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在伸展-缩短周期中,腿部刚度、力和腿部肌肉神经控制之间的关系取决于对下落高度的预期。

The relationship between leg stiffness, forces and neural control of the leg musculature during the stretch-shortening cycle is dependent on the anticipation of drop height.

机构信息

Institute of Sport and Sport Science, University of Freiburg, Schwarzwaldstr. 175, 79117, Freiburg, Germany.

出版信息

Eur J Appl Physiol. 2019 Sep;119(9):1981-1999. doi: 10.1007/s00421-019-04186-7. Epub 2019 Jul 31.

Abstract

PURPOSE

This study aimed at investigating how prior knowledge of drop heights affects proactive and reactive motor control in drop jumps (DJ).

METHODS

In 22 subjects, the effect of knowledge of three different drop heights (20, 30, 40 cm) during DJs was evaluated in seven conditions: three different drop heights were either known, unknown or cheated (announced 40 cm, but actual drop height was 20 cm). Peak ground reaction force (F) to body weight (BW) ratio (F/BW) and electromyographic (EMG) activities of three shank and five thigh muscles were assessed 150 ms before and during ground contact (GC). Ankle, knee and hip joint kinematics were recorded in the sagittal plane.

RESULTS

Leg stiffness, proactive and reactive EMG activity of the leg muscles diminished in unknown and cheat conditions for all drop heights (7-33% and 2-26%, respectively). Antagonistic co-activation increased in unknown (3-37%). At touchdown, increased flexion in knee (~ 5.3° ± 1.9°) and hip extension (~ 2° ± 0.6°) were observed in unknown, followed by an increased angular excursion in hip (~ 2.3° ± 0.2°) and knee joints (~ 5.6° ± 0.2°) during GC (p < 0.05). Correlations between changes in activation intensities, joint kinematics, leg stiffness and F/BW (p < 0.05) indicate that anticipation changes the neuromechanical coupling of DJs. No dropouts were recorded.

CONCLUSION

These findings underline that anticipation influences timing and adjustment of motor responses. It is argued that proactive and reactive modulations associated with diminished activation intensities in leg extensors are functionally relevant in explaining changes in leg stiffness and subsequent decline in performance.

摘要

目的

本研究旨在探讨在跳深中,预先了解下落高度对主动和被动运动控制的影响。

方法

在 22 名受试者中,通过七种条件评估了在跳深中预先了解三种不同下落高度(20、30、40 cm)的影响:三种不同的下落高度分别是已知、未知或欺骗(宣布高度为 40 cm,但实际下落高度为 20 cm)。在接触地面前 150 毫秒和接触地面期间,评估了峰值地面反作用力(F)与体重(BW)比值(F/BW)和三个小腿肌肉和五个大腿肌肉的肌电图(EMG)活动。在矢状面记录踝关节、膝关节和髋关节的运动学。

结果

在未知和欺骗条件下,所有下落高度的腿部刚度、主动和被动腿部肌肉的 EMG 活动均降低(分别为 7-33%和 2-26%)。未知条件下的拮抗肌协同激活增加(3-37%)。在未知条件下,在触地时观察到膝关节(~ 5.3°±1.9°)和髋关节伸展(~ 2°±0.6°)的过度屈曲,随后在 GC 期间髋关节(~ 2.3°±0.2°)和膝关节(~ 5.6°±0.2°)的角度运动增加(p<0.05)。激活强度、关节运动学、腿部刚度和 F/BW 变化之间的相关性(p<0.05)表明,预期会改变跳深的神经机械耦合。没有记录到数据丢失。

结论

这些发现强调了预期会影响运动反应的时机和调整。有人认为,与腿部伸肌激活强度降低相关的主动和被动调节在解释腿部刚度的变化和随后的性能下降方面具有功能相关性。

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