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使用振动训练来增强肌肉力量和爆发力。

The use of vibration training to enhance muscle strength and power.

作者信息

Luo Jin, McNamara Brian, Moran Kieran

机构信息

School of Sport Science and Health, Dublin City University, Dublin, Ireland.

出版信息

Sports Med. 2005;35(1):23-41. doi: 10.2165/00007256-200535010-00003.

Abstract

Vibration has been combined with conventional resistance training in an attempt to attain greater gains in neuromuscular performance than from conventional resistance training alone. Although there is a lack of strictly controlled studies on the vibration training effect, current findings in this area suggest that vibration may have a beneficiary acute and/or chronic training effect on strength and power enhancement. However, the effect of vibration on strength and power development appears dependent upon the vibration characteristics (method of application, amplitude and frequency) and exercise protocols (training type, intensity and volume) employed. Vibration amplitude and frequency determine the load that vibration imposes on the neuromuscular system. This vibration load should be in an optimal range to elicit strength and power enhancement. To activate the muscle most effectively, vibration frequency should be in the range of 30-50 Hz. It is less clear to what the optimal amplitude should be, but smaller amplitudes may be insufficient to elicit an enhancement. It should also be noted that the method of vibration application (i.e. vibration applied directly or indirectly to a targeted muscle) may have an influence on the magnitude of amplitude and frequency that are delivered to the muscle and, therefore, may have an influence on vibration training effect. The employment of a greater exercise intensity and volume within a vibration training programme may facilitate a larger enhancement in strength and power. In addition, benefits from vibration training may be greater in elite athletes than non-elite athletes. Further studies are required to examine these inter-dependencies, especially in relation to chronic adaptation to dynamic exercises, which are the most relevant response to practitioners, but where the least amount of research has been undertaken.

摘要

振动已与传统阻力训练相结合,试图在神经肌肉性能方面取得比单纯传统阻力训练更大的提升。尽管缺乏关于振动训练效果的严格对照研究,但该领域目前的研究结果表明,振动可能对力量和功率增强具有有益的急性和/或慢性训练效果。然而,振动对力量和功率发展的影响似乎取决于所采用的振动特性(应用方法、振幅和频率)以及运动方案(训练类型、强度和量)。振动振幅和频率决定了振动施加在神经肌肉系统上的负荷。这种振动负荷应处于最佳范围内,以引发力量和功率增强。为了最有效地激活肌肉,振动频率应在30 - 50赫兹范围内。最佳振幅应为多少尚不太明确,但较小的振幅可能不足以引发增强效果。还应注意的是,振动应用方法(即直接或间接施加到目标肌肉的振动)可能会影响传递到肌肉的振幅和频率大小,因此可能会影响振动训练效果。在振动训练计划中采用更大的运动强度和量可能有助于更大程度地增强力量和功率。此外,振动训练对精英运动员的益处可能比对非精英运动员更大。需要进一步研究来检验这些相互依存关系,特别是与对动态运动的慢性适应相关的关系,这是对从业者最相关的反应,但目前对此研究最少。

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