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首页> 外文期刊>Neuroscience Research: The Official Journal of the Japan Neuroscience Society >Synchronization between overt speech envelope and EEG oscillations during imagined speech
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Synchronization between overt speech envelope and EEG oscillations during imagined speech

机译:在想象语言期间公开语音信封与EEG振荡之间的同步

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摘要

Neural oscillations synchronize with the periodicity of external stimuli such as the rhythm of the speech amplitude envelope. This synchronization induces a speech-specific, replicable neural phase pattern across trials and enables perceived speech to be classified. In this study, we hypothesized that neural oscillations during articulatory imagination of speech could also synchronize with the rhythm of speech imagery. To validate the hypothesis, after replacing the imagined speech with overt speech due to the physically unobservable nature of imagined speech, we investigated (1) whether the EEG-based regressed speech envelopes correlate with the overt speech envelope and (2) whether EEG during the imagined speech can classify speech stimuli with different envelopes. The variability of the duration of the imagined speech across trials was corrected using dynamic time warping. The classification was based on the distance between a test data and a template waveform of each class. Results showed a significant correlation between the EEG-based regressed envelope and the overt speech envelope. The average classification accuracy was 38.5%, which is significantly above the rate of chance (33.3%). These results demonstrate the synchronization between EEG during the imagined speech and the envelope of the overt counterpart. (C) 2019 Elsevier B.V. and Japan Neuroscience Society. All rights reserved.
机译:神经振荡与外部刺激的周期性同步,例如语音幅度包络的节奏。该同步在试验中引起语音特定的可复制的神经阶段模式,并使能够进行分类的语音。在这项研究中,我们假设言论观念期间的神经振荡也可以与语音图像的节奏同步。为了验证假设,在用明显的演讲取代了想象的演讲,由于物理上不可观察的语音的性质,我们调查了(1)基于EEG的回归语音信封是否与公开的语音包络和(2)是脑电图想象的演讲可以用不同的信封分类语音刺激。使用动态时间翘曲纠正了试验中想象的语音持续时间的可变性。分类基于测试数据与每个类的模板波形之间的距离。结果表明,基于EEG的回归包络和公开语音包络之间存在显着相关性。平均分类准确度为38.5%,这显着高于机会速度(33.3%)。这些结果表明,在想象的语音和公开对应的信封期间脑电图之间的同步。 (c)2019年Elsevier B.V.和日本神经科学社会。版权所有。

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