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振动对人手臂屈肌机械功率和肌电图活动的影响。

Influence of vibration on mechanical power and electromyogram activity in human arm flexor muscles.

作者信息

Bosco C, Cardinale M, Tsarpela O

机构信息

University of Rome-Tor Vergata, Fondazione Don Gnocchi, Italy.

出版信息

Eur J Appl Physiol Occup Physiol. 1999 Mar;79(4):306-11. doi: 10.1007/s004210050512.

Abstract

The aim of this study was to evaluate the influence of vibration on the mechanical properties of arm flexors. A group of 12 international level boxers, all members of the Italian national team, voluntarily participated in the experiment: all were engaged in regular boxing training. At the beginning of the study they were tested whilst performing forearm flexion with an extra load equal to 5% of the subjects' body mass. Following this. one arm was given the experimental treatment (E; mechanical vibration) and the other was the control (no treatment). The E treatment consisted of five repetitions lasting 1-min each of mechanical vibration applied during arm flexion in isometric conditions with 1 min rest between them. Further tests were performed 5 min immediately after the treatment on both limbs. The results showed statistically significant enhancement of the average power in the arm treated with vibrations. The root mean square electromyogram (EMGrms) had not changed following the treatment but, when divided by mechanical power, (P) as an index of neural efficiency, it showed statistically significant increases. It was concluded that mechanical vibrations enhanced muscle P and decreased the related EMG/P relationship in elite athletes. Moreover, the analysis of EMGrms recorded before the treatment and during the treatment itself showed an enormous increase in neural activity during vibration up to more than twice the baseline values. This would indicate that this type of treatment is able to stimulate the neuromuscular system more than other treatments used to improve neuromuscular properties.

摘要

本研究的目的是评估振动对臂屈肌力学性能的影响。一组12名国际水平的拳击手,均为意大利国家队队员,自愿参与了该实验:他们都进行常规拳击训练。在研究开始时,让他们在额外负荷等于受试者体重5%的情况下进行前臂屈曲测试。在此之后,一只手臂接受实验处理(E组;机械振动),另一只手臂作为对照(不进行处理)。E组处理包括在等长条件下手臂屈曲时进行五次机械振动,每次持续1分钟,每次之间休息1分钟。在处理后立即对双上肢进行5分钟后的进一步测试。结果显示,接受振动处理的手臂平均功率有统计学意义的增强。处理后均方根肌电图(EMGrms)没有变化,但当除以机械功率(P)作为神经效率指标时,显示出统计学意义的增加。得出的结论是,机械振动增强了精英运动员的肌肉P,并降低了相关的肌电图/功率关系。此外,对处理前和处理过程中记录的EMGrms分析表明,振动期间神经活动大幅增加,高达基线值的两倍以上。这表明这种类型的处理比用于改善神经肌肉性能的其他处理更能刺激神经肌肉系统。

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