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长时间运动且无明显神经肌肉疲劳会影响皮层兴奋性。

Protracted exercise without overt neuromuscular fatigue influences cortical excitability.

作者信息

Crupi Domenica, Cruciata Giuseppe, Moisello Clara, Green Paul-Ann, Naro Antonino, Ricciardi Lucia, Perfetti Bernardo, Bove Marco, Avanzino Laura, Di Rocco Alessandro, Quartarone Angelo, Ghilardi M Felice

机构信息

Department of Physiology, Pharmacology & Neuroscience, CUNY Medical School, New York, NY 10031, USA.

出版信息

J Mot Behav. 2013;45(2):127-38. doi: 10.1080/00222895.2012.760514. Epub 2013 Mar 14.

Abstract

The authors' aim was to determine the cortical mechanisms that underlie the transition from effective performance to its disruption. They thus used transcranial magnetic stimulation (TMS) to study changes of corticospinal excitability after a motor exercise that did not produce overt or perceived neuromuscular fatigue. Forty-four subjects performed either 5 or 10 min of repetitive finger movements paced by tones at 2 Hz, a frequency below the spontaneous movement rate. Changes of corticospinal excitability were assessed with TMS at rest and during motor response preparation (premovement facilitation paradigm). Over time, variability of movement rate increased, while the average movement rate shifted toward self-paced rhythms, without significant changes in other kinematic parameters. Amplitudes of motor evoked potentials at rest decreased depending on task duration and TMS intensity. Moreover, 5-min exercise induced fully compensatory increases in premovement facilitation, while 10-min exercise produced partially compensatory increases with loss of temporal modulation. Our findings suggest that protracted exercise induces significant decrements in corticospinal excitability with initial impairment of the phasic motor neurons that are recruited at higher stimulus intensities. Changes in premovement facilitation likely represent compensation of premotor areas for decreased efficiency of the primary motor cortex induced by exercise.

摘要

作者的目的是确定从有效表现过渡到表现中断背后的皮质机制。因此,他们使用经颅磁刺激(TMS)来研究在未产生明显或可感知的神经肌肉疲劳的运动练习后皮质脊髓兴奋性的变化。44名受试者以2Hz的音调为节奏进行了5分钟或10分钟的重复性手指运动,该频率低于自发运动速率。在静息状态和运动反应准备期间(运动前易化范式),用TMS评估皮质脊髓兴奋性的变化。随着时间的推移,运动速率的变异性增加,而平均运动速率转向自定节奏,其他运动学参数无显著变化。静息时运动诱发电位的幅度根据任务持续时间和TMS强度而降低。此外,5分钟的运动诱导运动前易化完全代偿性增加,而10分钟的运动产生部分代偿性增加,同时失去时间调制。我们的研究结果表明,长时间运动导致皮质脊髓兴奋性显著降低,最初是在较高刺激强度下募集的相位性运动神经元受损。运动前易化的变化可能代表运动前区对运动引起的初级运动皮层效率降低的代偿。

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