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Increased Stimulus Expectancy Triggers Low-frequency Phase Reset during Restricted Vigilance

机译:警觉性提高时,预期刺激性提高会触发低频相位重置

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摘要

Temporal cues can be used to selectively attend to relevant information during abundant sensory stimulation. However, such cues differ vastly in the accuracy of their temporal estimates, ranging from very predictable to very unpredictable. When cues are strongly predictable, attention may facilitate selective processing by aligning relevant incoming information to high neuronal excitability phases of ongoing low-frequency oscillations. However, top–down effects on ongoing oscillations when temporal cues have some predictability, but also contain temporal uncertainties, are unknown. Here, we experimentally created such a situation of mixed predictability and uncertainty: A target could occur within a limited time window after cue but was always unpredictable in exact timing. Crucially to assess top–down effects in such a mixed situation, we manipulated target probability. High target likelihood, compared with low likelihood, enhanced delta oscillations more strongly as measured by evoked power and intertrial coherence. Moreover, delta phase modulated detection rates for probable targets. The delta frequency range corresponds with half-a-period to the target occurrence window and therefore suggests that low-frequency phase reset is engaged to produce a long window of high excitability when event timing is uncertain within a restricted temporal window.
机译:在丰富的感官刺激过程中,可以使用时间提示来选择性地关注相关信息。但是,这些提示在其时间估计的准确性方面差异很大,范围从非常可预测到非常不可预测。当提示是可强烈预测的时,注意力可以通过将相关的传入信息与正在进行的低频振荡的高神经元兴奋性阶段对齐来促进选择性处理。但是,当时间线索具有一定的可预测性但又包含时间不确定性时,对正在进行的振荡的自上而下的影响是未知的。在这里,我们实验性地创建了这种混合了可预测性和不确定性的情况:目标可以在提示后的有限时间范围内发生,但始终无法准确预测。为了评估在这种混合情况下自上而下的影响,我们操纵了目标概率。与较低的可能性相比,较高的目标似然度可以更强地增强三角洲振荡,如通过诱发的功率和心间相干性所测量的。此外,对可能的目标进行了三角洲相位调制的检测率。增量频率范围对应于目标发生窗口的半个周期,因此建议在事件时间在受限的时间窗口内不确定时,进行低频相位复位以产生高激励性的长窗口。

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