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重新解释人类 ABR 双耳相互作用成分:将注意力与刺激效应分离。

Reinterpreting the human ABR binaural interaction component: isolating attention from stimulus effects.

机构信息

Laboratory of Cognitive Psychophysiology, Tokyo Gakugei University, Koganei, Tokyo, Japan.

Faculty of Information Technology and Communication Sciences, Tampere University, 33720 Tampere, Finland.

出版信息

Hear Res. 2021 Oct;410:108350. doi: 10.1016/j.heares.2021.108350. Epub 2021 Sep 4.

Abstract

Subtracting the sum of left and right monaural auditory brainstem responses (ABRs) from the corresponding binaural ABR isolates the binaural interaction component (ABR-BIC). In a previous investigation (Ikeda, 2015), during auditory yet not visual tasks, tone-pips elicited a significant difference in amplitude between summed monaural and binaural ABRs. With click stimulation, this amplitude difference was task-independent. This self-critical reanalysis's purpose was to establish that a difference waveform (i.e., ABR-BIC DN1) reflected an auditory selective attention effect that was isolable from stimulus factors. Regardless of whether stimuli were tone-pips or clicks, effect sizes of the DN1 peak amplitudes relative to zero improved during auditory tasks over visual tasks. Auditory selective attention effects on the monaural and binaural ABR wave-V amplitudes were tone-pip specific. Those wave-V effects thus could not explain the stimulus-universal effect of auditory selective attention on DN1 detectability, which was thus entirely binaural. In a manner isolated from auditory selective attention, multiple mediation analyses indicated that the higher right monaural wave-V amplitudes mediated individual differences in how clicks, relative to tone-pips, augmented DN1 amplitudes. There are implications of these findings for advancing ABR-BIC measurement.

摘要

从相应的双耳听觉脑干反应 (ABR) 中减去左右单耳 ABR 的和,即可分离出双耳相互作用成分 (ABR-BIC)。在之前的一项研究 (Ikeda, 2015) 中,在听觉而非视觉任务期间,音调刺激会导致总和单耳和双耳 ABR 之间的振幅产生显著差异。而在点击刺激时,这种振幅差异与任务无关。本次自我批判性重新分析的目的是确定差异波形(即 ABR-BIC DN1)反映了一种听觉选择性注意效应,这种效应可与刺激因素分离。无论刺激是音调刺激还是点击刺激,与视觉任务相比,在听觉任务中,DN1 峰值振幅相对于零的效应大小都会提高。听觉选择性注意对单耳和双耳 ABR 波 V 振幅的影响是特定于音调刺激的。因此,这些波 V 效应不能解释听觉选择性注意对 DN1 可探测性的普遍刺激效应,而这种效应完全是双耳的。在与听觉选择性注意分离的情况下,多项中介分析表明,右耳单耳波 V 振幅越高,可解释个体对点击相对于音调刺激时如何增强 DN1 振幅的差异。这些发现对推进 ABR-BIC 测量具有重要意义。

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