首页> 外文期刊>The Neuroscientist: a review journal bringing neurobiology, neurology and psychiatry >Spatiotemporal dynamics of word processing in the human cortex.
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Spatiotemporal dynamics of word processing in the human cortex.

机译:人类皮质中文字处理的时空动态。

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摘要

Understanding language relies on concurrent activation of multiple areas within a distributed neural network. Hemodynamic measures (fMRI and PET) indicate their location, and electromagnetic measures (magnetoencephalography and electroencephalography) reveal the timing of brain activity during language processing. Their combination can show the spatiotemporal characteristics (where and when) of the underlying neural network. Activity to written and spoken words starts in sensory-specific areas and progresses anteriorly via respective ventral ("what") processing streams toward the simultaneously active supramodal regions. The process of understanding a word in its current context peaks about 400 ms after word onset. It is carried out mainly through interactions of the temporal and inferior prefrontal areas on the left during word reading and bilateral temporo-prefrontal areas during speech processing. Neurophysiological evidence suggests that lexical access, semantic associations, and contextual integration may be simultaneous as the brain uses available information in a concurrent manner, with the final goal of rapidly comprehending verbal input. Because the same areas may participate in multiple stages of semantic or syntactic processing, it is crucial to consider both spatial and temporal aspects of their interactions to appreciate how the brain understands words.
机译:理解语言依赖于分布式神经网络内多个区域的并发激活。血液动力学测量(fMRI和PET)指示其位置,电磁测量(磁脑图和脑电图)揭示语言处理过程中大脑活动的时机。它们的组合可以显示基础神经网络的时空特征(在何时何地)。书面和口头语言的活动始于特定于感觉的区域,并通过各自的腹(“什么”)处理流朝着同时活动的超模态区域向前发展。在单词开始后大约400毫秒内,在当前上下文中理解单词的过程会达到峰值。它主要通过单词阅读过程中左侧的颞前额叶和下额叶前区与语音处理过程中双边的颞叶-额叶前区的相互作用来实现。神经生理学证据表明,由于大脑以并发方式使用可用信息,因此词汇访问,语义关联和上下文整合可能是同时发生的,其最终目标是快速理解言语输入。由于相同的区域可能参与语义或句法处理的多个阶段,因此至关重要的是要考虑它们的交互作用的时空方面,以了解大脑如何理解单词。

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