首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Neuromuscular fatigue following low-intensity dynamic exercise with externally applied vascular restriction
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Neuromuscular fatigue following low-intensity dynamic exercise with externally applied vascular restriction

机译:低强度动态运动并外部施加血管限制后的神经肌肉疲劳

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This study investigated neuromuscular fatigue following low-intensity resistance exercise with vascular restriction (VR) and without vascular restriction (control, CON). Fourteen males participated in two experimental trials (VR and CON) each separated by 48 h. Each participant performed two isometric maximum voluntary contractions (MVCs) before and after five sets of 20 dynamic constant external resistance leg extension exercises (DCER-EX) at 20% of one-repetition maximum (1-RM). The participants were asked to lift (1.5 s) and lower (1.5 s) the load at a constant velocity. Surface electromyography (EMG) was recorded from the vastus lateralis during MVC and DCER-EX. Twitch interpolation was used to assess the percent of maximal voluntary activation (%VA) during the MVC. During performing five sets of 20 DCER-EX, the increases (p < 0.05) in EMG amplitude and decreases (p < 0.05) in EMG mean power frequency were similar for both VR and CON. However, there were significant differences between VR and CON for MVC force, %VA, and potentiated twitch force and significant interactions for EMG amplitude. VR decreased MVC force, %VA, potentiated twitch force, and EMG amplitude more than CON. Our findings suggest that the VR-induced fatigue may have been due to a combination of peripheral (decreases in potentiated twitch) and central (decreases in %VA and EMG amplitude) fatigue.
机译:这项研究调查了低强度抵抗运动后,血管受限(VR)和无血管受限(对照,CON)后的神经肌肉疲劳。 14名男性参加了两个实验试验(VR和CON),每个实验间隔48小时。每位参与者在进行五组20次动态恒定外阻力腿伸展运动(DCER-EX)之前和之后进行两次等距最大自愿收缩(MVC),每次重复最大运动量(1-RM)为20%。要求参与者以恒定速度提起(1.5 s)和降低(1.5 s)负荷。在MVC和DCER-EX期间从股外侧肌记录表面肌电图(EMG)。抽动插值用于评估MVC期间最大自愿激活(%VA)的百分比。在执行五组20个DCER-EX的过程中,VR和CON的EMG幅度增加(p <0.05)和EMG平均功率频率减少(p <0.05)相似。但是,VR和CON之间的MVC力,%VA和增强的抽搐力之间存在显着差异,而EMG振幅之间存在显着的相互作用。 VR比CON降低MVC力,%VA,增强的抽搐力和EMG幅度。我们的研究结果表明,VR诱发的疲劳可能是由于周围疲劳(强力抽搐减少)和中枢疲劳(%VA和EMG振幅降低)共同造成的。

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