The neural underpinnings of reading skill in deaf adults
•Skilled readers had greater activation in left IFG and MTG when reading for meaning.•Reading skill correlated with activity in left IT (orthographic-semantic interface).•Semantic task accuracy correlated with activity in left ATL (conceptual processing).•Phonological task accuracy correlated with a...
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Published in | Brain and language Vol. 160; pp. 11 - 20 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Netherlands
Elsevier Inc
01.09.2016
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Subjects | |
Online Access | Get full text |
ISSN | 0093-934X 1090-2155 1090-2155 |
DOI | 10.1016/j.bandl.2016.06.007 |
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Abstract | •Skilled readers had greater activation in left IFG and MTG when reading for meaning.•Reading skill correlated with activity in left IT (orthographic-semantic interface).•Semantic task accuracy correlated with activity in left ATL (conceptual processing).•Phonological task accuracy correlated with activity in left IFG (articulatory coding).•Reading skill did not correlate with neural activity during the phonological task.
We investigated word-level reading circuits in skilled deaf readers (N=14; mean reading age=19.5years) and less skilled deaf readers (N=14; mean reading age=12years) who were all highly proficient users of American Sign Language. During fMRI scanning, participants performed a semantic decision (concrete concept?), a phonological decision (two syllables?), and a false-font control task (string underlined?). No significant group differences were observed with the full participant set. However, an analysis with the 10 most and 10 least skilled readers revealed that for the semantic task (vs. control task), proficient deaf readers exhibited greater activation in left inferior frontal and middle temporal gyri than less proficient readers. No group differences were observed for the phonological task. Whole-brain correlation analyses (all participants) revealed that for the semantic task, reading ability correlated positively with neural activity in the right inferior frontal gyrus and in a region associated with the orthography-semantics interface, located anterior to the visual word form area. Reading ability did not correlate with neural activity during the phonological task. Accuracy on the semantic task correlated positively with neural activity in left anterior temporal lobe (a region linked to conceptual processing), while accuracy on the phonological task correlated positively with neural activity in left posterior inferior frontal gyrus (a region linked to syllabification processes during speech production). Finally, reading comprehension scores correlated positively with vocabulary and print exposure measures, but not with phonological awareness scores. |
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AbstractList | We investigated word-level reading circuits in skilled deaf readers (N=14; mean reading age=19.5years) and less skilled deaf readers (N=14; mean reading age=12years) who were all highly proficient users of American Sign Language. During fMRI scanning, participants performed a semantic decision (concrete concept?), a phonological decision (two syllables?), and a false-font control task (string underlined?). No significant group differences were observed with the full participant set. However, an analysis with the 10 most and 10 least skilled readers revealed that for the semantic task (vs. control task), proficient deaf readers exhibited greater activation in left inferior frontal and middle temporal gyri than less proficient readers. No group differences were observed for the phonological task. Whole-brain correlation analyses (all participants) revealed that for the semantic task, reading ability correlated positively with neural activity in the right inferior frontal gyrus and in a region associated with the orthography-semantics interface, located anterior to the visual word form area. Reading ability did not correlate with neural activity during the phonological task. Accuracy on the semantic task correlated positively with neural activity in left anterior temporal lobe (a region linked to conceptual processing), while accuracy on the phonological task correlated positively with neural activity in left posterior inferior frontal gyrus (a region linked to syllabification processes during speech production). Finally, reading comprehension scores correlated positively with vocabulary and print exposure measures, but not with phonological awareness scores.We investigated word-level reading circuits in skilled deaf readers (N=14; mean reading age=19.5years) and less skilled deaf readers (N=14; mean reading age=12years) who were all highly proficient users of American Sign Language. During fMRI scanning, participants performed a semantic decision (concrete concept?), a phonological decision (two syllables?), and a false-font control task (string underlined?). No significant group differences were observed with the full participant set. However, an analysis with the 10 most and 10 least skilled readers revealed that for the semantic task (vs. control task), proficient deaf readers exhibited greater activation in left inferior frontal and middle temporal gyri than less proficient readers. No group differences were observed for the phonological task. Whole-brain correlation analyses (all participants) revealed that for the semantic task, reading ability correlated positively with neural activity in the right inferior frontal gyrus and in a region associated with the orthography-semantics interface, located anterior to the visual word form area. Reading ability did not correlate with neural activity during the phonological task. Accuracy on the semantic task correlated positively with neural activity in left anterior temporal lobe (a region linked to conceptual processing), while accuracy on the phonological task correlated positively with neural activity in left posterior inferior frontal gyrus (a region linked to syllabification processes during speech production). Finally, reading comprehension scores correlated positively with vocabulary and print exposure measures, but not with phonological awareness scores. •Skilled readers had greater activation in left IFG and MTG when reading for meaning.