Laboratoire INSERM U887, Université de Bourgogne, Faculté des Sciences du Sport, UFR STAPS, Campus Universitaire Montmuzard, BP 27877, 21078, Dijon Cedex, France.
Eur J Appl Physiol. 2011 Aug;111(8):1571-8. doi: 10.1007/s00421-010-1775-1. Epub 2010 Dec 28.
The aim of the present study was to determine whether the difference in maximal voluntary contraction (MVC) forces between unilateral (UL) and bilateral (BL) contractions could be due to a difference in the timing of MVC peak force production between legs during BL MVC, or due to the maximal voluntary activation level (VAL) in each leg between UL and BL MVC. Thirteen active men (28 ± 6 years) volunteered to participate in an experimental session requiring the performance of MVC with right, left and both knee extensor muscles. An ergometer equipped with two strain gauges was used to assess the timing of MVC peak force production of each leg during BL MVC. Transcutaneous electrical stimulation was used to investigate VAL and electromyography (EMG) activity. The present results showed that the sum of the right and left UL MVC was higher compared to BL MVC force, i.e., a BL deficit of force. The timing of MVC peak force production of each leg during BL MVC was not different, but BL MVC force was lower than the sum of BL MVC(R) and BL MVC(L) force (i.e., maximal force production of each leg during BL MVC). No changes of EMG activity, M-wave amplitude, VAL, and peak doublet between UL and BL contractions were observed. The difference found in the production of force during BL MVC cannot be explained by the timing of force production of each leg.
本研究旨在确定双侧(BL)收缩时双腿在 BL 最大自主收缩(MVC)中产生最大力量的时间差异,或者由于 UL 和 BL MVC 之间每条腿的最大自主激活水平(VAL),是否会导致单侧(UL)和双侧收缩之间的最大自主收缩(MVC)力量存在差异。13 名活跃男性(28±6 岁)自愿参加实验,需要用右、左和双侧膝关节伸肌进行 MVC 测试。使用配备两个应变计的测力计来评估 BL MVC 中每条腿 MVC 最大力量产生的时间。经皮电刺激用于研究 VAL 和肌电图(EMG)活动。本研究结果表明,与 BL MVC 相比,右侧和左侧 UL MVC 的总和更高,即 BL 力量不足。BL MVC 中每条腿的 MVC 最大力量产生的时间没有差异,但 BL MVC 力量低于 BL MVC(R)和 BL MVC(L)的总和(即 BL MVC 中每条腿的最大力量产生)。在 UL 和 BL 收缩期间未观察到 EMG 活动、M 波幅度、VAL 和峰值双重变化。BL MVC 中发现的力产生差异不能用每条腿的力产生时间来解释。