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Kinematic and EMG data during underwater dolphin kick change while synchronizing with or without synchronization of kick frequency with the beat of a metronome

机译:水下海豚踢动过程中的运动学和EMG数据发生变化同时与有无节拍频率与节拍器的节拍同步

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摘要

We investigated the effects of synchronizing kick frequency with the beat of a metronome on kinematic and electromyographic (EMG) parameters during the underwater dolphin kick as a pilot study related to the research that entitled “Effect of increased kick frequency on propelling efficiency and muscular co-activation during underwater dolphin kick” (Yamakawa et al., 2017) . Seven collegiate female swimmers participated in this experiment. The participants conducted two underwater dolphin kick trials: swimming freely at maximum effort, and swimming while synchronizing the kick frequency of maximum effort with the beat of a metronome. The kinematic parameters during the underwater dolphin kick were calculated by 2-D motion analysis, and surface electromyographic measurements were taken from six muscles (rectus abdominis, erector spinae, rectus femoris, biceps femoris, tibialis anterior, and gastrocnemius). The results revealed no significant differences in the kinematic and EMG parameters between trials of the two swimming techniques. Therefore, the action of synchronizing the kick frequency with the beat of a metronome did not affect movement or muscle activity during the underwater dolphin kick in this experiment.
机译:我们调查了水下海豚脚踢过程中,将脚踢频率与节拍器的节拍同步对运动学和肌电图(EMG)参数的影响,这是一项名为“增加脚踢频率对推进效率和肌肉协同运动的影响”的研究。水下海豚踢时激活”(Yamakawa等,2017)。七名大学女游泳运动员参加了该实验。参与者进行了两次水下海豚踢球试验:以最大的努力自由游泳,以及在将最大努力的踢腿频率与节拍器的节拍同步的同时游泳。通过2-D运动分析计算水下海豚脚踢过程中的运动学参数,并从6条肌肉(腹直肌,竖脊肌,股直肌,股二头肌,胫骨前肌和腓肠肌)进行肌电测量。结果表明,两种游泳技术的试验在运动学和肌电参数方面无显着差异。因此,在此实验中,将脚踢频率与节拍器的节拍同步的动作不会影响水下海豚脚踢期间的运动或肌肉活动。

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