首页> 外文期刊>The Journal of Physiology >Locomotor muscle fatigue modifies central motor drive in healthy humans and imposes a limitation to exercise performance.
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Locomotor muscle fatigue modifies central motor drive in healthy humans and imposes a limitation to exercise performance.

机译:运动性肌肉疲劳会改变健康人的中枢运动驱动力,并限制运动表现。

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We asked whether the central effects of fatiguing locomotor muscle fatigue exert an inhibitory influence on central motor drive to regulate the total degree of peripheral fatigue development. Eight cyclists performed constant-workload prefatigue trials (a) to exhaustion (83% of peak power output (W(peak)), 10 +/- 1 min; PFT(83%)), and (b) for an identical duration but at 67% W(peak) (PFT(67%)). Exercise-induced peripheral quadriceps fatigue was assessed via changes in potentiated quadriceps twitch force (DeltaQ(tw,pot)) from pre- to post-exercise in response to supra-maximal femoral nerve stimulation (DeltaQ(tw,pot)). On different days, each subject randomly performed three 5 km time trials (TTs). First, subjects repeated PFT(83%) and the TT was started 4 min later with a known level of pre-existing locomotor muscle fatigue (DeltaQ(tw,pot) -36%) (PFT(83%)-TT). Second, subjects repeated PFT(67%) and the TT was started 4 min later with a known level of pre-existing locomotor muscle fatigue (DeltaQ(tw,pot) -20%) (PFT(67%)-TT). Finally, a control TT was performed without any pre-existing level of fatigue. Central neural drive during the three TTs was estimated via quadriceps EMG. Increases in pre-existing locomotor muscle fatigue from control TT to PFT(83%)-TT resulted in significant dose-dependent changes in central motor drive (-23%), power output (-14%), and performance time (+6%) during the TTs. However, the magnitude of locomotor muscle fatigue following various TTs was not different (DeltaQ(tw,pot) of -35 to -37%, P = 0.35). We suggest that feedback from fatiguing muscle plays an important role in the determination of central motor drive and force output, so that the development of peripheral muscle fatigue is confined to a certain level.
机译:我们问疲劳的运动性肌肉疲劳疲劳的中心作用是否会对中枢运动驱动产生抑制作用,从而调节周围疲劳发展的总程度。八名骑车人进行了恒定工作量的疲劳前试验(a)到力竭(峰值功率输出(W(peak)的83%,10 +/- 1分钟; PFT(83%)),和(b)持续相同的时间在67%W(peak)(PFT(67%))。运动引起的外周股四头肌疲劳是通过运动后股四头肌的最大股神经刺激(DeltaQ(tw,pot))的增强来评估的。在不同的日期,每个受试者随机进行三个5公里的时间试验(TT)。首先,受试者重复PFT(83%),并在4分钟后以已知水平的运动肌疲劳(DeltaQ(tw,pot)-36%)(PFT(83%)-TT)开始TT。其次,受试者重复PFT(67%),并在4分钟后以已知水平的运动肌疲劳(DeltaQ(tw,pot)-20%)(PFT(67%)-TT)开始TT。最后,在没有任何预先存在的疲劳水平的情况下进行了对照TT。通过股四头肌肌电图估计三个TT期间的中枢神经驱动。从对照TT到PFT(83%)-TT之前存在的运动肌疲劳增加,导致中央电机驱动(-23%),功率输出(-14%)和运动时间(+6)的明显剂量依赖性变化%)。但是,各种TT后运动肌疲劳的程度无差异(DeltaQ(tw,pot)为-35至-37%,P = 0.35)。我们认为,疲劳肌肉的反馈在确定中央运动驱动力和力输出中起着重要作用,因此周围肌肉疲劳的发展被限制在一定水平。

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