•Reading skill correlated with activity in left IT (orthographic-semantic interface).•Semantic task accuracy correlated with activity in left ATL (conceptual processing).•Phonological task accuracy correlated with activity in left IFG (articulatory coding).•Reading skill did not correlate with neural activity during the phonological task. We investigated word-level reading circuits in skilled deaf readers (N=14; mean reading age=19.5years) and less skilled deaf readers (N=14; mean reading age=12years) who were all highly proficient users of American Sign Language. During fMRI scanning, participants performed a semantic decision (concrete concept?), a phonological decision (two syllables?), and a false-font control task (string underlined?). No significant group differences were observed with the full participant set. However, an analysis with the 10 most and 10 least skilled readers revealed that for the semantic task (vs. control task), proficient deaf readers exhibited greater activation in left inferior frontal and middle temporal gyri than less proficient readers. No group differences were observed for the phonological task. Whole-brain correlation analyses (all participants) revealed that for the semantic task, reading ability correlated positively with neural activity in the right inferior frontal gyrus and in a region associated with the orthography-semantics interface, located anterior to the visual word form area. Reading ability did not correlate with neural activity during the phonological task. Accuracy on the semantic task correlated positively with neural activity in left anterior temporal lobe (a region linked to conceptual processing), while accuracy on the phonological task correlated positively with neural activity in left posterior inferior frontal gyrus (a region linked to syllabification processes during speech production). Finally, reading comprehension scores correlated positively with vocabulary and print exposure measures, but not with phonological awareness scores. We investigated word-level reading circuits in skilled deaf readers (N=14; mean reading age=19.5years) and less skilled deaf readers (N=14; mean reading age=12years) who were all highly proficient users of American Sign Language. During fMRI scanning, participants performed a semantic decision (concrete concept?), a phonological decision (two syllables?), and a false-font control task (string underlined?). No significant group differences were observed with the full participant set. However, an analysis with the 10 most and 10 least skilled readers revealed that for the semantic task (vs. control task), proficient deaf readers exhibited greater activation in left inferior frontal and middle temporal gyri than less proficient readers. No group differences were observed for the phonological task. Whole-brain correlation analyses (all participants) revealed that for the semantic task, reading ability correlated positively with neural activity in the right inferior frontal gyrus and in a region associated with the orthography-semantics interface, located anterior to the visual word form area. Reading ability did not correlate with neural activity during the phonological task. Accuracy on the semantic task correlated positively with neural activity in left anterior temporal lobe (a region linked to conceptual processing), while accuracy on the phonological task correlated positively with neural activity in left posterior inferior frontal gyrus (a region linked to syllabification processes during speech production). Finally, reading comprehension scores correlated positively with vocabulary and print exposure measures, but not with phonological awareness scores. |
Author | Emmorey, Karen Weisberg, Jill McCullough, Stephen |
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CitedBy_id | crossref_primary_10_1016_j_neuroimage_2017_11_040 crossref_primary_10_1093_deafed_enae008 crossref_primary_10_3758_s13428_021_01784_2 crossref_primary_10_3390_educsci9030180 crossref_primary_10_1016_j_neuropsychologia_2018_07_010 crossref_primary_10_1016_j_cognition_2021_104659 crossref_primary_10_1080_17470218_2017_1324498 crossref_primary_10_1016_j_neuropsychologia_2022_108420 crossref_primary_10_1016_j_bandl_2020_104903 crossref_primary_10_1002_hbm_25900 crossref_primary_10_1016_j_bandl_2024_105447 crossref_primary_10_1080_23273798_2019_1614201 crossref_primary_10_1093_deafed_enac037 crossref_primary_10_1111_lnc3_12407 crossref_primary_10_1016_j_neuropsychologia_2017_10_006 |
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Keywords | fMRI Phonology Word reading Semantics Deaf |
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Snippet | •Skilled readers had greater activation in left IFG and MTG when reading for meaning.•Reading skill correlated with activity in left IT (orthographic-semantic... We investigated word-level reading circuits in skilled deaf readers (N=14; mean reading age=19.5years) and less skilled deaf readers (N=14; mean reading... |
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SubjectTerms | Adult Brain - physiology Brain Mapping Comprehension - physiology Deaf Deafness - physiopathology Female fMRI Humans Magnetic Resonance Imaging Male Names Phonetics Phonology Prefrontal Cortex - physiology Reading Semantics Sign Language Vocabulary Word reading |
Title | The neural underpinnings of reading skill in deaf adults |
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