Cramer Joel T, Housh Terry J, Johnson Glen O, Weir Joseph P, Beck Travis W, Coburn Jared W
Department of Health and Exercise Science, University of Oklahoma, Norman, OK 73019-6081, USA.
J Orthop Sports Phys Ther. 2007 Mar;37(3):130-9. doi: 10.2519/jospt.2007.2389.
Repeated-measures experimental design.
To examine the acute effects of static stretching on peak torque, the joint angle at peak torque, mean power output, and electromyographic and mechanomyographic amplitudes and mean power frequency of the vastus lateralis and rectus femoris muscles during maximal eccentric isokinetic muscle actions.
A bout of static stretching may impair muscle strength during isometric and concentric muscle actions, but it is unclear how static stretching may affect eccentric force production.
Fifteen men (mean +/- SD age, 23.4 +/- 2.4 years) performed maximal eccentric isokinetic muscle actions of the dominant and nondominant knee extensor muscles at 60 degrees x s(-1) and 180 degrees x s(-1) on an isokinetic dynamometer, while electromyographic and mechanomyographic amplitudes (root-mean-square) and mean power frequency were calculated for the vastus lateralis and rectus femoris muscles. Peak torque (Nm), the joint angle at peak torque (degrees), and mean power output (W) values were recorded by the dynamometer. Subsequently, the dominant lower extremity knee extensors underwent static stretching exercises, then the assessments were repeated.
There were no stretching-related changes in peak torque, the joint angle at peak torque, mean power output, electromyographic or mechanomyographic amplitude, or mean power frequency (P > .05). However, there were expected velocity-related, limb-related, and muscle-related differences (P < or = .05) that were unrelated to the stretching intervention.
These results suggest that static stretching does not affect maximal eccentric isokinetic torque or power production, nor does it change muscle activation.
重复测量实验设计。
研究在最大离心等速肌肉运动过程中,静态拉伸对股外侧肌和股直肌的峰值扭矩、峰值扭矩时的关节角度、平均功率输出以及肌电图和机械肌电图振幅及平均功率频率的急性影响。
一次静态拉伸可能会损害等长和向心肌肉运动时的肌肉力量,但尚不清楚静态拉伸如何影响离心力的产生。
15名男性(平均±标准差年龄,23.4±2.4岁)在等速测力计上以60度/秒和180度/秒的速度对优势和非优势膝伸肌进行最大离心等速肌肉运动,同时计算股外侧肌和股直肌的肌电图和机械肌电图振幅(均方根)及平均功率频率。测力计记录峰值扭矩(牛顿米)、峰值扭矩时的关节角度(度)和平均功率输出(瓦)值。随后,对优势下肢膝伸肌进行静态拉伸练习,然后重复评估。
峰值扭矩、峰值扭矩时的关节角度、平均功率输出、肌电图或机械肌电图振幅或平均功率频率均无与拉伸相关的变化(P>.05)。然而,存在预期的与速度相关、肢体相关和肌肉相关的差异(P≤.05),这些差异与拉伸干预无关。
这些结果表明,静态拉伸不影响最大离心等速扭矩或功率产生,也不改变肌肉激活。