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首页> 外文期刊>Experimental Brain Research >Short-interval cortical inhibition and corticomotor excitability with fatiguing hand exercise: a central adaptation to fatigue?
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Short-interval cortical inhibition and corticomotor excitability with fatiguing hand exercise: a central adaptation to fatigue?

机译:疲劳锻炼后短时皮质抑制和皮质运动兴奋性:对疲劳的中枢适应吗?

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摘要

The central processes occurring during fatiguing exercise are not well understood, however transcranial magnetic stimulation (TMS) studies have reported increases both in corticomotor excitability, as measured by the motor-evoked potential (MEP) amplitude, and in long-interval intracortical inhibition, as measured by the duration of the post-MEP silent period. To determine whether short-interval cortical inhibition (SICI) is modulated by fatiguing exercise, we used single and paired-pulse TMS to measure MEP amplitude and SICI for the first dorsal interosseous (FDI) and abductor digiti minimi (ADM) muscles of the hand during, and for 20 min after, a 10-min intermittent maximal voluntary abduction of the index finger designed to fatigue the FDI muscle. For the FDI, the index of SICI increased at the onset of exercise (from 0.25+/-0.05 to 0.55+/-0.11, P < 0.05) and then decreased progressively as force declined. At the beginning of recovery, SICI again increased (0.57+/-0.11, P < 0.05) and remained elevated for the 20-min recovery period. In contrast, SICI for ADM did not change during or after exercise. MEP amplitude for both the FDI and ADM increased above baseline during exercise and then decreased below baseline during the recovery period. These results demonstrate that there are significant changes in SICI during and after a fatiguing exercise protocol that are isolated to the representation of the fatigued muscle. The inter-relationship between the changes in excitation and inhibition suggests the presence of a measured and adaptive process of modulation in central excitation and inhibition acting to increase corticomotor drive to the exercising muscle as fatigue is developing.
机译:在疲劳训练过程中发生的中心过程尚未得到很好的理解,但是经颅磁刺激(TMS)研究已报道,通过运动诱发电位(MEP)幅度测量的皮质运动兴奋性和长期间隔皮质内抑制均增加通过MEP后静默期的持续时间来衡量。为了确定疲劳训练是否能缩短短间隔皮质抑制作用(SICI),我们使用单脉冲和成对脉冲TMS测量手的第一背骨间(FDI)和手指外展肌(ADM)的MEP幅度和SICI在设计过程中以及之后的20分钟内,将食指进行10分钟的间歇性最大自愿外展,以使FDI肌肉疲劳。对于FDI,SICI指数在运动开始时增加(从0.25 +/- 0.05到0.55 +/- 0.11,P <0.05),然后随着力的降低而逐渐降低。在恢复开始时,SICI再次增加(0.57 +/- 0.11,P <0.05),并在20分钟恢复期内保持升高。相反,运动期间或运动后,用于ADM的SICI没有改变。 FDI和ADM的MEP幅度在运动过程中均高于基线,然后在恢复期间降至基线以下。这些结果表明,在疲劳训练方案期间和之后,SICI发生了显着变化,这与疲劳肌肉的表现是分离的。兴奋和抑制变化之间的相互关系表明,随着疲劳的发展,在中枢兴奋和抑制中存在一种可调节的自适应过程,其作用是增加对运动肌肉的皮质运动驱动。

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