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首页> 外文期刊>American Journal of Physiology >Central alterations of neuromuscular function and feedback from group III-IV muscle afferents following exhaustive high-intensity one-leg dynamic exercise
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Central alterations of neuromuscular function and feedback from group III-IV muscle afferents following exhaustive high-intensity one-leg dynamic exercise

机译:Nei-IV群肌肉发电中的神经肌肉功能和反馈的中央变化,在详尽的高强度单腿动态运动之后

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The aims of this investigation were to describe the central alterations of neuromuscular function induced by exhaustive high-intensity one-leg dynamic exercise (OLDE, study 1) and to indirectly quantify feedback from group III-IV muscle afferents via muscle occlusion (MO, study 2) in healthy adult male humans. We hypothesized that these central alterations and their recovery are associated with changes in afferent feedback. Both studies consisted of two time-to-exhaustion tests at 85% peak power output. In study I, voluntary activation level (VAL), M-wave, cervi-comedullary motor evoked potential (CMEP), motor evoked potential (MEP), and MEP cortical silent period (CSP) of the knee extensor muscles were measured. In study 2, mean arterial pressure (MAP) and leg muscle pain were measured during MO. Measurements were performed preexercise, at exhaustion, and after 3 min recovery. Compared with preexercise values, VAL was lower at exhaustion (-13 ± 13%, P < 0.05) and after 3 min of recovery (-6 ± 6%, P = 0.05). CMEP_(area)/M_(area) was lower at exhaustion (-38 ± 13%, P < 0.01) and recovered after 3 min. CMEP_(area)/M_(area) was higher at exhaustion (+25 ± 27%, P < 0.01) and after 3 min of recovery (+17 ± 20%, P < 0.01). CSP was higher (+19 ± 9%, P < 0.01) only at exhaustion and recovered after 3 min. Markers of afferent feedback (MAP and leg muscle pain during MO) were significantly higher only at exhaustion. These findings suggest that the alterations in spinal excitability and CSP induced by high-intensity OLDE are associated with an increase in afferent feedback at exhaustion, whereas central fatigue does not fully recover even when significant afferent feedback is no longer present.
机译:该调查的目的是描述通过狭窄的高强度单腿动态运动(Olde,School 1)引起的神经肌肉功能的中央变化,并通过肌肉闭塞间接量化III-IV族肌事联的反馈(MO,研究2)在健康的成年男性人类中。我们假设这些中央变更及其恢复与传入反馈的变化有关。这两项研究都包括85%峰值功率输出的两次耗尽试验。在研究I中,测量了测量了膝关节肌肉肌肉的自愿激活水平(VAL),M波,Cervi-Comedullary Motor诱发电位(CMEP),电动机诱发电位(MEP)和MEP皮质静音时段(CSP)。在研究2中,在Mo期间测量平均动脉压(MAP)和腿部肌肉疼痛。在耗尽时进行预弯曲和3分钟后进行测量。与预先发脾气值相比,val耗尽较低(-13±13%,P <0.05),恢复3分钟后(-6±6%,P = 0.05)。 CMEP_(区域)/ m_(面积)耗尽较低(-38±13%,p <0.01)并在3分钟后回收。 CMEP_(面积)/ m_(面积)在耗尽时较高(+ 25±27%,P <0.01)和3分钟后(+17±20%,P <0.01)。 CSP较高(+19±9%,P <0.01),仅在耗尽时,3分钟后回收。在疲惫时,传入反馈的标记(MO期间MO的腿部肌肉疼痛)显着高得多。这些发现表明,高强度Olde诱导的脊髓兴奋性和CSP的改变与耗尽的传入反馈增加相关,而即使在不再存在显着的传入反馈,中央疲劳也不会完全恢复。

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