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噪声改变了视听言语处理过程中颞上皮质的β波段活动。

Noise alters beta-band activity in superior temporal cortex during audiovisual speech processing.

机构信息

Department of Neurophysiology and Pathophysiology, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany.

出版信息

Neuroimage. 2013 Apr 15;70:101-12. doi: 10.1016/j.neuroimage.2012.11.066. Epub 2012 Dec 27.

Abstract

Speech recognition is improved when complementary visual information is available, especially under noisy acoustic conditions. Functional neuroimaging studies have suggested that the superior temporal sulcus (STS) plays an important role for this improvement. The spectrotemporal dynamics underlying audiovisual speech processing in the STS, and how these dynamics are affected by auditory noise, are not well understood. Using electroencephalography, we investigated how auditory noise affects audiovisual speech processing in event-related potentials (ERPs) and oscillatory activity. Spoken syllables were presented in audiovisual (AV) and auditory only (A) trials at three different auditory noise levels (no, low, and high). Responses to A stimuli were subtracted from responses to AV stimuli, separately for each noise level, and these responses were subjected to the statistical analysis. Central ERPs differed between the no noise and the two noise conditions from 130 to 150 ms and 170 to 210 ms after auditory stimulus onset. Source localization using the local autoregressive average procedure revealed an involvement of the lateral temporal lobe, encompassing the superior and middle temporal gyrus. Neuronal activity in the beta-band (16 to 32 Hz) was suppressed at central channels around 100 to 400 ms after auditory stimulus onset in the averaged AV minus A signal over the three noise levels. This suppression was smaller in the high noise compared to the no noise and low noise condition, possibly reflecting disturbed recognition or altered processing of multisensory speech stimuli. Source analysis of the beta-band effect using linear beamforming demonstrated an involvement of the STS. Our study shows that auditory noise alters audiovisual speech processing in ERPs localized to lateral temporal lobe and provides evidence that beta-band activity in the STS plays a role for audiovisual speech processing under regular and noisy acoustic conditions.

摘要

当有补充的视觉信息可用时,语音识别会得到改善,尤其是在嘈杂的声学环境下。功能神经影像学研究表明,颞上沟(STS)在这种改善中起着重要作用。STS 中视听语音处理的频谱时域动态,以及这些动态如何受到听觉噪声的影响,还不是很清楚。使用脑电图,我们研究了听觉噪声如何影响事件相关电位(ERPs)和振荡活动中的视听语音处理。在三种不同的听觉噪声水平(无、低和高)下,以视听(AV)和仅听觉(A)试验呈现发音音节。分别针对每个噪声水平,从 A 刺激的响应中减去 AV 刺激的响应,并对这些响应进行统计分析。在听觉刺激后 130 到 150 毫秒和 170 到 210 毫秒,无噪声和两种噪声条件下的中央 ERP 不同。使用局部自回归平均程序进行的源定位显示,外侧颞叶(包括颞上和中回)的参与。在三个噪声水平的平均 AV 减去 A 信号中,在听觉刺激后 100 到 400 毫秒,中央通道处的 beta 波段(16 到 32 Hz)神经元活动被抑制。与无噪声和低噪声条件相比,高噪声下的抑制较小,这可能反映了多感觉语音刺激识别的干扰或处理改变。使用线性波束成形对 beta 波段效应的源分析表明 STS 的参与。我们的研究表明,听觉噪声改变了 ERPs 中定位到外侧颞叶的视听语音处理,并提供了证据表明 STS 中的 beta 波段活动在正常和嘈杂的声学条件下对视听语音处理起作用。

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