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连续闪光抑制的神经动力学。

Neural dynamics of breaking continuous flash suppression.

机构信息

University of Regensburg, Germany.

University of Regensburg, Germany.

出版信息

Neuroimage. 2018 Aug 1;176:277-289. doi: 10.1016/j.neuroimage.2018.04.041. Epub 2018 Apr 21.

Abstract

Sensory input to the human visual system often becomes accessible to cognition and overt report during processing. We investigated neural precursors of conscious vision using EEG recordings and the popular breaking continuous flash suppression (bCFS) paradigm. In this technique, a mask consisting of high-contrast dynamic patterns is presented to one eye, predominating over a target stimulus presented to the other eye. The time needed for the target stimulus to overcome the suppression is thought to reflect the transition from unconscious to conscious perception. In bCFS trials with slow responses, indicative of potent suppression, a time-frequency analysis showed reduced occipital gamma power (33-38 Hz) contralaterally to the visual hemifield where the target was presented 0.27 to 0.21 s prior to the behavioral response. This neural activity was concurrent with a local phase reset and enhanced long-range phase synchronization in the theta band (7 Hz). Such a pattern did not arise in a control condition in which suppression was not induced. Thus, the theta phase reset and synchronization in bCFS trials precede a break from suppression, likely initiating a re-routing of information such that the neural representation of the target is updated more efficiently than that of the competing mask. Overall, these findings mark the emergence of a binocularly integrated percept that can be consciously selected for a behavioral response.

摘要

人类视觉系统的感觉输入在处理过程中常常变得可被认知和显性报告。我们使用 EEG 记录和流行的打破连续闪光抑制(bCFS)范式研究了意识视觉的神经前体。在该技术中,由高对比度动态图案组成的掩蔽物被呈现给一只眼睛,而目标刺激被呈现给另一只眼睛。目标刺激克服抑制所需的时间被认为反映了从无意识到有意识感知的转变。在 bCFS 试验中,反应较慢表明抑制作用较强,时频分析显示,在行为反应前 0.27 到 0.21 秒,与目标呈现的视觉半视野相对应的枕部伽马功率(33-38Hz)降低。这种神经活动与局部相位重置和 theta 频段(7Hz)的增强长程相位同步同时发生。在未引起抑制的对照条件下,不会出现这种模式。因此,bCFS 试验中的 theta 相位重置和同步先于抑制的突破,可能会启动信息的重新路由,从而使目标的神经表示比竞争掩蔽物的更新更有效。总的来说,这些发现标志着一种能够被有意识地选择进行行为反应的双眼整合知觉的出现。

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