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八度错觉的神经机制:中枢起源的电生理证据

Neural mechanisms of the octave illusion: electrophysiological evidence for central origin.

作者信息

Ross J, Tervaniemi M, Näätänen R

机构信息

University of Tartu, Estonia.

出版信息

Neuroreport. 1996 Dec 20;8(1):303-6. doi: 10.1097/00001756-199612200-00060.

Abstract

The octave illusion is experienced when two simultaneous tones, separated by one octave and presented to the opposite ears, are continuously reversed between the two ears. Subjects consistently report a sequence of alternating single tones: the high tone in the right ear and the low in the left. We wished to determine whether such a complex tone sequence is encoded as it is presented or as it is perceived. This was accomplished by making the tone sequence infrequently correspond to how it is perceived, and recording event-related potentials (ERPs) to these perceptually equivalent but physically different events. The illusion-mimicking tones elicited the mismatch negativity (MMN), a change-specific ERP component with origin in the auditory cortex. This indicates that the stimuli giving rise to the octave illusion are encoded according to their physical rather than perceptual properties. Consequently, the generator of the octave illusion is located beyond the level of the auditory cortex.

摘要

当两个同时发出、相隔一个八度且分别呈现给两只对侧耳朵的音调在两只耳朵之间持续反转时,就会产生八度错觉。受试者始终报告一系列交替出现的单音:右耳中的高音和左耳中的低音。我们希望确定这样一个复杂的音调序列是按照其呈现方式还是按照其感知方式进行编码的。这是通过使音调序列很少与它的感知方式相对应,并记录与这些感知上等效但物理上不同的事件相关的电位(ERP)来实现的。模仿错觉的音调引发了失配负波(MMN),这是一种起源于听觉皮层的特定于变化的ERP成分。这表明引起八度错觉的刺激是根据其物理特性而非感知特性进行编码的。因此,八度错觉的产生源位于听觉皮层水平之上。

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