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训练引起的人体肌肉体内力-速度关系的改变。

Training-induced alterations of the in vivo force-velocity relationship of human muscle.

作者信息

Caiozzo V J, Perrine J J, Edgerton V R

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1981 Sep;51(3):750-4. doi: 10.1152/jappl.1981.51.3.750.

Abstract

Seventeen male and female subjects (ages 20-38 yr) were tested pre- and posttraining for maximal knee extension torque at seven specific velocities (0, 0.84, 1.68, 2.51, 3.35, 4.19, and 5.03 rad . s-1) with an isokinetic dynamometer. Maximal knee extension torques were recorded at a specific joint angle (0.52 rad below the horizontal plane) for all test speeds. Subjects were randomly assigned to one of three experimental groups: group A, control, n = 7; group B, training at 1.68 rad . s-1, n = 5; or group C, training at 4.19 rad . s-1, n = 5. Subjects trained the knee extensors by performing two sets of 10 single maximal voluntary efforts three times a week for 4 wk. Before training, each training group exhibited a leveling-off of muscular tension in the slow velocity-high force region of the in vivo force-velocity relationship. Training at 1.68 rad . s-1 resulted in significant (P less than 0.05) improvements at all velocities except for 5.03 rad . s-1 and markedly affected the leveling-off in the slow velocity-high force region. Training at 4.19 rad . s-1 did not affect the leveling-off phenomenon but brought about significant improvements (P less than 0.05) at velocities of 2.51, 3.35, and 4.19 rad . s-1. The changes seen in the leveling-off phenomenon suggest that training at 1.68 rad . s-1 might have brought about an enhancement of motoneuron activation.

摘要

17名男性和女性受试者(年龄20 - 38岁)在训练前后使用等速测力计在7种特定速度(0、0.84、1.68、2.51、3.35、4.19和5.03弧度·秒⁻¹)下测试最大膝关节伸展扭矩。在所有测试速度下,均在特定关节角度(低于水平面0.52弧度)记录最大膝关节伸展扭矩。受试者被随机分配到三个实验组之一:A组为对照组,n = 7;B组以1.68弧度·秒⁻¹的速度进行训练,n = 5;C组以4.19弧度·秒⁻¹的速度进行训练,n = 5。受试者通过每周进行三次、每次两组、每组10次的单次最大自主用力来训练膝关节伸肌,持续4周。训练前,每个训练组在体内力 - 速度关系的低速 - 高力区域均表现出肌肉张力的平稳状态。以1.68弧度·秒⁻¹的速度进行训练,除5.03弧度·秒⁻¹外,在所有速度下均产生了显著(P < 0.05)改善,并明显影响了低速 - 高力区域的平稳状态。以4.19弧度·秒⁻¹的速度进行训练并未影响平稳状态现象,但在2.51、3.35和4.19弧度·秒⁻¹的速度下带来了显著(P < 0.05)改善。在平稳状态现象中观察到的变化表明,以1.68弧度·秒⁻¹的速度进行训练可能增强了运动神经元的激活。

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