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Neural control of leg stiffness during hopping in boys and men

机译:男性和男性跳跃期间腿部僵硬的神经控制

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摘要

The purpose of the study was to investigate whether boys and men utilise different control strategies whilst hopping. Eleven boys (11-12. yr old) and ten men completed hopping at 1.5. Hz, 3.0. Hz and at their preferred frequency. A footswitch measured contact and flight times, from which leg stiffness was calculated. Simultaneously, surface electromyograms (EMGs) of selected lower limb muscles were recorded and quantified for each 30. ms period during the first 120. ms post-ground contact. At 1.5. Hz there were no differences between the groups in relative stiffness or muscle activity. At 3.0. Hz men had significantly shorter contact times (P=0.013), longer flight times (P=0.002), greater relative stiffness (P=0.01) and significantly greater soleus (P=0.012) and vastus lateralis (P<0.001) activity during the initial 30. ms post-ground contact. At the preferred frequency men hopped significantly faster than the boys (P=0.007), with greater leg stiffness (P<0.01) and with more extensor activity in most time periods. Boys and men demonstrated similar control strategies when hopping at a slow frequency, but when hopping frequency increased men were able to better increase feedforward and reflex muscle activity to hop with greater relative stiffness.
机译:该研究的目的是调查男孩和男人在跳动时是否使用不同的控制策略。 11名男孩(11至12岁)和10名男子完成了1.5的跳跃。赫兹,3.0。 Hz和它们的首选频率。脚踏开关可测量接触时间和飞行时间,从而计算出腿部的刚度。同时,在下一个地面接触后的最初120. ms内,每隔30. ms记录并记录所选下肢肌肉的表面肌电图(EMG)。在1.5。 Hz,相对刚度或肌肉活动在两组之间没有差异。在3.0。 Hz男性在接触期间的接触时间(P = 0.013)明显缩短(P = 0.013),飞行时间较长(P = 0.002),相对刚度(P = 0.01)更大,比目鱼肌(P = 0.012)和股外侧肌(P <0.001)活跃。初始30毫秒。在最佳频率下,男子的跳步速度明显快于男孩(P = 0.007),在大多数时间段中,腿的僵硬度更高(P <0.01),伸肌活动更多。男孩和男人在慢跳时表现出相似的控制策略,但是当跳频增加时,男人能够更好地增加前馈和反射性肌肉活动,从而以更大的相对刚度跳动。

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