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Dissecting the functional anatomy of auditory word repetition

机译:剖析听话重复的功能解剖

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摘要

This fMRI study used a single, multi-factorial, within-subjects design to dissociate multiple linguistic and non-linguistic processing areas that are all involved in repeating back heard words. The study compared: (1) auditory to visual inputs; (2) phonological to non-phonological inputs; (3) semantic to non-semantic inputs; and (4) speech production to finger-press responses. The stimuli included words (semantic and phonological inputs), pseudowords (phonological input), pictures and sounds of animals or objects (semantic input), and colored patterns and hums (non-semantic and non-phonological). The speech production tasks involved auditory repetition, reading, and naming while the finger press tasks involved one-back matching. The results from the main effects and interactions were compared to predictions from a previously reported functional anatomical model of language based on a meta-analysis of many different neuroimaging experiments. Although many findings from the current experiment replicated many of those predicted, our within-subject design also revealed novel results by providing sufficient anatomical precision to dissect several different regions within the anterior insula, pars orbitalis, anterior cingulate, SMA, and cerebellum. For example, we found one part of the pars orbitalis was involved in phonological processing and another in semantic processing. We also dissociated four different types of phonological effects in the left superior temporal sulcus (STS), left putamen, left ventral premotor cortex, and left pars orbitalis. Our findings challenge some of the commonly-held opinions on the functional anatomy of language, and resolve some previously conflicting findings about specific brain regions—and our experimental design reveals details of the word repetition process that are not well captured by current models.
机译:这项功能磁共振成像研究使用了一个单一的,多因素的,受试者内部的设计来分离多个语言和非语言处理区域,这些区域都涉及重复回听的单词。该研究比较:(1)听觉与视觉输入; (2)语音到非语音输入; (3)语义到非语义的输入; (4)产生语音以按下手指。刺激包括单词(语义和语音输入),伪词(语音输入),动物或物体的图片和声音(语义输入)以及彩色图案和嗡嗡声(非语义和非语音)。语音产生任务涉及听觉重复,阅读和命名,而手指按压任务涉及单向匹配。根据许多不同的神经影像实验的荟萃分析,将主要效果和相互作用的结果与先前报道的语言功能解剖模型的预测结果进行了比较。尽管当前实验中的许多发现重复了许多预测的结果,但我们的受试者内部设计还通过提供足够的解剖学精度来解剖前岛,眶旁,前扣带回,SMA和小脑中的多个不同区域,从而揭示了新颖的结果。例如,我们发现轨道的一部分涉及语音处理,而另一部分涉及语义处理。我们还分离了左上颞沟(STS),左壳核,左腹前运动皮层和眼眶pars中的四种不同类型的语音效果。我们的发现挑战了关于语言功能解剖学的一些普遍观点,并解决了先前有关特定大脑区域的一些矛盾发现-我们的实验设计揭示了单词重复过程的细节,当前模型无法很好地捕捉到这一点。

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