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在不同落高处进行跳降时,四头肌和腿筋的激活情况。

Quadricep and hamstring activation during drop jumps with changes in drop height.

机构信息

Department of Physical Education, Chinese Culture University, Taipei, Taiwan.

出版信息

Phys Ther Sport. 2011 Aug;12(3):127-32. doi: 10.1016/j.ptsp.2010.10.001. Epub 2010 Nov 26.

Abstract

OBJECTIVE

Compare the muscle activation patterns of the quadricep-hamstring during drop jumps with increasing demands of drop heights.

DESIGN

Observational.

SETTING

University biomechanics laboratory.

PARTICIPANTS

Fifteen male and eight female college physical education students.

MAIN OUTCOME MEASURES

Electromyographic activity of the rectus femoris (RF) and biceps femoris (BF) during the landing and takeoff phase of drop jumps from 20 to 60-cm heights. The ground contact time, vertical ground reaction force (vGRF), knee flexion angle during ground contact, and jump height after takeoff were also analyzed.

RESULTS

The activation of RF was higher in the drop jump from 60-cm than that from 20- and 30-cm (comparing 107.0 ± 45.9 to 82.3 ± 30.8 and 88.9 ± 38.9 %MVIC, P<.05) during the landing phase. Activation of BF remained similar across all drop heights. Drop jump from 60-cm resulted in greater contact time during takeoff phase and peak vGRF, and resulted in greater maximum knee flexion but straighter knee at ground contact than from lower drop heights.

CONCLUSION

At drop height of 60-cm, the altered knee muscular activation and movement patterns may diminish the effectiveness of plyometric training and increase the potential injury risk of knee.

摘要

目的

比较不同高度跳下跳时股四头肌-腘绳肌的肌肉激活模式。

设计

观察性研究。

设置

大学生物力学实验室。

参与者

15 名男性和 8 名女性大学生体育教育专业学生。

主要观察指标

从 20 厘米到 60 厘米高度跳下跳的落地和起跳阶段,股直肌(RF)和股二头肌(BF)的肌电图活动。还分析了地面接触时间、垂直地面反作用力(vGRF)、地面接触时的膝关节屈曲角度以及起跳后的跳跃高度。

结果

在落地阶段,60 厘米高度跳下跳的 RF 激活高于 20 厘米和 30 厘米高度(分别比较 107.0±45.9%MVIC、82.3±30.8%MVIC 和 88.9±38.9%MVIC,P<.05)。BF 的激活在所有跳下高度均相似。60 厘米高度跳下跳在起跳阶段产生更大的接触时间和峰值 vGRF,并导致更大的最大膝关节屈曲度,但在地面接触时膝关节更直。

结论

在 60 厘米的跳下高度下,改变的膝关节肌肉激活和运动模式可能会降低增强式训练的效果,并增加膝关节受伤的潜在风险。

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