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橄榄球争球前锋腿部肌肉功能。

Lower extremity muscle function of front row rugby union scrummaging.

机构信息

School of Sport Exercise and Nutrition, Massey University , Wellington , New Zealand.

School of Public Health, Massey University , Wellington , New Zealand.

出版信息

Sports Biomech. 2019 Dec;18(6):636-648. doi: 10.1080/14763141.2018.1452972. Epub 2018 May 16.

Abstract

A rugby scrum's front row must act uniformly to transfer maximal horizontal force and improve performance. This study investigated the muscle activation patterns of lower extremity muscles in front row forwards during live and machine scrums at professional and amateur levels. Electromyography was collected bilaterally on vastus lateralis, rectus femoris and gastrocnemius muscles of 75 male rugby prop players during live and machine scrums. ANOVAs compared muscle reaction time, rate of change in muscle amplitude and muscle amplitude between groups and conditions. Cross-correlation analysis explored muscle synchronicity. There were significantly greater rates of change in each muscle amplitude in professional players than amateur players. Additionally, there was significantly quicker muscle reaction time in all muscles, and greater amplitude in vastus lateralis and gastrocnemius, during the live scrum vs. machine condition. The professional props produced more synchronised muscle activation than amateur players and all players produced more synchronised muscle activation against the scrum machine vs. live scrummage. The results indicate a higher skill proficiency and muscle synchronicity in professional players. While scrum machine training is ideally suited for functional muscle strengthening during practice, to truly simulate the requirements of the scrum, training should incorporate the live situation as much as possible.

摘要

英式橄榄球争球的前排队员必须统一行动,以传递最大的水平力并提高表现。本研究调查了职业和业余水平的英式橄榄球争球中,前排前锋在活球和机器争球时下肢肌肉的肌肉激活模式。对 75 名男性英式橄榄球前锋在活球和机器争球时的股外侧肌、股直肌和腓肠肌进行了双侧肌电图采集。方差分析比较了肌肉反应时间、肌肉振幅变化率和组间及条件下的肌肉振幅。交叉相关分析探讨了肌肉同步性。与业余运动员相比,职业运动员的每个肌肉振幅变化率都显著更高。此外,与机器争球相比,在活球争球中,所有肌肉的肌肉反应时间都更快,股外侧肌和腓肠肌的振幅也更大。职业前锋比业余运动员产生了更同步的肌肉激活,并且所有运动员在机器争球时比活球争球时产生了更同步的肌肉激活。研究结果表明,职业运动员的技术水平和肌肉同步性更高。虽然争球机器训练非常适合在练习中增强功能性肌肉力量,但要真正模拟争球的要求,训练应尽可能结合实际情况。

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