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失配负波如何反映听觉运动?

How does mismatch negativity reflect auditory motion?

机构信息

Pavlov Institute of Physiology, Russian Academy of Sciences, St Petersburg, Russia.

出版信息

Hear Res. 2010 Sep 1;268(1-2):194-201. doi: 10.1016/j.heares.2010.06.001. Epub 2010 Jun 11.

Abstract

Recent studies have shown that the mismatch negativity (MMN), a change-specific component of the auditory event-related potential (ERP), is accurately tracking the spatial location of the stationary sound source. The aim of the present study was to estimate the parameters of MMNs evoked by auditory motion and to compare the motion discrimination measured by MMN in normally hearing subjects with the psychophysical data obtained in the same group of subjects. The auditory motion was simulated by introducing variable interaural time differences (ITDs) into the deviant stimuli. The ERPs were recorded for frequently occurring stationary midline standards and for infrequent deviant sounds moving horizontally at different velocities. It was established that all the deviant stimuli elicited significant MMNs. The MMN increased monotonically in amplitude with growing angular distances travelled by the deviant stimuli. The deviants that travelled over the same angular distances at different velocities caused MMNs that agreed in magnitude but differed in latency. These results indicated that the angular distance rather than sound image velocity was the most essential cue involved in the MMN generation. To test the psychophysical performance, a two-interval forced-choice task was employed, in which the ITD was the main dependent variable. The deviants that evoked significant MMNs at the minimal ITDs were not discriminated behaviorally, indicating that the motion discrimination of the hearing system may be better at a preattentive level.

摘要

最近的研究表明,失匹配负波(MMN)是听觉事件相关电位(ERP)中的一种特定于变化的成分,它可以准确地跟踪固定声源的空间位置。本研究旨在估计听觉运动诱发的 MMN 的参数,并将正常听力受试者的 MMN 运动辨别测量值与同一组受试者获得的心理物理数据进行比较。听觉运动是通过在偏差刺激中引入可变的耳间时间差(ITD)来模拟的。为经常出现的中线固定标准和以不同速度水平移动的不频繁的偏差声音记录 ERP。结果表明,所有偏差刺激都引起了显著的 MMN。MMN 的幅度随偏差刺激所经过的角度距离的增加而单调增加。以不同速度经过相同角度距离的偏差刺激引起的 MMN 幅度相同,但潜伏期不同。这些结果表明,在 MMN 产生中,角度距离而不是声音图像速度是最关键的线索。为了测试心理物理性能,采用了两间隔强制选择任务,其中 ITD 是主要的因变量。在最小 ITD 处引起显著 MMN 的偏差刺激在行为上没有被区分,这表明听觉系统的运动辨别能力可能在非注意水平上更好。

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