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Neuromechanical adaptation induced by jumping on an elastic surface

机译:在弹性表面上跳跃引起的神经机械适应

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摘要

Jumping on an elastic surface produces a number of sensory and motor adjustments. This effect caused by jumping on the trampoline has been called " trampoline aftereffect". The objective of the present study was to investigate the neuromuscular response related with this effect. A group of 15 subjects took part in an experimental session, where simultaneous biomechanical and electromyographic (EMG) recordings were performed during the execution of maximal countermovement jumps (CMJs) before and after jumping on an elastic surface. We assessed motor performance (leg stiffness, jump height, peak force, vertical motion of center of mass and stored and returned energy) and EMG activation patterns of the leg muscles. The results showed a significant increase (p≤0.05) of the RMS EMG of knee extensors during the eccentric phase of the jump performed immediately after the exposure phase to the elastic surface (CMJ_1), and a significant increase (p≤0.05) in the levels of co-activation of the muscles crossing the ankle joint during the concentric phase of the same jump. Results related with motor performance of CMJ_1 showed a significant increase in the leg stiffness (p≤0.01) due to a lower vertical motion of center of mass (CoM) (p≤0.005), a significant decrease in jump height (p≤0.01), and a significantly smaller stored and returned energy (p≤0.01). The changes found during the execution of CMJ_1 may result from a mismatch between sensory feedback and the efferent copy.
机译:在弹性表面上跳跃会产生多种感觉和运动调节。由跳床引起的这种效应被称为“蹦床后效应”。本研究的目的是研究与此作用相关的神经肌肉反应。一组15名受试者参加了一次实验,在弹性表面上跳跃前后,在进行最大反向运动跳跃(CMJ)的过程中,同时进行了生物力学和肌电(EMG)记录。我们评估了腿部肌肉的运动性能(腿部僵硬,跳跃高度,峰值力,质心的垂直运动以及存储和返回的能量)和EMG激活模式。结果表明,在暴露于弹性表面(CMJ_1)之后立即进行的跳跃的偏心阶段中,膝部伸肌的RMS EMG显着增加(p≤0.05),而在膝部伸直的阶段中,膝部伸肌的RMS EMG显着增加(p≤0.05)。同一跳跃的同心阶段跨踝关节的肌肉的共同激活水平。与CMJ_1的运动表现有关的结果显示,由于重心(CoM)的垂直运动较低(p≤0.005),腿部僵硬度显着增加(p≤0.01),跳跃高度显着下降(p≤0.01) ,并且存储和返回的能量要小得多(p≤0.01)。在执行CMJ_1期间发现的更改可能是由于感觉反馈与传出副本之间的不匹配所致。

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