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Relationship between muscle coordination and forehand drive velocity in tennis

机译:网球中肌肉协调性与正手驱动速度之间的关系

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摘要

This study aimed at investigating the relationship between trunk and upper limb muscle coordination and stroke velocity during tennis forehand drive. The electromyographic (EMG) activity of ten trunk and dominant upper limb muscles was recorded in 21 male tennis players while performing five series of ten crosscourt forehand drives. The forehand drive velocity ranged from 60% to 100% of individual maximal velocity. The onset, offset and activation level were calculated for each muscle and each player. The analysis of muscle activation order showed no modification in the recruitment pattern regardless of the velocity. However, the increased velocity resulted in earlier activation of the erector spinae, latissimus dorsi and triceps brachii muscles, as well as later deactivation of the erector spinae, biceps brachii and flexor carpi radialis muscles. Finally, a higher level of activation was observed with the velocity increase in the external oblique, latissimus dorsi, middle deltoid, biceps brachii and triceps brachii. These results might bring new knowledge for strength and tennis coaches to improve resistance training protocols in a performance and prophylactic perspective.
机译:这项研究旨在调查网球正手击球过程中躯干和上肢肌肉协调性与冲程速度之间的关系。在21个男性网球运动员中,在进行十个交叉场地正手击球运动的五个系列时,记录了十个躯干和上肢主要肌肉的肌电图(EMG)活动。正手驱动速度为单个最大速度的60%至100%。计算每个肌肉和每个运动员的发作,偏移和激活水平。肌肉激活顺序的分析显示,无论速度如何,募集模式均未改变。然而,增加的速度导致了竖脊肌,背阔肌和肱三头肌的早期活化,以及后来的竖脊肌,肱二头肌和radial屈腕肌肉的失活。最后,随着外斜肌,背阔肌,中三角肌,肱二头肌和肱三头肌的速度增加,观察到更高水平的激活。这些结果可能会为力量和网球教练带来新知识,从而从性能和预防的角度改善阻力训练方案。

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