首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Neuromuscular fatigue during dynamic maximal strength and hypertrophic resistance loadings
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Neuromuscular fatigue during dynamic maximal strength and hypertrophic resistance loadings

机译:动态最大强度和肥大抵抗负荷时的神经肌肉疲劳

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The purpose of this study was to compare the acute neuromuscular fatigue during dynamic maximal strength and hypertrophic loadings, known to cause different adaptations underlying strength gain during training. Thirteen healthy, untrained males performed two leg press loadings, one week apart, consisting of 15 sets of 1 repetition maximum (MAX) and 5 sets of 10 repetition maximums (HYP). Concentric load and muscle activity, electromyography (EMG) amplitude and median frequency, was assessed throughout each set. Additionally, maximal bilateral isometric force and muscle activity was assessed pre-, mid-, and up to 30. min post-loading. Concentric load during MAX was decreased after set 10 (P< 0.05), while the load was maintained throughout HYP. Both loadings caused large reductions in maximal isometric force (MAX = -30 ± 6.4% vs HYP = -48 ± 9.7%, P< 0.001). The decreased concentric and isometric strength during MAX loading was accompanied by reduced EMG amplitude (P< 0.05). Conversely, hypertrophic loading caused decreased median frequency only during isometric contractions (P< 0.01). During concentric contractions, EMG amplitude increased and median frequency decreased in HYP (P< 0.01). Our results indicate reduced neural drive during MAX loading and more complex changes in muscle activity during HYP loading.
机译:这项研究的目的是比较动态最大强度和肥大负荷过程中的急性神经肌肉疲劳,已知在训练过程中会导致不同的适应力增加。 13名健康,未经训练的男性进行两次腿部压力训练,间隔一周,包括15组1次重复最大值(MAX)和5组10次重复最大值(HYP)。在每组中评估同心负荷和肌肉活动,肌电图(EMG)幅度和中位频率。此外,在负荷前,负荷中和负荷后30分钟内评估了最大的双边等距力量和肌肉活动。设置10后,MAX期间的同心载荷降低(P <0.05),而整个HYP载荷均保持不变。两种载荷都导致最大等距力的大幅降低(MAX = -30±6.4%vs HYP = -48±9.7%,P <0.001)。 MAX加载过程中同心强度和等距强度的降低伴随着EMG幅度的降低(P <0.05)。相反,肥大的负荷仅在等轴测收缩期间引起中位频率降低(P <0.01)。在同心收缩过程中,HYP的EMG幅度增加,中位频率降低(P <0.01)。我们的结果表明,在MAX加载过程中神经驱动减少,而在HYP加载过程中肌肉活动的变化更为复杂。

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