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前同步脑活动预测流/弹动显示的知觉结果。

Pre-coincidence brain activity predicts the perceptual outcome of streaming/bouncing motion display.

机构信息

Department of Psychology, School of Education, SooChow University, Suzhou, Jiangsu, 215123, China.

Department of Education, School of Humanities, Jiang Nan University, Wuxi, 214122, China.

出版信息

Sci Rep. 2017 Aug 18;7(1):8832. doi: 10.1038/s41598-017-08801-5.

Abstract

When two identical visual discs move toward each other on a two-dimensional visual display, they can be perceived as either "streaming through" or "bouncing off" each other after their coincidence. Previous studies have observed a strong bias toward the streaming percept. Additionally, the incidence of the bouncing percept in this ambiguous display could be increased by various factors, such as a brief sound at the moment of coincidence and a momentary pause of the two discs. The streaming/bouncing bistable motion phenomenon has been studied intensively since its discovery. However, little is known regarding the neural basis underling the perceptual ambiguity in the classic version of the streaming/bouncing motion display. The present study investigated the neural basis of the perception disambiguating underling the processing of the streaming/bouncing bistable motion display using event-related potential (ERP) recordings. Surprisingly, the amplitude of frontal central P2 (220-260 ms) that was elicited by the moving discs ~200 ms before the coincidence of the two discs was observed to be predictive of subsequent streaming or bouncing percept. A larger P2 amplitude was observed for streaming percept than the bouncing percept. These findings suggest that the streaming/bouncing bistable perception may have been disambiguated unconsciously ~200 ms before the coincidence of the two discs.

摘要

当两个相同的二维视觉圆盘在视觉显示器上相互靠近移动时,它们在重合后可能会被感知为“相互穿透”或“相互弹开”。先前的研究观察到人们对穿透感知有强烈的偏好。此外,在这种模棱两可的显示中,通过各种因素可以增加弹开感知的发生率,例如在重合时刻发出短暂的声音以及两个圆盘的短暂停顿。自从发现这种穿透/弹开双稳态运动现象以来,人们已经对其进行了深入研究。然而,对于经典的穿透/弹开运动显示中感知模糊的神经基础知之甚少。本研究使用事件相关电位(ERP)记录来研究在处理穿透/弹开双稳态运动显示时感知歧义消除的神经基础。令人惊讶的是,在两个圆盘重合前约 200 毫秒时,由移动圆盘引发的额中央区 P2(220-260 毫秒)的振幅被观察到可以预测随后的穿透或弹开感知。与弹开感知相比,穿透感知时 P2 振幅更大。这些发现表明,在两个圆盘重合前约 200 毫秒时,穿透/弹开双稳态感知可能已经无意识地消除了模糊性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcf1/5562831/04488cae6ee0/41598_2017_8801_Fig1_HTML.jpg

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