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利用变化聋效应分离听觉输入的物理和感知变化的神经相关性。

Segregating the neural correlates of physical and perceived change in auditory input using the change deafness effect.

机构信息

Carl-von-Ossietzky Universität Oldenburg, 26111 Oldenburg, Germany.

出版信息

J Cogn Neurosci. 2013 May;25(5):730-42. doi: 10.1162/jocn_a_00346. Epub 2012 Dec 18.

Abstract

Psychophysical experiments show that auditory change detection can be disturbed in situations in which listeners have to monitor complex auditory input. We made use of this change deafness effect to segregate the neural correlates of physical change in auditory input from brain responses related to conscious change perception in an fMRI experiment. Participants listened to two successively presented complex auditory scenes, which consisted of six auditory streams, and had to decide whether scenes were identical or whether the frequency of one stream was changed between presentations. Our results show that physical changes in auditory input, independent of successful change detection, are represented at the level of auditory cortex. Activations related to conscious change perception, independent of physical change, were found in the insula and the ACC. Moreover, our data provide evidence for significant effective connectivity between auditory cortex and the insula in the case of correctly detected auditory changes, but not for missed changes. This underlines the importance of the insula/anterior cingulate network for conscious change detection.

摘要

心理物理学实验表明,在听众必须监测复杂听觉输入的情况下,听觉变化检测可能会受到干扰。我们利用这种变化聋效应,在 fMRI 实验中,将听觉输入中物理变化的神经相关性与与意识变化感知相关的大脑反应分离开来。参与者听两个连续呈现的复杂听觉场景,这些场景由六个听觉流组成,他们必须判断场景是否相同,或者在呈现之间一个流的频率是否发生了变化。我们的结果表明,听觉输入的物理变化,与成功的变化检测无关,在听觉皮层水平上得到了体现。与物理变化无关的与意识变化感知相关的激活,在脑岛和 ACC 中被发现。此外,我们的数据提供了证据,表明在正确检测到听觉变化的情况下,听觉皮层和脑岛之间存在显著的有效连通性,但对于错过的变化则没有。这强调了脑岛/前扣带网络对于意识变化检测的重要性。

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