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首页> 外文期刊>Journal of strength and conditioning research >An electromyographical comparison of trunk muscle activity during isometric trunk and dynamic strengthening exercises.
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An electromyographical comparison of trunk muscle activity during isometric trunk and dynamic strengthening exercises.

机译:在等距躯干和动态强化锻炼过程中躯干肌肉活动的肌电图比较。

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摘要

The purpose of this study was to compare rectus abdominis and erector spinae muscle activity during isometric (prone bridge [PB] and superman [SM]) and dynamic strengthening exercises (back squat, front squat [FS], and military press). Participants (n = 10, age 21.8 +/- 2.6 years; body mass 82.65 +/- 10.80 kg, 174.5+/- 7.2 cm), performed each exercise in a randomized order, using a repeated-measures design. Electromyographical (EMG) activity (sampling at 2,000 Hz) of the rectus abdominis (RA) and the erector spinae (ES) muscles was recorded throughout the duration of the exercises. Intraclass correlations demonstrated the highest levels of reliability for muscle activity during the isometric exercises; however, all exercises demonstrated high level of reliability (r = 0.764-0.998, p 0.05) between the FS and the SM exercise. The PB may be the most suitable exercise for strengthening the RA, compared to dynamic exercises at a low to moderate load, because of a higher level of muscle activity. The FS may be a useful alternative to isometric exercises when strengthening the ES, because it results in slightly higher muscle activity levels when using only a light to moderate load. Because of the dynamic nature of the FS, this may also be more beneficial in transferring to activities of daily living and sporting environments.
机译:这项研究的目的是比较在等距(俯卧桥[PB]和超人[SM])和动态强化锻炼(后蹲,前蹲[FS]和军事新闻)期间的腹直肌和直立脊柱肌肉活动。参与者(n = 10,年龄21.8 +/- 2.6岁;体重82.65 +/- 10.80公斤,174.5 +/- 7.2厘米)采用重复测量设计以随机顺序进行每次锻炼。在整个锻炼过程中,记录了腹直肌(RA)和竖脊肌(ES)肌肉的肌电图(EMG)活动(以2,000 Hz采样)。类内相关性表明等距锻炼期间肌肉活动的最高可靠性。但是,所有练习都显示出很高的可靠性(r = 0.764-0.998,p 0.05)。与低负荷到中等负荷的动态锻炼相比,PB可能是增强RA的最合适锻炼,因为其肌肉活动水平较高。当加强ES时,FS可能是等距锻炼的有用替代方法,因为当仅使用轻至中度负荷时,它会导致肌肉活动水平略高。由于FS的动态特性,这在转移到日常生活和运动环境的活动中也可能更为有益。

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