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与连续语音在高频伽马波段时间锁定的皮层反应取决于选择性注意。

Cortical Responses Time-Locked to Continuous Speech in the High-Gamma Band Depend on Selective Attention.

作者信息

Commuri Vrishab, Kulasingham Joshua P, Simon Jonathan Z

机构信息

Department of Electrical and Computer Engineering, University of Maryland, College Park, MD, United States.

Department of Electrical Engineering, Linköping University, Linköping, Sweden.

出版信息

bioRxiv. 2023 Oct 15:2023.07.20.549567. doi: 10.1101/2023.07.20.549567.

Abstract

Auditory cortical responses to speech obtained by magnetoencephalography (MEG) show robust speech tracking to the speaker's fundamental frequency in the high-gamma band (70-200 Hz), but little is currently known about whether such responses depend on the focus of selective attention. In this study 22 human subjects listened to concurrent, fixed-rate, speech from male and female speakers, and were asked to selectively attend to one speaker at a time, while their neural responses were recorded with MEG. The male speaker's pitch range coincided with the lower range of the high-gamma band, whereas the female speaker's higher pitch range had much less overlap, and only at the upper end of the high-gamma band. Neural responses were analyzed using the temporal response function (TRF) framework. As expected, the responses demonstrate robust speech tracking of the fundamental frequency in the high-gamma band, but only to the male's speech, with a peak latency of approximately 40 ms. Critically, the response magnitude depends on selective attention: the response to the male speech is significantly greater when male speech is attended than when it is not attended, under acoustically identical conditions. This is a clear demonstration that even very early cortical auditory responses are influenced by top-down, cognitive, neural processing mechanisms.

摘要

通过脑磁图(MEG)获得的听觉皮层对语音的反应显示,在高伽马波段(70 - 200赫兹)中,对说话者的基频有强烈的语音跟踪,但目前对于这种反应是否依赖于选择性注意的焦点知之甚少。在这项研究中,22名人类受试者同时听取男性和女性说话者以固定速率发出的语音,并被要求每次选择性地关注其中一个说话者,同时用MEG记录他们的神经反应。男性说话者的音高范围与高伽马波段的较低范围重合,而女性说话者较高的音高范围重叠较少,且仅在高伽马波段的上端。使用时间响应函数(TRF)框架分析神经反应。正如预期的那样,这些反应在高伽马波段显示出对基频的强烈语音跟踪,但仅针对男性语音,峰值潜伏期约为40毫秒。至关重要的是,反应幅度取决于选择性注意:在声学条件相同的情况下,当关注男性语音时,对男性语音的反应明显大于不关注时。这清楚地表明,即使是非常早期的皮层听觉反应也受到自上而下的认知神经处理机制的影响。

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