王玮, 朱志强, 殷可意, 宋林杰, 姜祎凡, 刘宇. 2020: 经颅直流电刺激对纵跳生物力学特征的影响. 体育科学, 40(7): 57-64. DOI: 10.16469/j.css.202007007
    引用本文: 王玮, 朱志强, 殷可意, 宋林杰, 姜祎凡, 刘宇. 2020: 经颅直流电刺激对纵跳生物力学特征的影响. 体育科学, 40(7): 57-64. DOI: 10.16469/j.css.202007007
    WANG Wei, ZHU Zhi-qiang, YIN Ke-yi, SONG Lin-jie, JIANG Yi-fan, LIU Yu. 2020: Effects of Transcranial Direct Current Stimulation on Biomechanical Characteristics during Countermovement Jump. China Sport Science, 40(7): 57-64. DOI: 10.16469/j.css.202007007
    Citation: WANG Wei, ZHU Zhi-qiang, YIN Ke-yi, SONG Lin-jie, JIANG Yi-fan, LIU Yu. 2020: Effects of Transcranial Direct Current Stimulation on Biomechanical Characteristics during Countermovement Jump. China Sport Science, 40(7): 57-64. DOI: 10.16469/j.css.202007007

    经颅直流电刺激对纵跳生物力学特征的影响

    Effects of Transcranial Direct Current Stimulation on Biomechanical Characteristics during Countermovement Jump

    • 摘要: 目的:通过观察经颅直流电刺激前后,纵跳生物力学曲线和瞬时特征的变化,探究其对纵跳运动表现的影响。方法:15位跳跃类国家二级运动员接受随机交叉设计的阳极刺激(电流2 mA,持续20 min)和假刺激两种实验条件。分别在刺激前,刺激后即刻和刺激后30 min完成纵跳测试。通过双因素重复测量方差分析(刺激条件×时间)比较两种实验条件前后纵跳生物力学指标的差异。结果:1)瞬时特征:纵跳高度在阳极刺激后即刻和刺激后30 min显著高于刺激前;质心最低点地面反作用力在阳极刺激后即刻和刺激后30 min显著高于刺激前;峰值蹬地功率、发力率和下肢刚度在阳极刺激后即刻显著高于刺激前,阳极刺激组峰值蹬地功率在刺激后即刻和刺激后30 min显著高于假刺激组(P<0.05);2)曲线特征:垂直冲量在阳极刺激后即刻和刺激后30 min显著大于刺激前;释放能量和肌肉主动做功在阳极刺激后即刻显著高于刺激前(P<0.05)。结论:阳极经颅直流电刺激可以提高纵跳运动表现,不仅能够促进瞬时特征的变化,而且可以调节整个动作周期生物力学曲线特征,增强下肢力量及神经肌肉系统功能。

       

      Abstract: Objective: To investigate the effects of transcranial Direct Current Stimulation(t DCS) on Countermovement Jump(CMJ)performance according to the changes of instantaneous and temporal characteristics during CMJ before and after t DCS. Methods:With a random and crossover experimental design, fifteen jumpers(national second-level athlete) received either Anodal t DCS(At DCS)(2 m A, 20 minutes) or Sham t DCS(S-t DCS) stimulation. Subjects completed CMJ tests before and after stimulation immediately(post-0) and 30 minutes(post-30). Two-way ANOVA with repeated measures(condition×time) were performed for all the variables. Results: 1) Instantaneous characteristics: The CMJ height at post-0 and post-30 were significantly higher than that of pre-stimulation. The ground reaction force at the lowest of the center of mass(COM) was increased significantly after A-t DCS(post-0 and post-30). The peak propulsion power was larger than that of pre-stimulation after A-t DCS, and there was a significant difference between A-t DCS and S-t DCS after stimulation(post-0 and post-30)(P<0.05). For A-t DCS(post-0), rate of force development and leg stiffness were increased significantly than pre-stimulation. 2) Temporal characteristics: The vertical impulse at post-0 and post-30 were significantly higher than that of pre-stimulation in A-t DCS. For A-t DCS, the energy returned and active work done by muscle were increased significantly at post-0 than pre-stimulation(P<0.05). Conclusion: It is showed that the Anodal t DCS could enhance sports performance during CMJ. The t DCS shows positive effects on both instantaneous and temporal characteristics, which result in an improvement in explosive capacity and neuromuscular performance.

       

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