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Context-specific control over the neural dynamics of temporal attention by the human cerebellum

机译:对人类小脑的神经动力学的特定于神经动力学的控制

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Physiological methods have identified a number of signatures of temporal prediction, a core component of attention. While the underlying neural dynamics have been linked to activity within cortico-striatal networks, recent work has shown that the behavioral benefits of temporal prediction rely on the cerebellum. Here, we examine the involvement of the human cerebellum in the generation and/or temporal adjustment of anticipatory neural dynamics, measuring scalp electroencephalography in individuals with cerebellar degeneration. When the temporal prediction relied on an interval representation, duration-dependent adjustments were impaired in the cerebellar group compared to matched controls. This impairment was evident in ramping activity, beta-band power, and phase locking of delta-band activity. These same neural adjustments were preserved when the prediction relied on a rhythmic stream. Thus, the cerebellum has a context-specific causal role in the adjustment of anticipatory neural dynamics of temporal prediction, providing the requisite modulation to optimize behavior.
机译:生理方法已经确定了一些时间预测的签名,是关注的核心组分。虽然潜在的神经动力学与皮质纹纹人网络中的活动有关,但最近的工作表明,时间预测的行为益处依赖于小脑。在这里,我们研究人体细胞参与在预期神经动力学的产生和/或时间调整中,测量具有小脑变性的个体中的个体中的头皮脑电图。当在间隔表示上依赖于间隔表示时,与匹配的对照相比,在小脑组中损害了持续时间依赖性调节。这种损害在倾斜的活动,β波段力量和阶段锁定活动中是显而易见的。当预测依赖于节奏流时,保留了这些相同的神经调整。因此,小脑在调整时间预测的预期神经动态时具有特定于上下文的因果作用,提供了优先的调制来优化行为。

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