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真实视觉失匹配负波的增强与双稳态图像感知交替的促进相关。

Enhancement of a genuine visual mismatch negativity correlates with the facilitation of perceptual alternation of a bistable image.

作者信息

Urakawa Tomokazu, Nagano Kazuma, Matsumoto Yuki, Araki Osamu

出版信息

Neuroreport. 2018 Sep 5;29(13):1104-1108. doi: 10.1097/WNR.0000000000001079.

Abstract

By focusing on the automatic visual change detection process, the present study attempted to clarify neural processing relevant to the exogenously driven perceptual alternation (ePA) of a bistable image. In our recent electroencephalographic study, the oddball paradigm was adopted to the continuous presentation of a bistable image to record visual mismatch negativity (vMMN, a relative enhancement in the brain response to a deviant over a repetitively presented standard, reflecting the visual change detection process and prediction error to the deviant over the standard). In terms of interindividual differences in behavioral and neural data, a correlation was reported previously between the enhancement of vMMN and facilitation of perceptual alternation, suggesting the involvement of the visual change detection process in ePA. However, the vMMN recorded was expected to be confounded by neural adaptation to the repetitively presented standard; thus, it currently remains unclear whether visual change detection not dependent on neural adaptation, reflected in a 'genuine vMMN', is relevant to ePA. To examine this issue, the present study used a new stimulation paradigm, based on the so-called equiprobable paradigm, to mitigate neural adaptation. The results showed that a genuine vMMN significantly emerged and correlated with an increase in the proportion of perceptual alternation across participants. This supports the involvement of the automatic visual change detection process, not dependent on neural adaptation, in facilitating perceptual alternation. The present results provide a deeper understanding of the involvement of the visual change detection process in ePA.

摘要

通过聚焦于自动视觉变化检测过程,本研究试图阐明与双稳态图像的外源性驱动感知交替(ePA)相关的神经处理。在我们最近的脑电图研究中,采用了奇偶数范式对双稳态图像进行连续呈现,以记录视觉失配负波(vMMN,大脑对偏差刺激相对于重复呈现的标准刺激的反应增强,反映了视觉变化检测过程以及对偏差刺激相对于标准刺激的预测误差)。就行为和神经数据的个体差异而言,先前有报道称vMMN的增强与感知交替的促进之间存在相关性,这表明视觉变化检测过程参与了ePA。然而,所记录的vMMN预计会受到对重复呈现的标准刺激的神经适应的混淆;因此,目前尚不清楚不依赖于神经适应的视觉变化检测(反映在“真正的vMMN”中)是否与ePA相关。为了研究这个问题,本研究使用了一种基于所谓等概率范式的新刺激范式来减轻神经适应。结果表明,真正的vMMN显著出现,并且与参与者感知交替比例的增加相关。这支持了不依赖于神经适应的自动视觉变化检测过程参与促进感知交替。本研究结果为视觉变化检测过程在ePA中的参与提供了更深入的理解。

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