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从初级听觉皮层解码对听觉感知的情境影响。

Decoding contextual influences on auditory perception from primary auditory cortex.

作者信息

Englitz Bernhard, Akram Sahar, Elhilali Mounya, Shamma Shihab

机构信息

Institute for Systems Research, University of Maryland, College Park, United States.

Computational Neuroscience Lab, Donders Institute for Brain Cognition and Behavior, Nijmegen, Netherlands.

出版信息

Elife. 2024 Dec 9;13:RP94296. doi: 10.7554/eLife.94296.

Abstract

Perception can be highly dependent on stimulus context, but whether and how sensory areas encode the context remains uncertain. We used an ambiguous auditory stimulus - a tritone pair - to investigate the neural activity associated with a preceding contextual stimulus that strongly influenced the tritone pair's perception: either as an ascending or a descending step in pitch. We recorded single-unit responses from a population of auditory cortical cells in awake ferrets listening to the tritone pairs preceded by the contextual stimulus. We find that the responses adapt locally to the contextual stimulus, consistent with human MEG recordings from the auditory cortex under the same conditions. Decoding the population responses demonstrates that cells responding to pitch-changes are able to predict well the context-sensitive percept of the tritone pairs. Conversely, decoding the individual pitch representations and taking their distance in the circular Shepard tone space predicts the of the percept. The various percepts can be readily captured and explained by a neural model of cortical activity based on populations of adapting, pitch and pitch-direction cells, aligned with the neurophysiological responses. Together, these decoding and model results suggest that contextual influences on perception may well be already encoded at the level of the primary sensory cortices, reflecting basic neural response properties commonly found in these areas.

摘要

感知可能高度依赖于刺激背景,但感觉区域是否以及如何编码背景仍不确定。我们使用了一种模糊的听觉刺激——一个三全音对——来研究与先前背景刺激相关的神经活动,该背景刺激强烈影响了三全音对的感知:要么是音高的上升步骤,要么是下降步骤。我们记录了清醒雪貂听由背景刺激引导的三全音对时,一群听觉皮层细胞的单单元反应。我们发现,这些反应会局部地适应背景刺激,这与在相同条件下从听觉皮层进行的人类脑磁图记录一致。对群体反应进行解码表明,对音高变化做出反应的细胞能够很好地预测三全音对的上下文敏感感知。相反,解码单个音高表示并计算它们在圆形谢泼德音调空间中的距离,可以预测感知的结果。基于适应细胞、音高细胞和音高方向细胞群体的皮层活动神经模型能够轻松捕捉并解释各种感知,这与神经生理反应一致。总之,这些解码和模型结果表明,背景对感知的影响很可能已经在初级感觉皮层水平上进行了编码,反映了这些区域常见的基本神经反应特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a94/11627509/0c3c342533b8/elife-94296-fig1.jpg

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