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Resting-State Functional Connectivity Patterns Predict Chinese Word Reading Competency

Resting-state functional connectivity (RSFC) offers a novel approach to reveal the temporal synchronization of functionally related brain regions. Recent studies have identified several RSFCs whose strength was associated with reading competence in alphabetic languages. In the present study, we exam... Full description

Journal Title: PLoS One Sep 2012, Vol.7(9), p.e44848
Main Author: Wang, Xiaosha
Other Authors: Han, Zaizhu , He, Yong , Liu, Li , Bi, Yanchao
Format: Electronic Article Electronic Article
Language: English
Subjects:
ID: E-ISSN: 19326203 ; DOI: 10.1371/journal.pone.0044848
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title: Resting-State Functional Connectivity Patterns Predict Chinese Word Reading Competency
format: Article
creator:
  • Wang, Xiaosha
  • Han, Zaizhu
  • He, Yong
  • Liu, Li
  • Bi, Yanchao
subjects:
  • Beijing China
  • Laboratories
  • Gender Differences
  • Visual Tasks
  • Behavior
  • Visual Observation
  • Reaction Time
  • Language
  • Synchronization
  • Brain
  • Brain
  • Synchronism
  • Neurosciences
  • Cognitive Ability
  • Temporal Gyrus
  • Cognition & Reasoning
  • Superior Parietal Lobule
  • Studies
  • Correlation
ispartof: PLoS One, Sep 2012, Vol.7(9), p.e44848
description: Resting-state functional connectivity (RSFC) offers a novel approach to reveal the temporal synchronization of functionally related brain regions. Recent studies have identified several RSFCs whose strength was associated with reading competence in alphabetic languages. In the present study, we examined the role of intrinsic functional relations for reading a non-alphabetic language – Chinese – by correlating RSFC maps of nine Chinese reading-related seed regions and reaction time in the single-character reading task. We found that Chinese reading efficiency was positively correlated with the connection between left inferior occipital gyrus and left superior parietal lobule, between right posterior fusiform gyrus and right superior parietal lobule, and between left inferior temporal gyrus and left inferior parietal lobule. These results could not be attributed to inter-individual differences arising from the peripheral processes of the reading task such as visual input detection and articulation....
language: eng
source:
identifier: E-ISSN: 19326203 ; DOI: 10.1371/journal.pone.0044848
fulltext: fulltext_linktorsrc
issn:
  • 19326203
  • 1932-6203
url: Link


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titleResting-State Functional Connectivity Patterns Predict Chinese Word Reading Competency
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identifierE-ISSN: 19326203 ; DOI: 10.1371/journal.pone.0044848
subjectBeijing China ; Laboratories ; Gender Differences ; Visual Tasks ; Behavior ; Visual Observation ; Reaction Time ; Language ; Synchronization ; Brain ; Brain ; Synchronism ; Neurosciences ; Cognitive Ability ; Temporal Gyrus ; Cognition & Reasoning ; Superior Parietal Lobule ; Studies ; Correlation
descriptionResting-state functional connectivity (RSFC) offers a novel approach to reveal the temporal synchronization of functionally related brain regions. Recent studies have identified several RSFCs whose strength was associated with reading competence in alphabetic languages. In the present study, we examined the role of intrinsic functional relations for reading a non-alphabetic language – Chinese – by correlating RSFC maps of nine Chinese reading-related seed regions and reaction time in the single-character reading task. We found that Chinese reading efficiency was positively correlated with the connection between left inferior occipital gyrus and left superior parietal lobule, between right posterior fusiform gyrus and right superior parietal lobule, and between left inferior temporal gyrus and left inferior parietal lobule. These results could not be attributed to inter-individual differences arising from the peripheral processes of the reading task such as visual input detection and articulation....
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abstractResting-state functional connectivity (RSFC) offers a novel approach to reveal the temporal synchronization of functionally related brain regions. Recent studies have identified several RSFCs whose strength was associated with reading competence in alphabetic languages. In the present study, we examined the role of intrinsic functional relations for reading a non-alphabetic language – Chinese – by correlating RSFC maps of nine Chinese reading-related seed regions and reaction time in the single-character reading task. We found that Chinese reading efficiency was positively correlated with the connection between left inferior occipital gyrus and left superior parietal lobule, between right posterior fusiform gyrus and right superior parietal lobule, and between left inferior temporal gyrus and left inferior parietal lobule. These results could not be attributed to inter-individual differences arising from the peripheral processes of the reading task such as visual input detection and articulation....
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