首页> 外文期刊>European journal of applied physiology >Changes in force, surface and motor unit EMG during post-exercise development of low frequency fatigue in vastus lateralis muscle.
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Changes in force, surface and motor unit EMG during post-exercise development of low frequency fatigue in vastus lateralis muscle.

机译:运动后的外侧阔肌低频疲劳发展过程中,力量,表面和运动单位肌电的变化。

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摘要

We investigated the effects of low frequency fatigue (LFF) on post-exercise changes in rectified surface EMG (rsEMG) and single motor unit EMG (smuEMG) in vastus lateralis muscle (n = 9). On two experimental days the knee extensors were fatigued with a 60-s-isometric contraction (exercise) at 50% maximal force capacity (MFC). On the first day post-exercise (15 s, 3, 9, 15, 21 and 27 min) rsEMG and electrically-induced (surface stimulation) forces were investigated. SmuEMG was obtained on day two. During short ramp and hold (5 s) contractions at 50% MFC, motor unit discharges of the same units were followed over time. Post-exercise MFC and tetanic force (100 Hz stimulation) recovered to about 90% of the pre-exercise values, but recovery with 20 Hz stimulation was less complete: the 20-100 Hz force ratio (mean +/- SD) decreased from 0.65+/-0.06 (pre-exercise) to 0.56+/-0.04 at 27 min post-exercise (P<0.05), indicative of LFF. At 50% MFC, pre-exercise rsEMG (% pre-exercise maximum) and motor unit discharge rate were 51.1 +/- 12.7% and 14.1 +/- 3.7 (pulses per second; pps) respectively, 15 s post-exercise the respective values were 61.4 +/- 15.4% (P<0.05) and 13.2 +/- 5.6 pps (P>0.05). Thereafter, rsEMG (at 50% MFC) remained stable but motor unit discharge rate significantly increased to 17.7 +/- 3.9 pps 27 min post-exercise. The recruitment threshold decreased (P<0.05) from 27.7 +/- 6.6% MFC before exercise to 25.2 +/- 6.7% 27 min post-exercise. The increase in discharge rate was significantly greater than could be expected from the decrease in recruitment threshold. Thus, post-exercise LFF was compensated by increased motor unit discharge rates which could only partly be accounted for by the small decrease in motor unit recruitment threshold.
机译:我们研究了低频疲劳(LFF)对股外侧肌(n = 9)的矫正表面肌电图(rsEMG)和单个运动单位肌电图(smuEMG)的运动后变化的影响。在实验的两天中,以50%的最大力量(MFC)进行60 s等距收缩(锻炼)使膝部伸肌疲劳。在运动后的第一天(15 s,3、9、15、21和27分钟),研究了rsEMG和电感应(表面刺激)力。在第二天获得了SmuEMG。在50%MFC的短暂倾斜和保持(5 s)收缩过程中,随着时间的推移跟踪相同单元的电机单元放电。运动后的MFC和强直作用力(100 Hz刺激)恢复到运动前值的约90%,但是20 Hz刺激的恢复并不完全:20-100 Hz的力比(平均值+/- SD)从运动后27分钟(运动前)为0.65 +/- 0.06(运动前)至0.56 +/- 0.04(P <0.05),表明LFF。在MFC为50%的情况下,运动后15 s,运动前rsEMG(最大运动前百分比)和电机单位放电率分别为51.1 +/- 12.7%和14.1 +/- 3.7(每秒脉冲; pps)。值为61.4 +/- 15.4%(P <0.05)和13.2 +/- 5.6 pps(P> 0.05)。此后,运动后27分钟rsEMG(在MFC浓度为50%时)保持稳定,但电机单位放电速率显着提高至17.7 +/- 3.9 pps。募集阈值从运动前的27.7 +/- 6.6%MFC降低(P <0.05)至运动后27分钟的25.2 +/- 6.7%。出院率的增加明显大于招募门槛下降的预期。因此,运动后的LFF被增加的运动单位放电率所补偿,这只能部分地由运动单位募集阈值的小幅下降来弥补。

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