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Preliminary Evidence That Anodal Transcranial Direct Current Stimulation Enhances Time to Task Failure of a Sustained Submaximal Contraction

机译:初步证据表明阳极经颅直流电刺激可延长完成次最大收缩的任务失败时间。

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摘要

The purpose of this study was to determine whether anodal transcranial direct current stimulation (tDCS) delivered while performing a sustained submaximal contraction would increase time to task failure (TTF) compared to sham stimulation. Healthy volunteers (n = 18) performed two fatiguing contractions at 20% of maximum strength with the elbow flexors on separate occasions. During fatigue task performance, either anodal or sham stimulation was delivered to the motor cortex for up to 20 minutes. Transcranial magnetic stimulation (TMS) was used to assess changes in cortical excitability during stimulation. There was no systematic effect of the anodal tDCS stimulation on TTF for the entire subject set (n = 18; p = 0.64). Accordingly, a posteriori subjects were divided into two tDCS-time groups: Full-Time (n = 8), where TTF occurred prior to the termination of tDCS, and Part-Time (n = 10), where TTF extended after tDCS terminated. The TTF for the Full-Time group was 31% longer with anodal tDCS compared to sham (p = 0.04), whereas TTF for the Part-Time group did not differ (p = 0.81). Therefore, the remainder of our analysis addressed the Full-Time group. With anodal tDCS, the amount of muscle fatigue was 6% greater at task failure (p = 0.05) and the amount of time the Full-Time group performed the task at an RPE between 8–10 (“very hard”) increased by 38% (p = 0.04) compared to sham. There was no difference in measures of cortical excitability between stimulation conditions (p = 0.90). That the targeted delivery of anodal tDCS during task performance both increased TTF and the amount of muscle fatigue in a subset of subjects suggests that augmenting cortical excitability with tDCS enhanced descending drive to the spinal motorpool to recruit more motor units. The results also suggest that the application of tDCS during performance of fatiguing activity has the potential to bolster the capacity to exercise under conditions required to derive benefits due to overload.
机译:这项研究的目的是确定与持续刺激相比,持续进行次最大收缩时进行阳极经颅直流电刺激(tDCS)是否会增加完成任务的时间(TTF)。健康的志愿者(n = 18)在两个不同的场合用肘屈肌进行了两次疲劳训练,收缩强度达到最大力量的20%。在执行疲劳任务期间,将阳极刺激或假刺激刺激传递至运动皮层长达20分钟。经颅磁刺激(TMS)用于评估刺激过程中皮质兴奋性的变化。整个受试者组对tTF的阳极tDCS刺激没有系统的影响(n = 18,p = 0.64)。因此,后验受试者被分为两个tDCS时间组:全日制(n = 8),其中tTF发生在tDCS终止之前;和部分时制(n = 10),其中tTF在tDCS终止后扩展。与假手术相比,使用全日制tDCS的全日制组的TTF延长了31%(p = 0.04),而兼职组的TTF没有差异(p = 0.81)。因此,我们的其余分析对象是全职小组。使用阳极tDCS时,任务失败时的肌肉疲劳程度增加了6%(p = 0.05),而全职小组在8-10之间的RPE(“非常努力”)下执行任务的时间增加了38 %(p = 0.04)相较于伪造。刺激条件之间皮层兴奋性的测量没有差异(p(= 0.90)。在任务执行过程中阳极tDCS的靶向递送既增加了TTF,又增加了部分受试者的肌肉疲劳程度,这表明使用tDCS增强皮质兴奋性可以增强对脊髓电动池的下降驱动力,以招募更多的运动单元。结果还表明,在进行疲劳训练活动期间使用tDCS可能会增强在因超负荷而获得益处所需的条件下的运动能力。

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