Resting-state EEG reveals global network deficiency in dyslexic children

H Xue, Z Wang, Y Tan, H Yang, W Fu, L Xue, J Zhao - Neuropsychologia, 2020 - Elsevier
Developmental dyslexia is known to involve dysfunctions in multiple brain regions; however,
a clear understanding of the brain networks behind this disorder is still lacking. The present …

Resting-state EEG reveals global network deficiency in dyslexic children

H Xue, Z Wang, Y Tan, H Yang, W Fu… - …, 2020 - pubmed.ncbi.nlm.nih.gov
Developmental dyslexia is known to involve dysfunctions in multiple brain regions; however,
a clear understanding of the brain networks behind this disorder is still lacking. The present …

Resting-state EEG reveals global network deficiency in dyslexic children.

H Xue, Z Wang, Y Tan, H Yang, W Fu, L Xue… - …, 2020 - psycnet.apa.org
Developmental dyslexia is known to involve dysfunctions in multiple brain regions; however,
a clear understanding of the brain networks behind this disorder is still lacking. The present …

Resting-state EEG reveals global network deficiency in dyslexic children

H Xue, Z Wang, Y Tan, H Yang, W Fu, L Xue… - …, 2020 - research.rug.nl
Developmental dyslexia is known to involve dysfunctions in multiple brain regions; however,
a clear understanding of the brain networks behind this disorder is still lacking. The present …

Resting-state EEG reveals global network deficiency in dyslexic children.

H Xue, Z Wang, Y Tan, H Yang, W Fu, L Xue… - …, 2020 - europepmc.org
Developmental dyslexia is known to involve dysfunctions in multiple brain regions; however,
a clear understanding of the brain networks behind this disorder is still lacking. The present …