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Dynamic and Task-Dependent Encoding of Speech and Voice by Phase Reorganization of Cortical Oscillations

机译:通过皮质振荡的相位重组实现语音和语音的动态和任务相关编码

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摘要

Speech and vocal sounds are at the core of human communication. Cortical processing of these sounds critically depends on behavioral demands. However, the neurocomputational mechanisms enabling this adaptive processing remain elusive. Here we examine the task-dependent reorganization of electroencephalographic responses to natural speech sounds (vowels /a/, /i/, /u/) spoken by three speakers (two female, one male) while listeners perform a one-back task on either vowel or speaker identity. We show that dynamic changes of sound-evoked responses and phase patterns of cortical oscillations in the alpha band (8–12 Hz) closely reflect the abstraction and analysis of the sounds along the task-relevant dimension. Vowel categorization leads to a significant temporal realignment of responses to the same vowel, e.g., /a/, independent of who pronounced this vowel, whereas speaker categorization leads to a significant temporal realignment of responses to the same speaker, e.g., speaker 1, independent of which vowel she/he pronounced. This transient and goal-dependent realignment of neuronal responses to physically different external events provides a robust cortical coding mechanism for forming and processing abstract representations of auditory (speech) input.
机译:语音和声音是人类交流的核心。这些声音的皮质处理严重取决于行为要求。但是,实现这种自适应处理的神经计算机制仍然难以捉摸。在这里,我们研究了由三位发言人(两名女性,一名男性)说出的对自然语音(元音/ a /,/ i /,/ u /)的脑电图响应的任务依赖性重组,而听众则对其中任一者执行单向任务元音或说话者身份。我们表明,在α波段(8–12 Hz)中,声音诱发响应和皮质振动的相位模式的动态变化紧密反映了与任务相关的维度上声音的抽象和分析。元音分类导致对同一元音(例如/ a /)的响应的时间显着重新排列,而与谁说出该元音无关,而说话者分类导致对同一说话人(例如,说话人1)的响应进行显着的时间重新排列她/他读了哪个元音。神经元对物理上不同的外部事件的响应的瞬态和目标依赖的重新排列为形成和处理听觉(语音)输入的抽象表示提供了强大的皮质编码机制。

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