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腹侧纹状体对意识知觉的贡献:一项关于注意瞬脱的颅内脑电图研究

Contributions of the Ventral Striatum to Conscious Perception: An Intracranial EEG Study of the Attentional Blink.

作者信息

Slagter Heleen A, Mazaheri Ali, Reteig Leon C, Smolders Ruud, Figee Martijn, Mantione Mariska, Schuurman P Richard, Denys Damiaan

机构信息

Department of Psychology and

Amsterdam Brain and Cognition, University of Amsterdam, 1018 WS Amsterdam, The Netherlands.

出版信息

J Neurosci. 2017 Feb 1;37(5):1081-1089. doi: 10.1523/JNEUROSCI.2282-16.2016. Epub 2016 Dec 16.

Abstract

UNLABELLED

The brain is limited in its capacity to consciously process information, necessitating gating of information. While conscious perception is robustly associated with sustained, recurrent interactions between widespread cortical regions, subcortical regions, including the striatum, influence cortical activity. Here, we examined whether the ventral striatum, given its ability to modulate cortical information flow, contributes to conscious perception. Using intracranial EEG, we recorded ventral striatum activity while 7 patients performed an attentional blink task in which they had to detect two targets (T1 and T2) in a stream of distractors. Typically, when T2 follows T1 within 100-500 ms, it is often not perceived (i.e., the attentional blink). We found that conscious T2 perception was influenced and signaled by ventral striatal activity. Specifically, the failure to perceive T2 was foreshadowed by a T1-induced increase in α and low β oscillatory activity as early as 80 ms after T1, indicating that the attentional blink to T2 may be due to very early T1-driven attentional capture. Moreover, only consciously perceived targets were associated with an increase in θ activity between 200 and 400 ms. These unique findings shed new light on the mechanisms that give rise to the attentional blink by revealing that conscious target perception may be determined by T1 processing at a much earlier processing stage than traditionally believed. More generally, they indicate that ventral striatum activity may contribute to conscious perception, presumably by gating cortical information flow.

SIGNIFICANCE STATEMENT

What determines whether we become aware of a piece of information or not? Conscious access has been robustly associated with activity within a distributed network of cortical regions. Using intracranial electrophysiological recordings during an attentional blink task, we tested the idea that the ventral striatum, because of its ability to modulate cortical information flow, may contribute to conscious perception. We find that conscious perception is influenced and signaled by ventral striatal activity. Short-latency (80-140 ms) striatal responses to a first target determined conscious perception of a second target. Moreover, conscious perception of the second target was signaled by longer-latency (200-400 ms) striatal activity. These results suggest that the ventral striatum may be part of a subcortical network that influences conscious experience.

摘要

未标注

大脑有意识地处理信息的能力有限,因此需要对信息进行筛选。虽然有意识的感知与广泛的皮质区域之间持续的、反复的相互作用密切相关,但包括纹状体在内的皮质下区域会影响皮质活动。在这里,我们研究了腹侧纹状体是否因其调节皮质信息流的能力而有助于有意识的感知。我们利用颅内脑电图,记录了7名患者在执行注意力瞬脱任务时腹侧纹状体的活动,在该任务中他们必须在一串干扰物中检测到两个目标(T1和T2)。通常情况下,当T2在100 - 500毫秒内跟随T1出现时,它常常不会被感知到(即注意力瞬脱)。我们发现腹侧纹状体活动会影响并表征对T2的有意识感知。具体而言,早在T1出现后80毫秒,T1诱导的α和低β振荡活动增加就预示着无法感知到T2,这表明对T2的注意力瞬脱可能是由于非常早期的T1驱动的注意力捕获。此外,只有有意识感知到的目标才与200至400毫秒之间的θ活动增加有关。这些独特的发现揭示了有意识目标感知可能在比传统认为的更早的处理阶段由T1处理所决定,从而为引发注意力瞬脱的机制提供了新的线索。更普遍地说,它们表明腹侧纹状体活动可能有助于有意识的感知,大概是通过筛选皮质信息流来实现的。

意义声明

是什么决定了我们是否会意识到一条信息?有意识的通达与皮质区域分布式网络内的活动密切相关。在注意力瞬脱任务期间使用颅内电生理记录,我们测试了这样一种观点,即腹侧纹状体由于其调节皮质信息流的能力,可能有助于有意识的感知。我们发现有意识的感知受到腹侧纹状体活动的影响并由其表征。对第一个目标的短潜伏期(80 - 140毫秒)纹状体反应决定了对第二个目标的有意识感知。此外,对第二个目标的有意识感知由较长潜伏期(200 - 400毫秒)的纹状体活动表征。这些结果表明腹侧纹状体可能是影响有意识体验的皮质下网络的一部分。

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