Literature DB >> 25788100

Effective connectivity of brain regions related to visual word recognition: An fMRI study of Chinese reading.

Min Xu1,2,3, Tianfu Wang1,2, Siping Chen1,2, Peter T Fox1,4,5, Li Hai Tan1,2.   

Abstract

Past neuroimaging studies have focused on identifying specialized functional brain systems for processing different components of reading, such as orthography, phonology, and semantics. More recently, a few experiments have been performed to look into the integration and interaction of distributed neural systems for visual word recognition, suggesting that lexical processing in alphabetic languages involves both ventral and dorsal neural pathways originating from the visual cortex. In the present functional magnetic resonance imaging study, we tested the multiple pathways model with Chinese character stimuli and examined how the neural systems interacted in reading Chinese. Using dynamic causal modeling, we demonstrated that visual word recognition in Chinese engages the ventral pathway from the visual cortex to the left ventral occipitotemporal cortex, but not the dorsal pathway from the visual cortex to the left parietal region. The ventral pathway, however, is linked to the superior parietal lobule and the left middle frontal gyrus (MFG) so that a dynamic neural network is formed, with information flowing from the visual cortex to the left ventral occipitotemporal cortex to the parietal lobule and then to the left MFG. The findings suggest that cortical dynamics is constrained by the differences in how visual orthographic symbols in writing systems are linked to spoken language.
© 2015 Wiley Periodicals, Inc.

Entities:  

Keywords:  Chinese reading; connectivity; dorsal pathway; dynamic causal modeling; functional magnetic resonance imaging; reading; ventral pathway; writing systems

Mesh:

Year:  2015        PMID: 25788100      PMCID: PMC6869803          DOI: 10.1002/hbm.22792

Source DB:  PubMed          Journal:  Hum Brain Mapp        ISSN: 1065-9471            Impact factor:   5.038


  72 in total

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