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Early lexical influences on sublexical processing in speech perception: Evidence from electrophysiology

机译:关于言语感知中的花边处理的早期词汇影响:来自电生理学的证据

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Contextual information influences how we perceive speech, but it remains unclear at which level of processing contextual information merges with acoustic information. Theories differ on whether early stages of speech processing, like sublexical processing during which articulatory features and portions of speech sounds are identified, are strictly feed-forward or are influenced by semantic and lexical context. In the current study, we investigate the time-course of lexical context effects on judgments about the individual sounds we perceive by recording electroencephalography as an online measure of speech processing while subjects engage in a lexically biasing phoneme categorization task. We find that lexical context modulates the amplitude of the N100, an ERP component linked with sublexical processes in speech perception. We demonstrate that these results can be modeled in an interactive speech perception model and are not well fit by any established feed-forward mechanisms of lexical bias. These results support interactive speech perception theories over feed-forward theories in which sublexical speech perception processes are only driven by bottom-up information.
机译:背景信息影响我们如何感知语音,但它仍然不清楚地处理上下文信息与声学信息合并。关于语音处理的早期阶段的理论不同,如在其中识别出铰接特征和语音的部分的花边处理,严格馈送或受语义和词法背景的影响。在目前的研究中,我们调查了对我们通过记录脑电图的判断判断的判断的时间过程作为语音处理的在线测量,而受试者从事Lexly偏置音素分类任务。我们发现词汇上下文调制N100的幅度,是语音感知中的具有空隙过程的ERP组件。我们证明这些结果可以在交互式语音感知模型中进行建模,并且不适合任何已建立的词汇偏压的前进机制。这些结果支持对前馈理论的交互式语音感知理论,其中速度语音感知过程仅由自下而上信息驱动。

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