首页> 外文期刊>The Journal of the Acoustical Society of America >Laminar cortical dynamics of conscious speech perception: Neural model of phonemic restoration using subsequent context in noise
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Laminar cortical dynamics of conscious speech perception: Neural model of phonemic restoration using subsequent context in noise

机译:有意识语音感知的层流皮质动力学:在噪声中使用后续上下文进行音素恢复的神经模型

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摘要

How are laminar circuits of neocortex organized to generate conscious speech and language percepts? How does the brain restore information that is occluded by noise, or absent from an acoustic signal, by integrating contextual information over many milliseconds to disambiguate noise-occluded acoustical signals? How are speech and language heard in the correct temporal order, despite the influence of contexts that may occur many milliseconds before or after each perceived word? A neural model describes key mechanisms in forming conscious speech percepts, and quantitatively simulates a critical example of contextual disambiguation of speech and language; namely, phonemic restoration. Here, a phoneme deleted from a speech stream is perceptually restored when it is replaced by broadband noise, even when the disambiguating context occurs after the phoneme was presented. The model describes how the laminar circuits within a hierarchy of cortical processing stages may interact to generate a conscious speech percept that is embodied by a resonant wave of activation that occurs between acoustic features, acoustic item chunks, and list chunks. Chunk-mediated gating allows speech to be heard in the correct temporal order, even when what is heard depends upon future context.
机译:新皮质的层流如何组织以产生有意识的言语和语言知觉?大脑如何通过整合上下文信息(数毫秒)来消除被噪音遮挡的声音信号的歧义,从而恢复被噪音遮挡的信息或声音信号中缺少的信息?尽管上下文的影响可能会在每个感知到的单词之前或之后几毫秒内出现,但如何以正确的时间顺序听到语音和语言?神经模型描述了形成有意识的语音感知的关键机制,并定量地模拟了语音和语言的上下文歧义消除的关键示例。即音素还原。在这里,从语音流中删除的音素在被宽带噪声代替时,即使在呈现音素后出现了歧义的上下文时,也会从听觉上恢复。该模型描述了皮质处理阶段层次结构中的层流如何相互作用以生成有意识的语音感知,该感知语音感知是由声学特征,声学项目组块和列表组块之间发生的激活共振波所体现的。块介导的门控使您可以按正确的时间顺序听到语音,即使听到的声音取决于将来的环境。

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