首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Neuromuscular Strategies in Stretch–Shortening Exercises with Increasing Drop Heights: The Role of Muscle Coactivation in Leg Stiffness and Power Propulsion
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Neuromuscular Strategies in Stretch–Shortening Exercises with Increasing Drop Heights: The Role of Muscle Coactivation in Leg Stiffness and Power Propulsion

机译:随着下降高度的增加缩短锻炼中的神经肌肉策略:肌肉共置在腿刚度和动力推进中的作用

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摘要

When applying drop jump exercises, knowing the magnitude of the stimulus is fundamental to stabilize the leg joints and to generate movements with the highest power. The effects of different drop heights on leg muscles coactivation, leg stiffness and power propulsion were investigated in fifteen sport science students. Drop jumps from heights of 20, 30, 40, 50, and 60 cm in a random order were performed on a force platform. During each drop jump, the ground reaction force, knee angle displacement, and synchronized surface-electromyography root-mean-square (sEMGRMS) activity (vastus lateralis, VL; vastus medialis, VM; rectus femoris, RF; biceps femoris, BF; tibialis anterior, TA and lateral gastrocnemius, LG) were recorded. The coactivation in the pre-contact phase, between VL and BF, VM and BF as well as RF and BF, was dependent on the drop height (p < 0.01; effect size (ES) ranged from 0.45 to 0.90). Leg stiffness was dependent on the drop height (p < 0.001; ES = 0.27–0.28) and was modulated by the coactivation of VM–BF (p = 0.034) and RF–BF (p = 0.046) during the braking phase. Power propulsion was also dependent on the drop height (p < 0.001; ES = 0.34); however, it was primarily modulated by the coactivation of LG–TA during the braking phase (p = 0.002). The coactivation of thigh muscles explains leg stiffness adjustments at different drop heights. On the contrary, the coactivation of shank muscles is mostly responsible for the power propulsion.
机译:在施加液滴跳转练习时,知道刺激的幅度是稳定腿部关节的基础,并产生最高功率的运动。五十体育科学生研究了不同跌落高度对腿部肌肉共同,腿刚度和动力推进的影响。在力平台上执行从20,30,40,50和60cm的高度跳跃的跳跃是在力平台上执行的。在每个滴跳期间,地面反作用力,膝关节位移和同步表面 -​​ 耳廓根平均(SEMGRMS)活性(SEMGRMS)活性(VL; VORS; rectus medialis,VM; rectus pherusis,RF;二头肌股骨,BF;蒂巴斯记录前,TA和外侧腓肠肌,LG)。在VL和BF,VM和BF之间以及RF和BF之间的预接触相之间的共置取决于下降高度(P <0.01;效果大小范围为0.45至0.90)。腿刚度依赖于下降高度(P <0.001; ES = 0.27-0.28),并通过在制动相期间通过VM-BF(P = 0.034)和RF-BF(P = 0.046)的共置来调节。电力推进也取决于下降高度(P <0.001; ES = 0.34);然而,它主要通过在制动阶段的LG-Ta的共置来调节(P = 0.002)。大腿肌的共同肌肉解释了不同下降高度的腿刚度调整。相反,柄肌的共同肌肉主要负责电力推进。

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