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与固定相关的视觉失配负波。

Fixation-related visual mismatch negativity.

机构信息

School of Optometry and Vision Science, Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan, Israel.

The Leslie and Susan Gonda multidisciplinary Brain Research Center, Bar-Ilan University, Ramat-Gan, Israel.

出版信息

J Vis. 2023 Mar 1;23(3):17. doi: 10.1167/jov.23.3.17.

Abstract

Vision under natural conditions could be studied by combining electroencephalogram (EEG) and eye tracking as well as using saccades as triggers for the onset of the fixation-related potentials (FRPs) and for the oculomotor inhibition (OMI) that follows every saccade. The result of this analysis is thought to be equivalent to the event-related response following a peripheral preview. Previous studies that measured responses to visual deviants in a sequence of flashed stimuli found an increased negativity in the occipital N1 component (visual mismatch negativity [vMMN]), and prolonged saccadic inhibition for unexpected events. The aim of the current study was to develop an oddball paradigm in constrained natural-viewing and determine whether a similar mismatched FRP and prolonged OMI for deviance could be found. To this end, we developed a visual oddball paradigm on a static display to generate expectancy and surprise across successive saccades. Observers (n = 26) inspected, one after the other, seven small patterns of E and an inverted E arranged on the screen along a horizontal path, with one frequent (standard) and one rare (deviant), looking for a superimposed tiny dot target in each 5-second trial. Our results show a significantly larger FRP-N1 negativity for the deviant, compared with the standard and prolonged OMI of the following saccade, as previously found for transient oddballs. Our results show, for the first time, prolonged OMI and stronger fixation-related N1 to a task-irrelevant visual mismatch (vMMN) in natural, but task-guided viewing. These two signals combined could serve as markers of prediction error in free viewing.

摘要

可以通过结合脑电图 (EEG) 和眼动追踪,并利用眼跳作为固定相关电位 (FRP) 的起始触发以及随后的每一次眼跳的眼球运动抑制 (OMI) 的触发,来研究自然条件下的视觉。人们认为这种分析的结果相当于外周预览后的事件相关反应。先前的研究在闪光刺激序列中测量对视觉偏差的反应,发现枕部 N1 成分(视觉失匹配负波 [vMMN])的负性增加,以及对意外事件的眼跳抑制延长。本研究的目的是在受限制的自然观察中开发一种异常范式,并确定是否可以找到类似的失配 FRP 和对偏差的延长 OMI。为此,我们在静态显示器上开发了一种视觉异常范式,以在连续的眼跳中产生预期和惊喜。观察者 (n = 26) 一个接一个地检查七个小的 E 模式和一个倒置的 E 模式,这些模式沿着屏幕上的水平路径排列,其中一个是常见的(标准的),一个是罕见的(偏差的),在每个 5 秒的试验中寻找叠加的微小点目标。我们的结果显示,与标准相比,偏差的 FRP-N1 负性显著更大,并且与后续眼跳的 OMI 延长,这与短暂异常一致。我们的结果首次表明,在自然但任务引导的观察中,对任务无关的视觉失配(vMMN)有延长的 OMI 和更强的固定相关 N1。这两个信号的组合可以作为自由观察中预测误差的标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aafd/10064921/f5a6ac8db5fe/jovi-23-3-17-f001.jpg

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