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电生理启动效应证实,外纹状对称网络不受亮度极性的控制。

Electrophysiological priming effects confirm that the extrastriate symmetry network is not gated by luminance polarity.

机构信息

Department of Psychological Sciences, University of Liverpool, Liverpool, United Kingdom.

Department of Psychology, Edge Hill University, Ormskirk, United Kingdom.

出版信息

Eur J Neurosci. 2021 Feb;53(4):964-973. doi: 10.1111/ejn.14966. Epub 2020 Sep 19.

Abstract

It is known that the extrastriate cortex is activated by visual symmetry. This activation generates an ERP component called the Sustained Posterior Negativity (SPN). SPN amplitude increases (i.e., becomes more negative) with repeated presentations. We exploited this SPN priming effect to test whether the extrastriate symmetry response is gated by element luminance polarity. On each trial, participants observed three stimuli (patterns of dots) in rapid succession (500 ms. with 200 ms. gaps). The patterns were either symmetrical or random. The dot elements were either black or white on a grey background. The triplet sequences either showed repeated luminance (black > black > black, or white > white > white) or changing luminance (black > white > black, or white > black > white). As predicted, SPN priming was comparable in repeated and changing luminance conditions. Therefore, symmetry with black elements is not processed independently from symmetry with white elements. Source waveform analysis confirmed that this priming happened within the extrastriate symmetry network. We conclude that the network pools information across luminance polarity channels.

摘要

已知大脑的枕外皮层通过视觉对称被激活。这种激活会产生一个被称为持续后负向波(SPN)的 ERP 成分。随着重复呈现,SPN 振幅增加(即变得更负)。我们利用这种 SPN 启动效应来测试枕外对称反应是否受到元素亮度极性的门控。在每次试验中,参与者快速连续观察三个刺激(点模式)(500 毫秒,间隔 200 毫秒)。这些模式要么是对称的,要么是随机的。点元素要么是黑色或白色,背景是灰色。三连体序列要么显示重复的亮度(黑色>黑色>黑色,或白色>白色>白色),要么显示变化的亮度(黑色>白色>黑色,或白色>黑色>白色)。正如预测的那样,重复和变化亮度条件下的 SPN 启动相似。因此,黑色元素的对称与白色元素的对称不是独立处理的。源波形分析证实,这种启动发生在枕外对称网络内。我们得出结论,该网络在跨亮度极性通道中汇集信息。

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