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失匹配负波揭示的语言音调模式的早期皮层处理

Early cortical processing of linguistic pitch patterns as revealed by the mismatch negativity.

作者信息

Ren G-Q, Yang Y, Li X

机构信息

State Key Laboratory of Brain and Cognitive Science, Institute of Psychology, Chinese Academy of Sciences, Datun Road 4A, Chaoyang District, Beijing 100101, PR China.

出版信息

Neuroscience. 2009 Aug 4;162(1):87-95. doi: 10.1016/j.neuroscience.2009.04.021. Epub 2009 Apr 15.

Abstract

Previous brain imaging studies have shown the left hemispheric dominance for processing of lexical tone in native speakers. However, the low temporal resolution related to neuroimaging techniques might not explicitly detect the brain activities that occur at a relatively small or a determined time frame. We used the mismatch negativity (MMN) and a source estimation technique (low-resolution electromagnetic tomography [LORETA]) to probe the brain activities underlying the early pre-attentive processing of Mandarin lexical tone and intonation. A passive oddball paradigm was applied to present tone and intonation contrast in a speech and nonspeech context. The results showed that no difference of the MMN amplitudes existed between speech and nonspeech conditions, although a larger MMN was found for tone than intonation condition. Source localization of the MMNs for all of the conditions showed the right hemispheric dominance, regardless of their linguistic functions (tone vs. intonation) or speech context (speech vs. nonspeech). Interestingly, the MMN generator for normal tone and hummed tone originated from the same cortical area (right parietal lobe, BA 19). These findings suggest that the pre-attentive cortical processing can be modulated not only by speech stimuli, but also by their nonspeech hums. Our data are compatible with the acoustic hypothesis of speech processing.

摘要

以往的脑成像研究表明,母语者在处理词汇声调时左半球占优势。然而,与神经成像技术相关的低时间分辨率可能无法明确检测到在相对较小或确定的时间框架内发生的大脑活动。我们使用失配负波(MMN)和源估计技术(低分辨率电磁断层扫描[LORETA])来探究普通话词汇声调和语调早期前注意加工背后的大脑活动。采用被动奇偶数范式在语音和非语音情境中呈现声调与语调对比。结果显示,语音和非语音条件下MMN波幅没有差异,尽管声调条件下的MMN比语调条件下的更大。所有条件下MMN的源定位显示右半球占优势,无论其语言功能(声调与语调)或语音情境(语音与非语音)如何。有趣的是,正常声调与哼唱声调的MMN发生器源自同一皮层区域(右顶叶,BA 19)。这些发现表明,前注意皮层加工不仅可以受到语音刺激的调节,还可以受到其非语音哼唱的调节。我们的数据与语音加工的声学假说相符。

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