Ono Kentaro, Yamasaki Daiki, Altmann Christian F, Mima Tatsuya
Center of KANSEI Innovation, Hiroshima University, Japan; Graduate School of Core Ethics and Frontier Sciences, Ritsumeikan University, Japan.
Department of Psychology, Graduate School of Letters, Kyoto University, Japan.
Hear Res. 2017 Dec;356:87-92. doi: 10.1016/j.heares.2017.10.006. Epub 2017 Oct 17.
Mismatch negativity (MMN) is a unique brain response elicited by any discernible change of features in a tone sequence. Although the occurrence of MMN is dependent upon the difference of a stimulus parameter, such as frequency or intensity, recent studies have suggested that MMN occurs as a result of a comparison between an internal representation created by perception and an incoming tone. The present study aimed to investigate MMN occurs based upon the physical properties of stimuli or as a result of the perception of the scale illusion. A scale illusion occurs during presentation of ascending and descending musical scales between C4 and C5. The tones of these scales are presented to the right and left ear alternately using a dichotic listening paradigm. Although the ascending/descending sequences are alternated between ears after each tone, we perceive the illusion of progressively ascending/descending tones as being separated by ear. The experiment was designed as an oddball task using the illusionary sequence and three different types of tone sequences as control conditions. Brain response to these sequences and infrequently presented deviants was measured using electroencephalography (EEG). All of the control sequences showed MMN in response to the deviant. However, the illusionary sequence did not result in a significant MMN. These results suggest that in the case of scale illusion, the occurrence of MMN is based upon the representation of tones created by perception, but not upon the physical properties of a tone sequence.
失匹配负波(MMN)是由音调序列中任何可辨别的特征变化引发的一种独特的脑反应。尽管MMN的出现取决于刺激参数(如频率或强度)的差异,但最近的研究表明,MMN是由感知产生的内部表征与传入音调之间的比较所导致的。本研究旨在探究MMN是基于刺激的物理属性产生,还是由音阶错觉的感知导致。在呈现C4和C5之间的升序和降序音阶时会出现音阶错觉。这些音阶的音调使用双耳分听范式交替呈现给右耳和左耳。尽管每个音调后升序/降序序列在双耳之间交替,但我们会感知到逐渐上升/下降的音调错觉是按耳朵分开的。该实验被设计为一个oddball任务,使用错觉序列和三种不同类型的音调序列作为对照条件。使用脑电图(EEG)测量对这些序列以及偶尔出现的偏差刺激的脑反应。所有对照序列对偏差刺激均显示出MMN。然而,错觉序列并未产生显著的MMN。这些结果表明,在音阶错觉的情况下,MMN的出现基于感知产生的音调表征,而非音调序列的物理属性。