Department of Kinesiology, Southern Illinois University Carbondale, 1075 South Normal Drive, Mailcode 4310, Carbondale, IL 62901, USA.
Eur J Appl Physiol. 2011 Jul;111(7):1269-78. doi: 10.1007/s00421-010-1742-x. Epub 2010 Dec 4.
Loading of the low back tissues induces tension-relaxation in the viscoelastic connective tissues. The extent to which repetitive loading influences the muscle activation and subsequent muscle force production has not been fully explored. The purpose of this study was to examine the myoelectric activity of the trunk muscles during maximal flexion and extension exertions before and after a passive trunk flexion-extension protocol. Nineteen subjects performed three trials of maximal efforts in trunk flexion and extension while seated in an upright position. Surface electromyography (EMG) recordings were collected bilaterally from paraspinal (thoracic, TP, lumbar LP), rectus abdominis (RA), and external oblique muscles. A 10-minute passive trunk flexion-extension protocol was used to repetitively load the lumbar tissues at a rate of 0.17 rad/s, through the subjects' range of motion. The main findings included a significant reduction in moment output during extension efforts (p < 0.05) with significant reductions in the average EMG from the TP and LP muscles during extension (p < 0.05). In flexion, peak and average EMGs were also significantly reduced (p < 0.05). The results indicate a significant reduction in the ability of the trunk extensors to output force, but this may be due to the increased compliance of the connective tissues rather than modified neuromuscular signals to the paraspinal muscles. However, neuromuscular changes were apparent in the TP and RA muscles suggesting a modified control mechanism was present.
加载下背部组织会使黏弹性结缔组织产生张力松弛。重复性加载对肌肉激活和随后的肌肉力量产生的影响尚未得到充分探索。本研究的目的是在被动屈伸运动方案前后,检查最大屈伸运动时躯干肌肉的肌电图(EMG)活动。19 名受试者在直立坐姿下进行了三次最大躯干屈伸运动。从竖脊肌(胸段、TP、腰段、LP)、腹直肌(RA)和腹外斜肌双侧采集表面 EMG 记录。使用 10 分钟的被动屈伸运动方案,以 0.17 rad/s 的速率重复加载腰椎组织,通过受试者的运动范围。主要发现包括伸展运动时力矩输出显著降低(p<0.05),伸展时 TP 和 LP 肌肉的平均 EMG 显著降低(p<0.05)。在屈曲时,峰值和平均 EMG 也显著降低(p<0.05)。结果表明,躯干伸肌输出力的能力显著降低,但这可能是由于结缔组织的顺应性增加,而不是对竖脊肌的神经肌肉信号发生改变。然而,TP 和 RA 肌肉的神经肌肉变化明显,表明存在改变的控制机制。