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首页> 外文期刊>Behavioural Brain Research: An International Journal >Paired-associative stimulation can modulate muscle fatigue induced motor cortex excitability changes.
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Paired-associative stimulation can modulate muscle fatigue induced motor cortex excitability changes.

机译:配对联想刺激可以调节肌肉疲劳引起的运动皮层兴奋性变化。

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The aim of this study was to examine whether the changes of the motor cortex excitability induced by muscle fatigue could be affected by prior or subsequent intervention protocol supposed to induce opposing excitability changes. For this purpose we used paired associative stimulation (PAS) method, where peripheral nerve stimuli were associated with transcranial magnetic stimulation (TMS) of the motor cortex at a fixed interstimulus interval of 25 ms. The PAS protocol used is known to produce a long lasting, long-term potentiation (LTP) like change of cortical plasticity manifested by significant increase in motor evoked potentials (MEPs) amplitude. In this study, we confirmed significant MEP size reduction following fatigue, which had been already reported in the literature. When PAS was applied either immediately before or after muscle fatigue protocol, the excitability changes were largely occluded and MEP sizes remained close to baseline levels. However, in spite of the effects on cortical excitability, conditioning with PAS did not cause any change in target fatigue measure, the endurance point, which remained the same as when fatiguing protocol was applied alone. The present results demonstrate that fatigue-related changes in cortical excitability can be modulated by either prior or subsequent excitability promoting activity. They also suggest that muscle fatigue associated changes in motor cortical excitability probably represent non-specific activity-related plasticity, rather than a direct expression of the so-called central fatigue.
机译:这项研究的目的是要检查由肌肉疲劳引起的运动皮层兴奋性的变化是否可能受到先前或随后可能会引起相反兴奋性变化的干预方案的影响。为此,我们使用配对联合刺激(PAS)方法,其中周围神经刺激与运动皮层的经颅磁刺激(TMS)以固定的25 ms间隔刺激相结合。众所周知,使用的PAS协议可产生长效的长期增强(LTP),如皮质可塑性的变化,表现为运动诱发电位(MEP)幅度的显着增加。在这项研究中,我们证实了疲劳后MEP尺寸显着降低,这已经在文献中进行了报道。当在肌肉疲劳方案之前或之后立即应用PAS时,兴奋性的变化会被很大程度的阻塞,MEP大小仍接近基线水平。然而,尽管对皮层兴奋性有影响,但用PAS进行调理并不会引起目标疲劳度,耐力点的任何变化,该值与单独使用疲劳试验方案时相同。本结果表明,与疲劳相关的皮质兴奋性变化可以通过先前或随后的兴奋性促进活性来调节。他们还表明,与肌肉疲劳相关的运动皮层兴奋性变化可能代表了非特异性活动相关的可塑性,而不是所谓的中央疲劳的直接表现。

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