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Basal ganglia beta oscillations accompany cue utilization

机译:基底神经节β振荡伴随提示的利用

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Beta oscillations in cortical-basal ganglia (BG) circuits have been implicated in normal movement suppression and motor impairment in Parkinson's disease. To dissect the functional correlates of these rhythms we compared neural activity during four distinct variants of a cued choice task in rats. Brief beta (~20Hz) oscillations occurred simultaneously throughout the cortical-BG network, both spontaneously and at precise moments of task performance. Beta phase was rapidly reset in response to salient cues, yet increases in beta power were not rigidly linked to cues, movements, or movement suppression. Rather, beta power was enhanced after cues were used to determine motor output. We suggest that beta oscillations reflect a postdecision stabilized state of cortical-BG networks, which normally reduces interference from alternative potential actions. The abnormally strong beta seen in Parkinson's Disease may reflect overstabilization of these networks, producing pathological persistence of the current motor state.
机译:皮层基底神经节(BG)回路中的β振荡与帕金森氏病的正常运动抑制和运动障碍有关。为了剖析这些节律的功能相关性,我们比较了提示选择任务的四个不同变体在大鼠中的神经活动。在整个皮质BG网络中,自发地以及在任务执行的精确时刻,同时发生了短暂的beta(〜20Hz)振荡。 Beta阶段响应明显的提示而迅速重置,但是beta功率的增加与提示,运动或运动抑制并没有严格联系。相反,在使用提示确定电机输出后,β功率得到了增强。我们建议,β振荡反映皮质BG网络的决策后稳定状态,通常可减少来自其他潜在作用的干扰。在帕金森氏病中看到的异常强的β可能反映了这些网络的过度稳定,导致当前运动状态的病理持续性。

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