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From Phonemes to Articulatory Codes: An fMRI Study of the Role of Broca's Area in Speech Production

机译:从音素到发音代码:功能磁共振成像研究布罗卡地区在语音产生中的作用

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摘要

We used event-related functional magnetic resonance imaging to investigate the neuroanatomical substrates of phonetic encoding and the generation of articulatory codes from phonological representations. Our focus was on the role of the left inferior frontal gyrus (LIFG) and in particular whether the LIFG plays a role in sublexical phonological processing such as syllabification or whether it is directly involved in phonetic encoding and the generation of articulatory codes. To answer this question, we contrasted the brain activation patterns elicited by pseudowords with high– or low–sublexical frequency components, which we expected would reveal areas related to the generation of articulatory codes but not areas related to phonological encoding. We found significant activation of a premotor network consisting of the dorsal precentral gyrus, the inferior frontal gyrus bilaterally, and the supplementary motor area for low– versus high–sublexical frequency pseudowords. Based on our hypothesis, we concluded that these areas and in particular the LIFG are involved in phonetic and not phonological encoding. We further discuss our findings with respect to the mechanisms of phonetic encoding and provide evidence in support of a functional segregation of the posterior part of Broca's area, the pars opercularis.
机译:我们使用事件相关的功能磁共振成像来研究语音编码的神经解剖学底物以及从语音表示形式生成发音代码。我们的重点是左下额回(LIFG)的作用,尤其是LIFG是否在诸如音节化之类的词法语音处理中起作用,还是直接参与语音编码和发音代码的生成。为了回答这个问题,我们对比了具有高或低亚词法频率成分的伪单词引起的大脑激活模式,我们预期这将揭示与发音代码生成相关的区域,而不是与语音编码相关的区域。我们发现由前中央背回,双侧下额额回和低副词频伪词与高副词频假词组成的辅助运动区域组成的前运动网络的显着激活。根据我们的假设,我们得出结论,这些区域,尤其是LIFG涉及语音而非语音编码。我们将进一步讨论有关语音编码机制的发现,并提供证据支持Broca区域后部功能性分离。

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