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首页> 外文期刊>Journal of Cognitive Neuroscience >Relations between the Neural Bases of Dynamic Auditory Processing and Phonological Processing: Evidence from fMRI
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Relations between the Neural Bases of Dynamic Auditory Processing and Phonological Processing: Evidence from fMRI

机译:动态听觉处理和语音处理的神经基础之间的关系:来自功能磁共振成像的证据。

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摘要

Functional magnetic resonance imaging (fMRI) was used to examine how the brain responds to temporal compression of speech and to determine whether the same regions are also involved in phonological processes associated with reading. Recorded speech was temporally compressed to varying degrees and presented in a sentence verification task. Regions involved in phonological processing were identified in a separate scan using a rhyming judgment task with pseudowords compared to a lettercase judgment task. The left inferior frontal and left superior temporal regions (Broca's and Wernicke's areas), along with the right inferior frontal cortex, demonstrated a convex response to speech compression; their activity increased as compression increased, but then decreased when speech became incomprehensible. Other regions exhibited linear increases in activity as compression increased, including the middle frontal gyri bilaterally. The auditory cortices exhibited compression-related decreases bilaterally, primarily reflecting a decrease in activity when speech became incomprehensible. Rhyme judgments engaged two left inferior frontal gyrus regions (pars triangularis and pars opercularis), of which only the pars triangularis region exhibited significant compression-related activity. These results directly demonstrate that a subset of the left inferior frontal regions involved in phonological processing is also sensitive to transient acoustic features within the range of comprehensible speech.
机译:功能磁共振成像(fMRI)用于检查大脑如何对语音的时间压缩做出反应,并确定相同区域是否也参与与阅读相关的语音过程。录制的语音在时间上被不同程度地压缩,并在句子验证任务中呈现。与字母大小写判断任务相比,使用带有假词的押韵判断任务在单独的扫描中识别了涉及语音处理的区域。左下额叶和左上颞部区域(Broca和Wernicke的区域),以及右下额叶皮层,对语音压缩表现出凸起的反应。它们的活动随着压缩的增加而增加,但是当语音变得令人费解时下降。其他区域表现出随着压迫增加而线性增加的活动,包括双侧中额回回。听觉皮层表现出与压缩有关的双侧减少,主要反映了当语音变得无法理解时活动的减少。押韵判断涉及两个左下额回区域(pars triangleis和pars opercularis),其中只有pars triangleis地区表现出明显的与压缩有关的活动。这些结果直接表明,在语音处理中涉及的左下额叶区域的子集也对可理解语音范围内的瞬态声学特征敏感。

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