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首页> 外文期刊>Acta of Bioengineering and Biomechanics >Neuromechanical control in submaximal drop jumps: The effects of volitional effort demands and drop height magnitude on soleus muscle activation
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Neuromechanical control in submaximal drop jumps: The effects of volitional effort demands and drop height magnitude on soleus muscle activation

机译:潜水跌落中的神经力学控制跳跃:激动力的需求和降低高度对肌肌激活的影响

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Purpose: The purpose of this study was to investigate soleus muscle activation during different phases of drop jump performed at submaximal levels of volitional effort and drop height magnitude. Methods: Fifteen professional volleyball players with minimum of eight years of experience in jumping activities participated in the study. Experimental protocol involved executing submaximal drop jumps at three levels of volitional effort (i.e., 65, 80 and 95% of the maximal height of jump). All submaximal drop jumps were done from three drop heights (20, 40 and 60 cm). The soleus muscle activation was monitored during four jump phases: pre-activation phase before touchdown, early contact phase upon touchdown, early and late push-off phase. Results: The results indicate that volitional effort level did not change the muscle activation during pre activation and early contact phase, but only in early and late push-off phase (p <= 0.05). Conversely, it was observed that muscle activation during all phases of drop jump was adapted to the increased intensity of the external load caused by increasing of drop height magnitude (p <= 0.01). Conclusions: The findings of the present study suggested that soleus muscle activation has selective responses to internal load (i.e., volitional effort level) and external load (i.e., drop height magnitude) intensities when drop jump is executing with submaximal effort
机译:目的:本研究的目的是在不同阶段的不同阶段进行肠道跳跃,在潜水水平的加速努力和降低高度幅度下进行液滴跳跃。方法:十五名专业排球运动员,最少八年的跳跃活动经验参加了这项研究。实验方案涉及执行潜冲液滴的三个加剧努力(即65,80和95%的跳跃高度)。所有潜水柱跌幅跳跃都是从三个下降高度(20,40和60厘米)完成的。在四个跳跃阶段监测Soleus肌肉活化:触地前的预活化阶段,触地震,早期和晚期推关阶段的早期接触阶段。结果:结果表明,激活和早期接触阶段的激动效率水平没有改变肌肉活化,但仅在早期和晚期推迟阶段(P <= 0.05)。相反,观察到滴跳的所有阶段的肌肉激活适应通过增加下降高度幅度引起的外部负荷的增强强度(P <= 0.01)。结论:本研究的发现表明,当下拉跳跃正在执行时,肌肉激活具有对内部载荷(即,加速努力水平)和外部负荷(即,下降高度幅度)强度的选择性反应

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