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动作-声音巧合会抑制人类听觉皮层在 EEG 和 MEG 中的诱发电反应。

Action-sound coincidences suppress evoked responses of the human auditory cortex in EEG and MEG.

机构信息

Institute for Psychology, Hungarian Academy of Sciences, H-1394 Budapest, Hungary.

出版信息

J Cogn Neurosci. 2012 Sep;24(9):1919-31. doi: 10.1162/jocn_a_00215. Epub 2012 Feb 23.

Abstract

The N1 auditory ERP and its magnetic counterpart (N1[m]) are suppressed when elicited by self-induced sounds. Because the N1(m) is a correlate of auditory event detection, this N1 suppression effect is generally interpreted as a reflection of the workings of an internal forward model: The forward model captures the contingency (causal relationship) between the action and the sound, and this is used to cancel the predictable sensory reafference when the action is initiated. In this study, we demonstrated in three experiments using a novel coincidence paradigm that actual contingency between actions and sounds is not a necessary condition for N1 suppression. Participants performed time interval production tasks: They pressed a key to set the boundaries of time intervals. Concurrently, but independently of keypresses, a sequence of pure tones with random onset-to-onset intervals was presented. Tones coinciding with keypresses elicited suppressed N1(m) and P2(m), suggesting that action-stimulus contiguity (temporal proximity) is sufficient to suppress sensory processing related to the detection of auditory events.

摘要

当自我诱发的声音引发 N1 听觉事件相关电位及其磁场对应物(N1[m])时,它们会受到抑制。由于 N1(m)是听觉事件检测的相关物,因此这种 N1 抑制效应通常被解释为内部前向模型工作的反映:前向模型捕获了动作和声音之间的偶然性(因果关系),并在动作启动时用于取消可预测的感觉再传入。在这项研究中,我们通过使用一种新的巧合范式在三个实验中证明,动作和声音之间的实际偶然性不是 N1 抑制的必要条件。参与者执行时间间隔产生任务:他们按下一个键来设置时间间隔的边界。同时,但与按键独立,呈现具有随机起始到起始间隔的纯音序列。与按键同时出现的音引发了抑制的 N1(m)和 P2(m),这表明动作-刺激连续性(时间接近)足以抑制与听觉事件检测相关的感觉处理。

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