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预测面孔和房屋:特定类别视觉动作-效应预测调节感觉加工的后期阶段。

Predicting faces and houses: category-specific visual action-effect prediction modulates late stages of sensory processing.

作者信息

Hughes Gethin, Waszak Florian

机构信息

Department of Psychology, University of Essex, Wivenhoe Park,Colchester, CO4 3SQ, UK.

Université Paris Descartes, Sorbonne Paris Cité, Paris, France; CNRS (Laboratoire Psychologie de la Perception, UMR 8158), Paris, France.

出版信息

Neuropsychologia. 2014 Aug;61:11-8. doi: 10.1016/j.neuropsychologia.2014.06.002. Epub 2014 Jun 12.

DOI:10.1016/j.neuropsychologia.2014.06.002
PMID:24930591
Abstract

Our perception is fundamentally influenced by the way that we interact with the world. In particular, sensory events that are consistent with our planned actions are attenuated, both in terms of their phenomenology, and their neural response. Previous research in this domain has focused on simple-featured stimuli such as Gabor patches or sine wave tones, with attenuation normally occurring at early stages of sensory processing. In the current study we investigated this phenomenon using more ecologically valid stimuli that would likely involve higher-level visual predictions. More specifically, we trained participants to associate different actions with the presentation of a face or a house. By recording ERPs we could utilise the modularity of face processing to determine the locus of sensory attenuation for these high-level stimuli, as well as identify content-specific brain activity related to the prediction itself. In contrast to previous studies using low-level stimuli, we observed attenuation at later stages of visual processing, suggesting that higher-level predictions result in high-level prediction errors. We additionally observed significant differences over visual brain regions during action preparation dependent on whether participants were predicting to see a house or a face, perhaps reflecting preactivation of the predicted action effects. Furthermore, the degree to which participants showed evidence of preactivation, was correlated with the magnitude of their P2 attenuation. Taken together, these findings provide new insight into motor prediction and its influence on perception.

摘要

我们的感知从根本上受到我们与世界互动方式的影响。特别是,与我们计划行动一致的感官事件,在其现象学和神经反应方面都会减弱。该领域以前的研究主要集中在诸如伽柏补丁或正弦波音调等具有简单特征的刺激上,衰减通常发生在感官处理的早期阶段。在当前的研究中,我们使用更具生态效度的刺激来研究这一现象,这些刺激可能涉及更高层次的视觉预测。更具体地说,我们训练参与者将不同的动作与面部或房屋的呈现联系起来。通过记录脑电图,我们可以利用面部处理的模块化来确定这些高级刺激的感官衰减位置,以及识别与预测本身相关的特定内容的大脑活动。与之前使用低级刺激的研究不同,我们在视觉处理的后期阶段观察到了衰减,这表明更高层次的预测会导致更高层次的预测误差。我们还观察到,在动作准备过程中,视觉脑区存在显著差异,这取决于参与者是预测会看到房屋还是面部,这可能反映了预测动作效果的预激活。此外,参与者表现出预激活证据的程度与他们P2衰减的幅度相关。综上所述,这些发现为运动预测及其对感知的影响提供了新的见解。

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