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首页> 外文期刊>European Journal of Applied Physiology >Unilateral arm strength training improves contralateral peak force and rate of force development
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Unilateral arm strength training improves contralateral peak force and rate of force development

机译:单侧手臂力量训练可提高对侧峰值力量和力量发展速度

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摘要

Neural adaptation following maximal strength training improves the ability to rapidly develop force. Unilateral strength training also leads to contralateral strength improvement, due to cross-over effects. However, adaptations in the rate of force development and peak force in the contralateral untrained arm after one-arm training have not been determined. Therefore, we aimed to detect contralateral effects of unilateral maximal strength training on rate of force development and peak force. Ten adult females enrolled in a 2-month strength training program focusing of maximal mobilization of force against near-maximal load in one arm, by attempting to move the given load as fast as possible. The other arm remained untrained. The training program did not induce any observable hypertrophy of any arms, as measured by anthropometry. Nevertheless, rate of force development improved in the trained arm during contractions against both submaximal and maximal loads by 40–60%. The untrained arm also improved rate of force development by the same magnitude. Peak force only improved during a maximal isometric contraction by 37% in the trained arm and 35% in the untrained arm. One repetition maximum improved by 79% in the trained arm and 9% in the untrained arm. Therefore, one-arm maximal strength training focusing on maximal mobilization of force increased rapid force development and one repetition maximal strength in the contralateral untrained arm. This suggests an increased central drive that also crosses over to the contralateral side.
机译:最大强度训练后的神经适应可以提高快速发展力量的能力。由于交叉效应,单侧力量训练还可以提高对侧力量。但是,尚未确定单臂训练后对侧未训练臂的力量发展速度和峰值力量的适应性。因此,我们旨在检测单侧最大力量训练对力量发展速度和峰值力量的对侧影响。十名成年女性参加了为期2个月的力量训练计划,该计划着重于通过尽可能快地移动给定的负载来最大程度地调动力量来抵抗一只手臂上的接近最大负载。另一只手臂未受训练。训练计划没有通过人体测量法引起任何手臂的可观察到的肥大。然而,在承受次最大和最大载荷的收缩过程中,受过训练的手臂的力量发展速度提高了40-60%。未经训练的手臂也将力量发展的速度提高了相同的幅度。仅在最大等距收缩过程中,峰值力量仅在受过训练的手臂中提高了37%,在未受过训练的手臂中提高了35%。在训练有素的手臂中,最大重复次数提高了79%,在未训练中的手臂中提高了9%。因此,侧重于最大力量的单臂最大力量训练增加了对侧未训练手臂的快速力量发展和一个重复最大力量。这表明增加的中央驱动力也跨过对侧。

著录项

  • 来源
    《European Journal of Applied Physiology》 |2008年第5期|553-559|共7页
  • 作者单位

    Institute of Biomedical and Life Sciences University of Glasgow West Medical Building Glasgow G12 8QQ UK;

    Institute of Biomedical and Life Sciences University of Glasgow West Medical Building Glasgow G12 8QQ UK;

    Department of Circulation and Medical Imaging Norwegian University of Science and Technology Trondheim Norway;

    Department of Circulation and Medical Imaging Norwegian University of Science and Technology Trondheim Norway;

    Institute of Biomedical and Life Sciences University of Glasgow West Medical Building Glasgow G12 8QQ UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Contralateral; Cross-over; Neural adaptation; Strength; Unilateral;

    机译:对侧;交叉;神经适应;强度;单侧;

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