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全身振动结合额外负荷训练对提高田径运动员力量和速度的作用

Whole-body vibration combined with extra-load training for enhancing the strength and speed of track and field athletes.

作者信息

Wang Hsiang-Hsin, Chen Wei-Han, Liu Chiang, Yang Wen-Wen, Huang Mao-Ying, Shiang Tzyy-Yuang

机构信息

1Division of Physical Education, National Jhuolan Experimental Senior High School, Taichung, Taiwan; 2Graduate Institute of Sports Equipment Technology, University of Taipei, Taipei, Taiwan; 3Graduate Institute of Physical Education, National Taiwan Normal University, Taipei, Taiwan; 4Department of Physical Therapy and Assistive Technology, National Yang-Ming University, Taipei, Taiwan; and 5Department of Athletic Performance, National Taiwan Normal University, Taipei, Taiwan.

出版信息

J Strength Cond Res. 2014 Sep;28(9):2470-7. doi: 10.1519/JSC.0000000000000437.

Abstract

The purpose of this study was to investigate whether whole-body vibration (WBV) combined with extra-load training can enhance the strength and speed of trained athletes compared with isolated WBV training or loaded training (LT) only. Twenty-one elite male track and field athletes were randomly assigned to a loaded vibration (LV) training group (n = 7), an unloaded vibration (ULV) training group (n = 7), and a LT group (n = 7). During 4 weeks of training, the LV group received the vibration stimulus (30 Hz and 4 mm) accompanied by a load comprising 75% of the maximum voluntary contraction (MVC), the ULV group received the same vibration stimulus without any load, and the LT group received only a load of 75% MVC without any vibration stimulus. The knee extensor isometric strength, and the concentric and eccentric strength were measured using an isokinetic dynamometer at 300°·s at a 30-m sprint speed before and after the training period. A 2-way mixed analysis of variance (time × group) was used to analyze the differences. Significant time × group interactions were observed for all the dependent variables (p ≤ 0.05). Regarding the post hoc analysis results, the LV group exhibited significant improvements for all the dependent variables after training (p ≤ 0.05), whereas the ULV group exhibited significantly reduced sprint speeds (p ≤ 0.05). The LV group demonstrated significantly superior eccentric strength compared with the ULV and LT groups after training (p ≤ 0.05), and the LV group also produced significantly superior sprint speeds compared with the ULV group after training (p ≤ 0.05). Vibration combined with extra-load training for 4 weeks significantly increased the muscle strength and speed of the elite male track and field athletes.

摘要

本研究旨在探讨与单独的全身振动(WBV)训练或仅负重训练(LT)相比,全身振动结合额外负重训练是否能增强训练有素的运动员的力量和速度。21名精英男性田径运动员被随机分为负重振动(LV)训练组(n = 7)、无负重振动(ULV)训练组(n = 7)和LT组(n = 7)。在为期4周的训练期间,LV组接受振动刺激(30Hz和4mm),同时伴有占最大自主收缩(MVC)75%的负荷,ULV组接受相同的振动刺激但无任何负荷,LT组仅接受占MVC75%的负荷且无任何振动刺激。在训练期前后,使用等速测力计在300°·s、30米冲刺速度下测量膝关节伸肌等长力量以及向心和离心力量。采用双向混合方差分析(时间×组)来分析差异。所有因变量均观察到显著的时间×组交互作用(p≤0.05)。关于事后分析结果,LV组在训练后所有因变量均有显著改善(p≤0.05),而ULV组的冲刺速度显著降低(p≤0.05)。训练后,LV组与ULV组和LT组相比,离心力量显著更优(p≤0.05),且LV组与ULV组相比,训练后的冲刺速度也显著更优(p≤0.05)。振动结合额外负重训练4周可显著提高精英男性田径运动员的肌肉力量和速度。

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