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Mapping the reading circuitry for skilled deaf readers: An fMRI study of semantic and phonological processing

机译:映射聋人阅读器的阅读电路:语义和语音处理的功能磁共振成像研究

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摘要

We examined word-level reading circuits in skilled deaf readers whose primary language is American Sign Language, and hearing readers matched for reading ability (college level). During fMRI scanning, participants performed a semantic decision (concrete concept?), a phonological decision (two syllables?), and a false-font control task (string underlined?). The groups performed equally well on the semantic task, but hearing readers performed better on the phonological task. Semantic processing engaged similar left frontotemporal language circuits in deaf and hearing readers. However, phonological processing elicited increased neural activity in deaf, relative to hearing readers, in the left precentral gyrus, suggesting greater reliance on articulatory phonological codes, and in bilateral parietal cortex, suggesting increased phonological processing effort. Deaf readers also showed stronger anterior-posterior functional segregation between semantic and phonological processes in left inferior prefrontal cortex. Finally, weaker phonological decoding ability did not alter activation in the visual word form area for deaf readers.
机译:我们研究了主要手语为美国手语的聋哑读者的单词级阅读电路,并为听力能力相匹配的听力阅读者(大学级别)进行了研究。在fMRI扫描期间,参与者执行了语义决策(具体概念?),语音决策(两个音节?)和假字体控制任务(带下划线的字符串)。这些小组在语义任务上的表现同样出色,但听觉读者在语音任务上的表现更好。语义处理使聋哑和听力正常的左额颞叶语言回路参与其中。但是,相对于听觉阅读者,左耳前中央回中的语音处理引起了聋人神经活动的增加,这表明对发音的语音编码和双侧顶叶皮层的依赖性更大,表明语音处理的工作量增加了。聋哑读者还表现出左下额叶前额叶皮层语义和语音过程之间更强的前后功能分离。最后,较弱的语音解码能力并没有改变聋哑读者在视觉单词形式区域的激活。

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