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人类听觉皮层中两耳时间和强度差异的独立或综合处理?

Independent or integrated processing of interaural time and level differences in human auditory cortex?

机构信息

Human Brain Research Center, Graduate School of Medicine, Kyoto University, Kyoto 606-8507, Japan; Career-Path Promotion Unit for Young Life Scientists, Kyoto University, Kyoto 606-8501, Japan.

Career-Path Promotion Unit for Young Life Scientists, Kyoto University, Kyoto 606-8501, Japan.

出版信息

Hear Res. 2014 Jun;312:121-7. doi: 10.1016/j.heares.2014.03.009. Epub 2014 Apr 5.

Abstract

Sound localization in the horizontal plane is mainly determined by interaural time differences (ITD) and interaural level differences (ILD). Both cues result in an estimate of sound source location and in many real-life situations these two cues are roughly congruent. When stimulating listeners with headphones it is possible to counterbalance the two cues, so called ITD/ILD trading. This phenomenon speaks for integrated ITD/ILD processing at the behavioral level. However, it is unclear at what stages of the auditory processing stream ITD and ILD cues are integrated to provide a unified percept of sound lateralization. Therefore, we set out to test with human electroencephalography for integrated versus independent ITD/ILD processing at the level of preattentive cortical processing by measuring the mismatch negativity (MMN) to changes in sound lateralization. We presented a series of diotic standards (perceived at a midline position) that were interrupted by deviants that entailed either a change in a) ITD only, b) ILD only, c) congruent ITD and ILD, or d) counterbalanced ITD/ILD (ITD/ILD trading). The sound stimuli were either i) pure tones with a frequency of 500 Hz, or ii) amplitude modulated tones with a carrier frequency of 4000 Hz and a modulation frequency of 125 Hz. We observed significant MMN for the ITD/ILD traded deviants in case of the 500 Hz pure tones, and for the 4000 Hz amplitude-modulated tone. This speaks for independent processing of ITD and ILD at the level of the MMN within auditory cortex. However, the combined ITD/ILD cues elicited smaller MMN than the sum of the MMN induced in response to ITD and ILD cues presented in isolation for 500 Hz, but not 4000 Hz, suggesting independent processing for the higher frequency only. Thus, the two markers for independent processing - additivity and cue-conflict - resulted in contradicting conclusions with a dissociation between the lower (500 Hz) and higher frequency (4000 Hz) bands.

摘要

声源在水平面上的定位主要取决于两耳间时间差(ITD)和两耳间强度差(ILD)。这两个线索都可以用来估计声源的位置,在许多现实生活中,这两个线索大致是一致的。当用耳机刺激听众时,可以平衡这两个线索,这被称为 ITD/ILD 交易。这种现象表明在行为水平上存在整合的 ITD/ILD 处理。然而,目前尚不清楚在听觉处理过程的哪个阶段,ITD 和 ILD 线索被整合,以提供对声音侧化的统一感知。因此,我们通过测量对声音侧化变化的失匹配负波(MMN),来测试在非注意性皮质处理水平上,ITD 和 ILD 处理是整合的还是独立的。我们呈现了一系列的双耳标准刺激(被感知为中线位置),这些标准刺激被偏差刺激打断,这些偏差刺激导致了以下变化:a)仅 ITD 变化,b)仅 ILD 变化,c)ITD 和 ILD 一致变化,或 d)平衡的 ITD/ILD 变化(ITD/ILD 交易)。声音刺激是 a)频率为 500 Hz 的纯音,或 b)载波频率为 4000 Hz、调制频率为 125 Hz 的调幅音。我们观察到,在 500 Hz 纯音的情况下,对于 ITD/ILD 交易的偏差刺激,以及在 4000 Hz 调幅音的情况下,都出现了显著的 MMN。这表明在听觉皮层中,ITD 和 ILD 是独立处理的。然而,与单独呈现的 ITD 和 ILD 线索引起的 MMN 相比,结合的 ITD/ILD 线索引起的 MMN 较小,这只在 500 Hz 时成立,而在 4000 Hz 时不成立,这表明只有高频时才是独立处理的。因此,两个独立处理的标记——加性和线索冲突——导致了相互矛盾的结论,在低频(500 Hz)和高频(4000 Hz)之间存在分离。

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