首页> 外文期刊>Journal of sport rehabilitation >Hamstring Stiffness Returns More Rapidly After Static Stretching Than Range of Motion, Stretch Tolerance, and Isometric Peak Torque
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Hamstring Stiffness Returns More Rapidly After Static Stretching Than Range of Motion, Stretch Tolerance, and Isometric Peak Torque

机译:在静态拉伸后,腿筋刚度比运动范围,拉伸公差和等距峰值扭矩更快地返回更快的速度

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Context: Hamstring injuries are common, and lack of hamstring flexibility may predispose to injury. Static stretching not only increases range of motion (ROM) but also results in reduced muscle strength after stretching. The effects of stretching on the hamstring muscles and the duration of these effects remain unclear. Objective: To determine the effects of static stretching on the hamstrings and the duration of these effects. Design: Randomized crossover study. Setting: University laboratory. Participants: A total of 24 healthy volunteers. Interventions: The torque-angle relationship (ROM, passive torque [PT] at the onset of pain, and passive stiffness) and isometric muscle force using an isokinetic dynamometer were measured. After a 60-minute rest, the ROM of the dynamometer was set at the maximum tolerable intensity; this position was maintained for 300 seconds, while static PT was measured continuously. The torque-angle relationship and isometric muscle force after rest periods of 10, 20, and 30 minutes were remeasured. Main Outcome Measures: Change in static PT during stretching and changes in ROM, PT at the onset of pain, passive stiffness, and isometric muscle force before stretching were compared with 10, 20, and 30 minutes after stretching. Results: Static PT decreased significantly during stretching. Passive stiffness decreased significantly 10 and 20 minutes after stretching, but there was no significant prestretching versus poststretching difference after 30 minutes. PT at the onset of pain and ROM increased significantly after stretching at all rest intervals, while isometric muscle force decreased significantly after all rest intervals. Conclusions: The effect of static stretching on passive stiffness of the hamstrings was not maintained as long as the changes in ROM, stretch tolerance, and isometric muscle force. Therefore, frequent stretching is necessary to improve the viscoelasticity of the muscle-tendon unit. Muscle force decreased for 30 minutes after stretching; this should be considered prior to activities requiring maximal muscle strength.
机译:背景:腿筋伤害很常见,缺乏腿筋灵活性可能易于伤害。静态拉伸不仅增加了运动范围(ROM),而且还导致拉伸后的肌肉强度降低。拉伸对腿筋肌肉的影响和这些效果的持续时间仍然尚不清楚。目的:确定静态拉伸对腿筋上的影响及这些效果的持续时间。设计:随机交叉研究。环境:大学实验室。参与者:共24个健康的志愿者。干预:测量扭矩 - 角度关系(疼痛发作的无源扭矩[Pt],使用等距测力计的等距肌肉力量。休息60分钟后,测力计的ROM以最大的可容忍强度设定;将该位置保持300秒,而连续测量静态Pt。重复静止10,20和30分钟后的扭矩角关系和等距肌肉力。主要结果措施:在拉伸后疼痛,被动刚度和等距肌肉发作的拉伸和变化过程中的静态Pt变化,与拉伸后的10,20和30分钟。结果:拉伸期间静态PT显着下降。拉伸后,被动刚度明显减少了10%和20分钟,但30分钟后没有显着的预伸位率与后伸位差异。在休息间隔拉伸后,疼痛发作和ROM的发作显着增加,而等距肌肉力在所有休息间隔之后显着降低。结论:只要ROM,拉伸耐受性和等距肌肉力的变化,静态拉伸对腿筋的无源刚度的影响。因此,需要频繁拉伸以改善肌腱单元的粘弹性。拉伸后肌肉力减少30分钟;这应该在需要最大肌肉力量的活动之前考虑。

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