肌肉间的机械负荷分担时,应将IMP与EMG一起纳入考量。