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首页> 外文期刊>Psychophysiology >Topographic recordings of auditory evoked potentials to speech: Subcortical and cortical responses
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Topographic recordings of auditory evoked potentials to speech: Subcortical and cortical responses

机译:听觉诱发的语音表达的地形记录:皮下和皮层反应

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摘要

Topographies of speech auditory brainstem response (speech ABR), a fine electrophysiological marker of speech encoding, have never been described. Yet, they could provide useful information to assess speech ABR generators and better characterize populations of interest (e.g., musicians, dyslexics). We present here a novel methodology of topographic speech ABR recording, using a 32-channel low sampling rate (5kHz) EEG system. Quality of speech ABRs obtained with this conventional multichannel EEG system were compared to that of signals simultaneously recorded with a high sampling rate (13.3kHz) EEG system. Correlations between speech ABRs recorded with the two systems revealed highly similar signals, without any significant difference between their signal-to-noise ratios (SNRs). Moreover, an advanced denoising method for multichannel data (denoising source separation) significantly improved SNR and allowed topography of speech ABR to be recovered.
机译:从未描述过语音听觉脑干反应(语音ABR)的拓扑结构,这是语音编码的优良电生理标志。但是,它们可以提供有用的信息来评估语音ABR生成器,并更好地表征感兴趣的人群(例如,音乐家,诵读困难的人)。我们在这里介绍一种使用32通道低采样率(5kHz)EEG系统的地形语音ABR记录的新颖方法。将使用这种常规多通道EEG系统获得的语音ABR的质量与以高采样率(13.3kHz)EEG系统同时记录的信号的质量进行了比较。用这两个系统记录的语音ABR之间的相关性显示出高度相似的信号,它们的信噪比(SNR)之间没有任何显着差异。此外,一种用于多通道数据的高级降噪方法(降噪源分离)显着提高了SNR,并可以恢复语音ABR的拓扑。

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