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Oscillations and the basal ganglia: motor control and beyond.

机译:振荡和基底神经节:运动控制及其他。

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摘要

Oscillations form a ubiquitous feature of the central nervous system. Evidence is accruing from cortical and sub-cortical recordings that these rhythms may be functionally important, although the precise details of their roles remain unclear. The basal ganglia share this predilection for rhythmic activity which, as we see in Parkinson's disease, becomes further enhanced in the dopamine depleted state. While certain cortical rhythms appear to penetrate the basal ganglia, others are transformed or blocked. Here, we discuss the functional association of oscillations in the basal ganglia and their relationship with cortical activity. We further explore the neural underpinnings of such oscillatory activity, including the important balance to be struck between facilitating information transmission and limiting information coding capacity. Finally, we introduce the notion that synchronised oscillatory activity can be broadly categorised as immutability promoting rhythms that reinforce incumbent processes, and mutability promoting rhythms that favour novel processing.
机译:振荡形成了中枢神经系统的普遍特征。皮质和皮质下的记录表明,这些节律在功能上可能很重要,尽管其作用的确切细节尚不清楚。基底神经节具有节律性活动的偏爱,正如我们在帕金森氏病中所见,在多巴胺贫化状态下节律性活动进一步增强。虽然某些皮质节律似乎穿透了基底神经节,但其他皮质节律却被转变或受阻。在这里,我们讨论了基底神经节振荡的功能关联及其与皮层活动的关系。我们进一步探索这种振荡活动的神经基础,包括在促进信息传输和限制信息编码能力之间达成的重要平衡。最后,我们引入了一个概念,即同步振荡活动可大致归类为增强现有过程的不变性促进节奏,以及促进新颖处理的变异性促进节奏。

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  • 作者

    Brittain, JS; Brown, P;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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