首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The impact of cerebellar transcranial direct current stimulation (tDCS) on learning fine-motor sequences
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The impact of cerebellar transcranial direct current stimulation (tDCS) on learning fine-motor sequences

机译:小脑经颅直流电刺激(tDCS)对学习精细运动序列的影响

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摘要

The cerebellum has been shown to be important for skill learning, including the learning of motor sequences. We investigated whether cerebellar transcranial direct current stimulation (tDCS) would enhance learning of fine motor sequences. Because the ability to generalize or transfer to novel task variations or circumstances is a crucial goal of real world training, we also examined the effect of tDCS on performance of novel sequences after training. In Study 1, participants received either anodal, cathodal or sham stimulation while simultaneously practising three eight-element key press sequences in a non-repeating, interleaved order. Immediately after sequence practice with concurrent tDCS, a transfer session was given in which participants practised three interleaved novel sequences. No stimulation was given during transfer. An inhibitory effect of cathodal tDCS was found during practice, such that the rate of learning was slowed in comparison to the anodal and sham groups. In Study 2, participants received anodal or sham stimulation and a 24 h delay was added between the practice and transfer sessions to reduce mental fatigue. Although this consolidation period benefitted subsequent transfer for both tDCS groups, anodal tDCS enhanced transfer performance. Together, these studies demonstrate polarity-specific effects on fine motor sequence learning and generalization.
机译:小脑已被证明对技能学习很重要,包括运动序列的学习。我们研究了小脑经颅直流电刺激 (tDCS) 是否会增强精细运动序列的学习。由于概括或转移到新任务变化或环境的能力是真实世界训练的关键目标,我们还研究了 tDCS 对训练后新序列性能的影响。在研究 1 中,参与者接受阳极、阴极或假刺激,同时以不重复、交错的顺序练习三个八元素按键序列。在同时进行 tDCS 的序列练习后,立即进行了转移会议,参与者练习了三个交错的新序列。转移过程中没有给予刺激。在实践中发现了阴极 tDCS 的抑制作用,因此与阳极组和假手术组相比,学习速度减慢。在研究 2 中,参与者接受了阳极或假刺激,并在练习和转移课程之间增加了 24 小时的延迟,以减少精神疲劳。尽管这一整合期有利于两个 tDCS 组的后续转移,但阳极 tDCS 提高了转移性能。总之,这些研究证明了极性对精细运动序列学习和泛化的影响。

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