Chan A Y, Lee F L, Wong P K, Wong C Y, Yeung S S
Department of Rehabilitation Sciences, Hong Kong Polytechnic University, Hung Hom, Hong Kong.
Eur J Appl Physiol. 2001 Jan-Feb;84(1-2):36-41. doi: 10.1007/s004210000326.
The effects of different knee joint angles and fatigue on the neuromuscular control of the vastus medialis oblique (VMO) and vastus lateralis (VL) muscles were investigated in 17 (11 men, 6 women) young subjects. The electromyogram (EMG) activities and the force generation capacities were monitored before and after a fatigue protocol at three different knee joint angles, 90 degrees, 150 degrees, 175 degrees of knee extension, on three occasions. In response to randomly triggered light signals, the subjects performed three isometric maximal voluntary contraction (IMVC) that lasted for 4 to 8 s. This was then followed by the fatigue protocol which consisted of six bursts of contractions fixed at 30 s on and 10 s off. Immediately after the exercise to fatigue, the subjects performed another three IMVC in response to the light signals. Repeated measures ANOVA were performed to examine the effects of fatigue at these three positions on the electromechanical delay (EMD), median frequency (fmed), peak force (Fpeak) and root mean square (rms)-EMG:Fpeak quotient of VMO and VL. The results revealed a significant effect of the three knee joint angles on the EMD before the fatigue (P < 0.05). The fatigue protocol induced a significant decrease in Fpeak at all the three positions (P < 0.01). However, the fatigue induced a significant decrease of fmed at only 90 degrees and 150 degrees of knee extension (P < 0.01). This occurred in parallel with the lengthening of EMD at these two joint angles (P < 0.01 and P < 0.05). The effects of fatigue on the fmed and EMD were not significant between VMO and VL at all three angles. The insignificant difference in fmed and EMD between VMO and VL at the three knee positions before and after fatigue indicated that no preferential onset activation between VMO and VL had occurred.
在17名(11名男性,6名女性)年轻受试者中,研究了不同膝关节角度和疲劳对股内侧斜肌(VMO)和股外侧肌(VL)神经肌肉控制的影响。在三个不同的膝关节角度(膝关节伸展90度、150度、175度)下,在疲劳方案前后三次监测肌电图(EMG)活动和力量产生能力。受试者响应随机触发的光信号,进行三次持续4至8秒的等长最大自主收缩(IMVC)。然后是疲劳方案,包括六组固定为收缩30秒、休息10秒的收缩。运动至疲劳后,受试者立即响应光信号再进行三次IMVC。进行重复测量方差分析,以检验这三个位置的疲劳对VMO和VL的机电延迟(EMD)、中频(fmed)、峰值力(Fpeak)和均方根(rms)-EMG:Fpeak商的影响。结果显示,在疲劳前,三个膝关节角度对EMD有显著影响(P<0.05)。疲劳方案导致所有三个位置的Fpeak显著降低(P<0.01)。然而,疲劳仅导致膝关节伸展90度和150度时fmed显著降低(P<0.01)。这与这两个关节角度下EMD的延长同时发生(P<0.01和P<0.05)。在所有三个角度下,疲劳对VMO和VL的fmed和EMD的影响均不显著。疲劳前后三个膝关节位置VMO和VL之间fmed和EMD的差异不显著,表明VMO和VL之间未发生优先起始激活。