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在跳蹲过程中,负荷对系统和下肢关节动力学的影响。

The effects of load on system and lower-body joint kinetics during jump squats.

机构信息

Exercise Science Department, East Stroudsburg University, East Stroudsburg, PA 18301-2999, USA.

出版信息

Sports Biomech. 2012 Nov;11(4):492-506. doi: 10.1080/14763141.2012.725426.

Abstract

To investigate the effects of different loads on system and lower-body kinetics during jump squats, 12 resistance-trained men performed jumps under different loading conditions: 0%, 12%, 27%, 42%, 56%, 71%, and 85% of 1-repetition maximum (1-RM). System power output was calculated as the product of the vertical component of the ground reaction force and the vertical velocity of the bar during its ascent. Joint power output was calculated during bar ascent for the hip, knee, and ankle joints, and was also summed across the joints. System power output and joint power at knee and ankle joints were maximized at 0% 1-RM (p < 0.001) and followed the linear trends (p < 0.001) caused by power output decreasing as the load increased. Power output at the hip was maximized at 42% 1-RM (p = 0.016) and followed a quadratic trend (p = 0.030). Summed joint power could be predicted from system power (p < 0.05), while system power could predict power at the knee and ankle joints under some of the loading conditions. Power at the hip could not be predicted from system power. System power during loaded jumps reflects the power at the knee and ankle, while power at the hip does not correspond to system power.

摘要

为了研究在跳跃蹲时不同负荷对系统和下肢动力学的影响,12 名经过抗阻训练的男性在不同的负荷条件下进行跳跃:0%、12%、27%、42%、56%、71%和 85%的 1 次重复最大值(1-RM)。系统功率输出被计算为垂直地面反作用力的垂直分量和杠铃在上升过程中的垂直速度的乘积。关节功率输出在杠铃上升期间被计算为髋关节、膝关节和踝关节的功率输出,并在关节之间进行了总和。系统功率输出和膝关节和踝关节的关节功率在 0% 1-RM 时达到最大值(p < 0.001),并且遵循由于负载增加而导致的功率输出减少的线性趋势(p < 0.001)。髋关节的功率输出在 42% 1-RM 时达到最大值(p = 0.016),并且遵循二次趋势(p = 0.030)。关节总功率可以从系统功率预测(p < 0.05),而在某些负荷条件下,系统功率可以预测膝关节和踝关节的功率。髋关节的功率不能从系统功率预测。负荷跳跃时的系统功率反映了膝关节和踝关节的功率,而髋关节的功率与系统功率不对应。

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