Brattico Elvira, Tervaniemi Mari, Näätänen Risto, Peretz Isabelle
Cognitive Brain Research Unit, Department of Psychology, University of Helsinki, Finland.
Brain Res. 2006 Oct 30;1117(1):162-74. doi: 10.1016/j.brainres.2006.08.023. Epub 2006 Sep 11.
While listening to music, we immediately detect 'wrong' tones that do not match our expectations based on the prior context. This study aimed to determine whether such expectations can occur preattentively, as indexed by event-related potentials (ERPs), and whether these are modulated by attentional processes. To this end, we recorded ERPs in nonmusicians while they were presented with unfamiliar melodies, containing either a pitch deviating from the equal-tempered chromatic scale (out-of-tune) or a pitch deviating from the diatonic scale (out-of-key). ERPs were recorded in a passive experiment in which subjects were distracted from the sounds and in an active experiment in which they were judging how incongruous each melody was. In both the experiments, pitch incongruities elicited an early frontal negativity that was not modulated by attentional focus. This early negativity, closely corresponding to the mismatch negativity (MMN) of the ERPs, was mainly originated in the auditory cortex and occurred in response to both pitch violations but with larger amplitude for the more salient out-of-tune pitch than the less salient out-of-key pitch. Attentional processes leading to the conscious access of musical scale information were indexed by the late parietal positivity (resembling the P600 of the ERPs) elicited in response to both incongruous pitches in the active experiment only. Our results indicate that the relational properties of the musical scale are quickly and automatically extracted by the auditory cortex even before the intervention of focused attention.
在听音乐时,我们能立即察觉到那些与基于先前语境的预期不相符的“错误”音调。本研究旨在确定这种预期是否能在注意前出现,以事件相关电位(ERP)为指标,以及这些预期是否会受到注意过程的调节。为此,我们在非音乐家聆听不熟悉的旋律时记录ERP,这些旋律包含偏离十二平均律半音阶的音高(走调)或偏离自然音阶的音高(走调)。ERP记录于一个被动实验中,在该实验中被试者的注意力从声音上转移开,以及一个主动实验中,在该实验中他们要判断每个旋律有多不协调。在这两个实验中,音高不一致都会引发早期额叶负波,且该负波不受注意焦点的调节。这种早期负波与ERP的失配负波(MMN)密切对应,主要起源于听觉皮层,对两种音高违反情况都会出现,但对于更明显的走调音高,其振幅大于不太明显的走调音高。仅在主动实验中,对两种不协调音高做出反应时引发的晚期顶叶正波(类似于ERP的P600)为导致有意识获取音阶信息的注意过程提供了指标。我们的结果表明,即使在集中注意力干预之前,听觉皮层就能快速自动地提取音阶的关系属性。