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Changes in Impact Signals and Muscle Activity in Response to Different Shoe and Landing Conditions

机译:响应不同的鞋子和着陆条件冲击信号和肌肉活动的变化

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摘要

Few rigorous scientific studies have investigated how the corresponding neuromuscular activity in the lower extremity occurs during different landing control movements in response to different impact signals. This study aimed to determine the potential shoe effects on impact signals, neuromuscular responses and their possible interactions in different human landing movements. Twelve male basketball players were required to wear high-cushioned basketball shoes (BS) and minimally cushioned control shoes (CC) to perform active drop jump landings (DJL) and passive landings (PL). Ground reaction forces and EMG amplitude (root mean square, EMGRMS) of the leg muscles within 50 ms before and after the landing movements were collected simultaneously. No shoe effect was found on the characteristics of impact signals and neuromuscular activity during the contact phase of DJL. By contrast, for PL, the values of maximal ground reaction force and the peak loading rate were evidently lower in the BS condition than in the CC condition (p < 0.05). Meanwhile, the EMGRMS of all muscles demonstrated a significant decrease in the BS condition compared with the CC condition within 50 ms after contact (p < 0.05). These findings suggest that under the condition in which related muscles are activated improperly, a neuromuscular adaptation occurs in response to different impact signals.
机译:很少有严格的科学研究研究在响应不同的撞击信号而进行不同的着陆控制运动期间下肢相应的神经肌肉活动如何发生。这项研究旨在确定鞋子在不同的人类着陆运动中对撞击信号,神经肌肉反应及其可能的相互作用的潜在影响。要求十二名男性篮球运动员穿高垫篮球鞋(BS)和最小缓冲的控制鞋(CC),以执行主动跳投着陆(DJL)和被动着陆(PL)。同时收集着陆运动前后50毫秒内腿部肌肉的地面反作用力和EMG振幅(均方根,EMGRMS)。在DJL的接触阶段,未发现鞋对撞击信号和神经肌肉活动的影响。相比之下,对于PL,BS条件下的最大地面反作用力和峰值加载速率的值明显低于CC条件下的(p <0.05)。同时,在接触后50 ms内,与CC状态相比,所有肌肉的EMGRMS均显着降低(p <0.05)。这些发现表明,在相关肌肉被不正确激活的情况下,响应于不同的冲击信号发生了神经肌肉适应。

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