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空间注意增强了嵌入噪声中的不可见信号的神经表示。

Spatial Attention Enhances the Neural Representation of Invisible Signals Embedded in Noise.

机构信息

University of Queensland.

出版信息

J Cogn Neurosci. 2018 Aug;30(8):1119-1129. doi: 10.1162/jocn_a_01283. Epub 2018 May 23.

Abstract

Recent evidence suggests that voluntary spatial attention can affect neural processing of visual stimuli that do not enter conscious awareness (i.e., invisible stimuli), supporting the notion that attention and awareness are dissociable processes [Wyart, V., Dehaene, S., & Tallon-Baudry, C. Early dissociation between neural signatures of endogenous spatial attention and perceptual awareness during visual masking. Frontiers in Human Neuroscience, 6, 1-14, 2012; Watanabe, M., Cheng, K., Murayama, Y., Ueno, K., Asamizuya, T., Tanaka, K., et al. Attention but not awareness modulates the BOLD signal in the human V1 during binocular suppression. Science, 334, 829-831, 2011]. To date, however, no study has demonstrated that these effects reflect enhancement of the neural representation of invisible stimuli per se, as opposed to other neural processes not specifically tied to the stimulus in question. In addition, it remains unclear whether spatial attention can modulate neural representations of invisible stimuli in direct competition with highly salient and visible stimuli. Here we developed a novel EEG frequency-tagging paradigm to obtain a continuous readout of human brain activity associated with visible and invisible signals embedded in dynamic noise. Participants ( n = 23) detected occasional contrast changes in one of two flickering image streams on either side of fixation. Each image stream contained a visible or invisible signal embedded in every second noise image, the visibility of which was titrated and checked using a two-interval forced-choice detection task. Steady-state visual-evoked potentials were computed from EEG data at the signal and noise frequencies of interest. Cluster-based permutation analyses revealed significant neural responses to both visible and invisible signals across posterior scalp electrodes. Control analyses revealed that these responses did not reflect a subharmonic response to noise stimuli. In line with previous findings, spatial attention increased the neural representation of visible signals. Crucially, spatial attention also increased the neural representation of invisible signals. As such, the present results replicate and extend previous studies by demonstrating that attention can modulate the neural representation of invisible signals that are in direct competition with highly salient masking stimuli.

摘要

最近的证据表明,自愿的空间注意力可以影响未进入意识知觉的视觉刺激的神经加工(即不可见刺激),支持了注意力和意识是可分离过程的观点[Wyart, V., Dehaene, S., & Tallon-Baudry, C. 在视觉掩蔽期间,内源性空间注意和知觉意识的神经特征早期分离。《人类神经科学前沿》,6,1-14,2012 年;Watanabe, M., Cheng, K., Murayama, Y., Ueno, K., Asamizuya, T., Tanaka, K., 等人。在双眼抑制期间,注意力而非意识调节人类 V1 中的 BOLD 信号。《科学》,334,829-831,2011 年]。然而,迄今为止,尚无研究表明这些效应反映了不可见刺激的神经表示本身的增强,而不是与所讨论的刺激无关的其他神经过程。此外,尚不清楚空间注意力是否可以调节与高度显著和可见刺激直接竞争的不可见刺激的神经表示。在这里,我们开发了一种新的 EEG 频率标记范式,以获得与动态噪声中嵌入的可见和不可见信号相关的人脑活动的连续读数。参与者(n=23)在注视点两侧的两个闪烁图像流中检测到偶尔的对比度变化。每个图像流都包含一个可见或不可见的信号,嵌入在每第二个噪声图像中,其可见性通过使用两间隔强制选择检测任务进行滴定和检查。从 EEG 数据中计算出稳态视觉诱发电位在感兴趣的信号和噪声频率。基于集群的置换分析显示,在后头部电极上,对可见和不可见信号均有显著的神经反应。对照分析表明,这些反应不是对噪声刺激的次谐波反应。与先前的发现一致,空间注意力增加了可见信号的神经表示。至关重要的是,空间注意力也增加了不可见信号的神经表示。因此,本研究结果通过证明注意力可以调节与高度显著掩蔽刺激直接竞争的不可见信号的神经表示,复制和扩展了先前的研究。

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