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Modality independence of word comprehension.

机译:单词理解的方式独立性。

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Functional magnetic resonance imaging (fMRI) was used to examine the functional anatomy of word comprehension in the auditory and visual modalities of presentation. We asked our subjects to determine if word pairs were semantically associated (e.g., table, chair) and compared this to a reference task where they were asked to judge whether word pairs rhymed (e.g., bank, tank). This comparison showed task-specific and modality-independent activation for semantic processing in the heteromodal cortices of the left inferior frontal gyrus (BA 46, 47) and left middle temporal gyrus (BA 21). There were also modality-specific activations in the fusiform gyrus (BA 37) for written words and in the superior temporal gyrus (BA 22) for spoken words. Our findings are consistent with the hypothesis that word form recognition (lexical encoding) occurs in unimodal cortices and that heteromodal brain regions in the anterior as well as posterior components of the language network subserve word comprehension (semantic decoding). Copyright 2002 Wiley-Liss, Inc.
机译:功能磁共振成像(fMRI)用于检查呈现的听觉和视觉方式中单词理解的功能解剖。我们要求受试者确定单词对在语义上是否相关(例如,桌子,椅子),并将其与参考任务进行比较,在参考任务中要求他们判断单词对是否押韵(例如,银行,坦克)。这种比较显示了左下额叶回(BA 46、47)和左中颞回(BA 21)的异峰皮质的语义处理中的任务特定和模态无关的激活。梭状回(BA 37)的书面单词和上颞回(BA 22)的口语单词也有特定于形态的激活。我们的发现与以下假设相一致:单词形式识别(词汇编码)发生在单峰皮质中,并且语言网络的前部和后部的异质脑区域都支持单词理解(语义解码)。版权所有2002 Wiley-Liss,Inc.

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