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Timing-dependent priming effects of tDCS on ankle motor skill learning

机译:tDCS对脚踝运动技能学习的时间依赖性启动效应

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摘要

Transcranial direct current stimulation (tDCS) has gained increasing interest in neurorehabilitation with its ability to modulate cortical excitability, and thereby influence neural plasticity and functional recovery. While the beneficial effects of tDCS on motor learning and function have been recognized, there is no clear consensus regarding the timing of the tDCS priming protocol in relation to the intervention especially with respect to lower limb motor learning. Depending on the time of priming in relation to the training task, the neural mechanisms of priming (gating vs. homeostatic plasticity) are different and thereby subsequently affect motor learning. Hence, the aim of this study was to examine the interaction of tDCS with subsequent vs. concurrent motor learning using an ankle visuomotor skill learning paradigm. Twelve healthy participants were tested under three stimulation conditions: 1) anodal tDCS prior to the motor task (tDCS-before), 2) anodal tDCS during the motor task (tDCS-during) and 3) sham tDCS during the motor task (tDCS-sham). Results revealed that tDCS application during practice of a skilled motor task increased motor performance compared to tDCS applied prior to motor practice. Both tDCS groups demonstrated enhanced motor learning when tested 24 hours after practice. We conclude that the priming effects of tDCS are timing dependent, and maybe a critical regulatory feature in determining outcomes of priming with tDCS.
机译:经颅直流电刺激(tDCS)能够调节皮层兴奋性,从而影响神经可塑性和功能恢复,因此对神经康复的兴趣日益浓厚。尽管已经认识到tDCS对运动学习和功能的有益作用,但是关于干预措施,特别是下肢运动学习方面的干预措施,tDCS启动协议的时机尚未达成明确共识。根据与训练任务有关的启动时间,启动的神经机制(门控与稳态可塑性)不同,因此会影响运动学习。因此,本研究的目的是使用踝部视觉运动技能学习范例研究tDCS与后续运动学习与并发运动学习的相互作用。在三种刺激条件下对12名健康参与者进行了测试:1)在运动任务之前的阳极tDCS(tDCS-之前),2)在运动任务期间的阳极tDCS(tDCS-期间)和3)在运动任务期间的假tDCS(tDCS-假)。结果表明,与在运动练习之前应用tDCS相比,在熟练的运动任务练习期间应用tDCS可以提高运动性能。练习后24小时进行测试时,两个tDCS组均显示出增强的运动学习能力。我们得出的结论是,tDCS的启动作用取决于时间,在确定tDCS的启动结果中可能是关键的调节功能。

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