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Spatiotemporal Signatures of Large-Scale Synfire Chains for Speech Processing as Revealed by MEG

机译:MEG揭示的用于语音处理的大型Synfire链的时空特征

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摘要

We report a new brain signature of memory trace activation in the human brain revealed by magnetoencephalography and distributed source localization. Spatiotemporal patterns of cortical activation can be picked up in the time course of source images underlying magnetic brain responses to speech and noise stimuli, especially the generators of the magnetic mismatch negativity. We found that acoustic signals perceived as speech elicited a well-defined spatiotemporal pattern of sequential activation of superior–temporal and inferior–frontal cortex, whereas the same identical stimuli, when perceived as noise, did not elicit temporally structured activation. Strength of local sources constituting large-scale spatiotemporal patterns reflected additional lexical and syntactic features of speech. Morphological processing of the critical sound as verb inflection led to particularly pronounced early left inferior–frontal activation, whereas the same sound functioning as inflectional affix of a noun activated superior–temporal cortex more strongly. We conclude that precisely timed spatiotemporal patterns involving specific cortical areas may represent a brain code of memory circuit activation. These spatiotemporal patterns are best explained in terms of synfire mechanisms linking neuronal populations in different cortical areas. The large-scale synfire chains appear to reflect the processing of stimuli together with the context-dependent perceptual and cognitive information bound to them.
机译:我们报告了脑磁图和分布式源本地化揭示人脑中的记忆痕迹激活的新的脑签名。皮质激活的时空模式可以在源图像的时间过程中拾取,这些源图像是磁脑对语音和噪声刺激(尤其是磁失配消极的产生器)产生响应的基础。我们发现,被感知为语音的声音信号会引起上颞叶皮质和下额叶皮质的顺序激活的明确时空模式,而当被视为噪声时,相同的刺激却不会引起时间结构性激活。构成大规模时空模式的本地资源的强度反映了语音的其他词汇和句法特征。关键声音的形态学处理(如动词拐点)导致特别明显的早期左下额叶激活,而与名词的词缀词缀相同的声音更强烈地激活了上颞皮层。我们得出结论,涉及特定皮层区域的精确时空模式可能代表记忆电路激活的大脑代码。这些时空模式最好用连接不同皮层区域神经元种群的突触机制来解释。大型synfire链似乎反映了刺激的处理以及绑定到上下文的感知和认知信息。

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