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我们对视觉输入的起源眼进行预测:双眼竞争中的视觉失配负波。

We make predictions about eye of origin of visual input: Visual mismatch negativity from binocular rivalry.

作者信息

Jack Bradley N, Roeber Urte, O'Shea Robert P

出版信息

J Vis. 2015;15(13):9. doi: 10.1167/15.13.9.

Abstract

The visual mismatch negativity (vMMN) is a negative component of event-related potentials (ERPs). It occurs when an infrequent visual stimulus, a deviant, is randomly and unpredictably presented in a sequence of frequent visual stimuli, the standards, and is thought to reflect prediction and prediction error of visual input. We investigated the sensitivity of vMMN to eye of origin (utrocular) information as well as to orientation information. We presented 80% of binocular rivalry standards (one grating to one eye and an identical, orthogonally oriented grating to the other eye), and 20% of deviants, either by swapping the gratings between the eyes to change the eye of origin of the gratings (an eye-swap deviant) or by rotating the gratings by 45° to change the orientation of the gratings (an orientation deviant). We found an orientation vMMN that was maximal at about 250 ms and an eye-swap vMMN that was maximal at about 380 ms. We also found deviance-related activity to both sorts of stimuli earlier than is traditionally defined as a vMMN. We used standardized low-resolution brain electromagnetic tomography (sLORETA) to localize each vMMN component and found similar sources for both vMMNs in occipital and frontal areas of the brain but differences in parietal and temporal areas. We conclude that eye of origin information can be used to elicit vMMN, that eye-swap vMMN is different to orientation vMMN, and that vMMN can be generated from information of which observers are unaware.

摘要

视觉失匹配负波(vMMN)是事件相关电位(ERP)的一个负性成分。当一个不常见的视觉刺激(偏差刺激)在一系列常见视觉刺激(标准刺激)中随机且不可预测地呈现时,它就会出现,并且被认为反映了视觉输入的预测和预测误差。我们研究了vMMN对眼源(单眼)信息以及方向信息的敏感性。我们呈现了80%的双眼竞争标准刺激(一只眼睛呈现一个光栅,另一只眼睛呈现一个相同但正交定向的光栅),以及20%的偏差刺激,要么通过在两眼之间交换光栅以改变光栅的眼源(眼交换偏差刺激),要么通过将光栅旋转45°以改变光栅的方向(方向偏差刺激)。我们发现一个在约250毫秒时达到最大值的方向vMMN和一个在约380毫秒时达到最大值的眼交换vMMN。我们还发现,与这两种刺激相关的偏差活动比传统定义的vMMN出现得更早。我们使用标准化低分辨率脑电磁断层扫描(sLORETA)来定位每个vMMN成分,发现两个vMMN在大脑枕叶和额叶区域有相似的来源,但在顶叶和颞叶区域存在差异。我们得出结论,眼源信息可用于引发vMMN,眼交换vMMN与方向vMMN不同,并且vMMN可以从观察者未意识到的信息中产生。

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