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γ 和θ 频段的幅度和相位同步的调制与视动学习的发展有关。

Modulation of gamma and theta spectral amplitude and phase synchronization is associated with the development of visuo-motor learning.

机构信息

Department of Physiology and Pharmacology, City University of New York Medical School, New York, New York 10031, USA.

出版信息

J Neurosci. 2011 Oct 12;31(41):14810-9. doi: 10.1523/JNEUROSCI.1319-11.2011.

Abstract

The formation of new motor memories, which is fundamental for efficient performance during adaptation to a visuo-motor rotation, occurs when accurate planning is achieved mostly with feedforward mechanisms. The dynamics of brain activity underlying the switch from feedback to feedforward control is still matter of debate. Based on the results of studies in declarative learning, it is likely that phase synchronization of low and high frequencies as well as their temporal modulation in power amplitude underlie the formation of new motor memories during visuo-motor adaptation. High-density EEG (256 electrodes) was recorded in 17 normal human subjects during adaptation to a visuo-motor rotation of 60° in four incremental steps of 15°. We found that initial learning is associated with enhancement of gamma power in a right parietal region during movement execution as well as gamma/theta phase coherence during movement planning. Late stages of learning are instead accompanied by an increase of theta power over that same right parietal region during movement planning, which is correlated with the degree of learning and retention. Altogether, these results suggest that the formation of new motor memories and, thus, the switch from feedback to feedforward control is associated with the modulation of gamma and theta spectral activities, with respect to their amplitude and phase, during movement planning and execution. Specifically, we propose that gamma/theta phase coupling plays a pivotal role in the integration of a new representation into motor memories.

摘要

新运动记忆的形成对于在视动旋转适应过程中高效表现至关重要,这种形成发生在主要通过前馈机制实现准确规划时。在从反馈控制切换到前馈控制的大脑活动动力学仍然存在争议。基于陈述性学习研究的结果,在视动适应过程中形成新运动记忆时,低频和高频的相位同步以及它们在功率幅度下的时间调制很可能是基础。在 17 名正常人类受试者中,在以 60°的视动旋转进行四次 15°递增步骤的适应过程中,使用高密度 EEG(256 个电极)进行了记录。我们发现,初始学习与运动执行过程中右顶叶区域伽马功率增强以及运动规划期间伽马/θ相位相干性有关。学习的后期阶段则伴随着运动规划期间同一右顶叶区域的θ功率增加,与学习和保留程度相关。总的来说,这些结果表明,新运动记忆的形成,以及因此从反馈控制到前馈控制的切换,与运动规划和执行期间关于幅度和相位的伽马和θ频谱活动的调制有关。具体来说,我们提出伽马/θ相位耦合在将新表示形式整合到运动记忆中起着关键作用。

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