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力竭耐力的极限拓展:刺激运动皮层还是前额叶皮层?

Extending the limits of force endurance: Stimulation of the motor or the frontal cortex?

机构信息

Université Cote D'Azur, LAMHESS, Nice, France.

Université Cote D'Azur, LAMHESS, Nice, France.

出版信息

Cortex. 2017 Dec;97:96-108. doi: 10.1016/j.cortex.2017.09.026. Epub 2017 Oct 9.

Abstract

Previous findings indicate that facilitation of primary motor cortex (PMC) activity using trans-cranial direct current stimulation (tDCS) could improve resistance to physical fatigue. However, studies have failed to consistently replicate these results. Using non-focal-tDCS during a fatiguing task, recent work showed no enhancement of corticospinal excitability of the PMC despite a longer endurance time and suggested that contamination in other brain regions involved in motor command may have occurred. In accordance with recent evidence supporting the role of the prefrontal cortex (PFC) in exercise maintenance, this double-blind sham-controlled crossover study (N = 22) compared the effect of high definition (HD)-tDCS of the PMC or the PFC on endurance time of a sustained contraction task of the elbow flexor. Brain activity was monitored using near infrared spectroscopy (NIRS) to measure the neurovascular response elicited by HD-tDCS. Electromyography (EMG) and force obtained during maximal voluntary and evoked contractions were assessed before and after the contraction task to explore the effect of brain stimulation on peripheral and central fatigue. While the stimulation affected the brain response in the PFC during the contraction task, no effects of the stimulation were observed on endurance time or fatigue indices. These results are discussed in relation to the neurocognitive models of physical effort.

摘要

先前的研究结果表明,经颅直流电刺激(tDCS)促进初级运动皮层(PMC)的活动,可能会提高对身体疲劳的抵抗力。然而,这些研究结果并未得到一致的复制。在一项疲劳任务中使用非聚焦 tDCS 时,最近的研究表明,尽管 PMC 的皮质脊髓兴奋性的耐力时间更长,但并没有增强,这表明可能发生了其他参与运动指令的脑区的污染。根据最近支持前额叶皮层(PFC)在运动维持中的作用的证据,这项双盲假刺激对照交叉研究(N=22)比较了 PMC 或 PFC 的高清晰度(HD)-tDCS 对肘部屈肌持续收缩任务的耐力时间的影响。使用近红外光谱(NIRS)监测脑活动,以测量由 HD-tDCS 引起的神经血管反应。在收缩任务前后评估最大自主和诱发收缩期间获得的肌电图(EMG)和力,以探讨脑刺激对周围和中枢疲劳的影响。虽然刺激在收缩任务期间影响了 PFC 的脑反应,但刺激对耐力时间或疲劳指数没有影响。这些结果与体力活动的神经认知模型有关。

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