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How right hemisphere damage after stroke can impair speech comprehension

Acquired language disorders after stroke are strongly associated with left hemisphere damage. When language difficulties are observed in the context of right hemisphere strokes, patients are usually considered to have atypical functional anatomy. By systematically integrating behavioural and lesion...

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Autores principales: Gajardo-Vidal, Andrea, Lorca-Puls, Diego L, Hope, Thomas M H, Parker Jones, Oiwi, Seghier, Mohamed L, Prejawa, Susan, Crinion, Jennifer T, Leff, Alex P, Green, David W, Price, Cathy J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6262220/
https://www.ncbi.nlm.nih.gov/pubmed/30418586
http://dx.doi.org/10.1093/brain/awy270
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author Gajardo-Vidal, Andrea
Lorca-Puls, Diego L
Hope, Thomas M H
Parker Jones, Oiwi
Seghier, Mohamed L
Prejawa, Susan
Crinion, Jennifer T
Leff, Alex P
Green, David W
Price, Cathy J
author_facet Gajardo-Vidal, Andrea
Lorca-Puls, Diego L
Hope, Thomas M H
Parker Jones, Oiwi
Seghier, Mohamed L
Prejawa, Susan
Crinion, Jennifer T
Leff, Alex P
Green, David W
Price, Cathy J
author_sort Gajardo-Vidal, Andrea
collection PubMed
description Acquired language disorders after stroke are strongly associated with left hemisphere damage. When language difficulties are observed in the context of right hemisphere strokes, patients are usually considered to have atypical functional anatomy. By systematically integrating behavioural and lesion data from brain damaged patients with functional MRI data from neurologically normal participants, we investigated when and why right hemisphere strokes cause language disorders. Experiment 1 studied right-handed patients with unilateral strokes that damaged the right (n = 109) or left (n = 369) hemispheres. The most frequently impaired language task was: auditory sentence-to-picture matching after right hemisphere strokes; and spoken picture description after left hemisphere strokes. For those with auditory sentence-to-picture matching impairments after right hemisphere strokes, the majority (n = 9) had normal performance on tests of perceptual (visual or auditory) and linguistic (semantic, phonological or syntactic) processing. Experiment 2 found that these nine patients had significantly more damage to dorsal parts of the superior longitudinal fasciculus and the right inferior frontal sulcus compared to 75 other patients who also had right hemisphere strokes but were not impaired on the auditory sentence-to-picture matching task. Damage to these right hemisphere regions caused long-term speech comprehension difficulties in 67% of patients. Experiments 3 and 4 used functional MRI in two groups of 25 neurologically normal individuals to show that within the regions identified by Experiment 2, the right inferior frontal sulcus was normally activated by (i) auditory sentence-to-picture matching; and (ii) one-back matching when the demands on linguistic and non-linguistic working memory were high. Together, these experiments demonstrate that the right inferior frontal cortex contributes to linguistic and non-linguistic working memory capacity (executive function) that is needed for normal speech comprehension. Our results link previously unrelated literatures on the role of the right inferior frontal cortex in executive processing and the role of executive processing in sentence comprehension; which in turn helps to explain why right inferior frontal activity has previously been reported to increase during recovery of language function after left hemisphere stroke. The clinical relevance of our findings is that the detrimental effect of right hemisphere strokes on language is (i) much greater than expected; (ii) frequently observed after damage to the right inferior frontal sulcus; (iii) task dependent; (iv) different to the type of impairments observed after left hemisphere strokes; and (v) can result in long-lasting deficits that are (vi) not the consequence of atypical language lateralization.
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spelling pubmed-62622202018-12-04 How right hemisphere damage after stroke can impair speech comprehension Gajardo-Vidal, Andrea Lorca-Puls, Diego L Hope, Thomas M H Parker Jones, Oiwi Seghier, Mohamed L Prejawa, Susan Crinion, Jennifer T Leff, Alex P Green, David W Price, Cathy J Brain Original Articles Acquired language disorders after stroke are strongly associated with left hemisphere damage. When language difficulties are observed in the context of right hemisphere strokes, patients are usually considered to have atypical functional anatomy. By systematically integrating behavioural and lesion data from brain damaged patients with functional MRI data from neurologically normal participants, we investigated when and why right hemisphere strokes cause language disorders. Experiment 1 studied right-handed patients with unilateral strokes that damaged the right (n = 109) or left (n = 369) hemispheres. The most frequently impaired language task was: auditory sentence-to-picture matching after right hemisphere strokes; and spoken picture description after left hemisphere strokes. For those with auditory sentence-to-picture matching impairments after right hemisphere strokes, the majority (n = 9) had normal performance on tests of perceptual (visual or auditory) and linguistic (semantic, phonological or syntactic) processing. Experiment 2 found that these nine patients had significantly more damage to dorsal parts of the superior longitudinal fasciculus and the right inferior frontal sulcus compared to 75 other patients who also had right hemisphere strokes but were not impaired on the auditory sentence-to-picture matching task. Damage to these right hemisphere regions caused long-term speech comprehension difficulties in 67% of patients. Experiments 3 and 4 used functional MRI in two groups of 25 neurologically normal individuals to show that within the regions identified by Experiment 2, the right inferior frontal sulcus was normally activated by (i) auditory sentence-to-picture matching; and (ii) one-back matching when the demands on linguistic and non-linguistic working memory were high. Together, these experiments demonstrate that the right inferior frontal cortex contributes to linguistic and non-linguistic working memory capacity (executive function) that is needed for normal speech comprehension. Our results link previously unrelated literatures on the role of the right inferior frontal cortex in executive processing and the role of executive processing in sentence comprehension; which in turn helps to explain why right inferior frontal activity has previously been reported to increase during recovery of language function after left hemisphere stroke. The clinical relevance of our findings is that the detrimental effect of right hemisphere strokes on language is (i) much greater than expected; (ii) frequently observed after damage to the right inferior frontal sulcus; (iii) task dependent; (iv) different to the type of impairments observed after left hemisphere strokes; and (v) can result in long-lasting deficits that are (vi) not the consequence of atypical language lateralization. Oxford University Press 2018-12 2018-11-09 /pmc/articles/PMC6262220/ /pubmed/30418586 http://dx.doi.org/10.1093/brain/awy270 Text en © The Author(s) (2018). Published by Oxford University Press on behalf of the Guarantors of Brain. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Gajardo-Vidal, Andrea
Lorca-Puls, Diego L
Hope, Thomas M H
Parker Jones, Oiwi
Seghier, Mohamed L
Prejawa, Susan
Crinion, Jennifer T
Leff, Alex P
Green, David W
Price, Cathy J
How right hemisphere damage after stroke can impair speech comprehension
title How right hemisphere damage after stroke can impair speech comprehension
title_full How right hemisphere damage after stroke can impair speech comprehension
title_fullStr How right hemisphere damage after stroke can impair speech comprehension
title_full_unstemmed How right hemisphere damage after stroke can impair speech comprehension
title_short How right hemisphere damage after stroke can impair speech comprehension
title_sort how right hemisphere damage after stroke can impair speech comprehension
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6262220/
https://www.ncbi.nlm.nih.gov/pubmed/30418586
http://dx.doi.org/10.1093/brain/awy270
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