Cargando…

Dyspnea-Related Cues Engage the Prefrontal Cortex: Evidence From Functional Brain Imaging in COPD

BACKGROUND: Dyspnea is the major source of disability in COPD. In COPD, environmental cues (eg, the prospect of having to climb stairs) become associated with dyspnea and may trigger dyspnea even before physical activity commences. We hypothesized that brain activation relating to such cues would be...

Descripción completa

Detalles Bibliográficos
Autores principales: Herigstad, Mari, Hayen, Anja, Evans, Eleanor, Hardinge, Frances M., Davies, Robert J., Wiech, Katja, Pattinson, Kyle T. S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American College of Chest Physicians 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4594628/
https://www.ncbi.nlm.nih.gov/pubmed/26134891
http://dx.doi.org/10.1378/chest.15-0416
_version_ 1782393472670498816
author Herigstad, Mari
Hayen, Anja
Evans, Eleanor
Hardinge, Frances M.
Davies, Robert J.
Wiech, Katja
Pattinson, Kyle T. S.
author_facet Herigstad, Mari
Hayen, Anja
Evans, Eleanor
Hardinge, Frances M.
Davies, Robert J.
Wiech, Katja
Pattinson, Kyle T. S.
author_sort Herigstad, Mari
collection PubMed
description BACKGROUND: Dyspnea is the major source of disability in COPD. In COPD, environmental cues (eg, the prospect of having to climb stairs) become associated with dyspnea and may trigger dyspnea even before physical activity commences. We hypothesized that brain activation relating to such cues would be different between patients with COPD and healthy control subjects, reflecting greater engagement of emotional mechanisms in patients. METHODS: Using functional MRI (FMRI), we investigated brain responses to dyspnea-related word cues in 41 patients with COPD and 40 healthy age-matched control subjects. We combined these findings with scores on self-report questionnaires, thus linking the FMRI task with clinically relevant measures. This approach was adapted from studies in pain that enabled identification of brain networks responsible for pain processing despite absence of a physical challenge. RESULTS: Patients with COPD demonstrated activation in the medial prefrontal cortex and anterior cingulate cortex, which correlated with the visual analog scale (VAS) response to word cues. This activity independently correlated with patient responses on questionnaires of depression, fatigue, and dyspnea vigilance. Activation in the anterior insula, lateral prefrontal cortex, and precuneus correlated with the VAS dyspnea scale but not with the questionnaires. CONCLUSIONS: The findings suggest that engagement of the emotional circuitry of the brain is important for interpretation of dyspnea-related cues in COPD and is influenced by depression, fatigue, and vigilance. A heightened response to salient cues is associated with increased symptom perception in chronic pain and asthma, and the findings suggest that such mechanisms may be relevant in COPD.
format Online
Article
Text
id pubmed-4594628
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher American College of Chest Physicians
record_format MEDLINE/PubMed
spelling pubmed-45946282015-11-16 Dyspnea-Related Cues Engage the Prefrontal Cortex: Evidence From Functional Brain Imaging in COPD Herigstad, Mari Hayen, Anja Evans, Eleanor Hardinge, Frances M. Davies, Robert J. Wiech, Katja Pattinson, Kyle T. S. Chest Original Research BACKGROUND: Dyspnea is the major source of disability in COPD. In COPD, environmental cues (eg, the prospect of having to climb stairs) become associated with dyspnea and may trigger dyspnea even before physical activity commences. We hypothesized that brain activation relating to such cues would be different between patients with COPD and healthy control subjects, reflecting greater engagement of emotional mechanisms in patients. METHODS: Using functional MRI (FMRI), we investigated brain responses to dyspnea-related word cues in 41 patients with COPD and 40 healthy age-matched control subjects. We combined these findings with scores on self-report questionnaires, thus linking the FMRI task with clinically relevant measures. This approach was adapted from studies in pain that enabled identification of brain networks responsible for pain processing despite absence of a physical challenge. RESULTS: Patients with COPD demonstrated activation in the medial prefrontal cortex and anterior cingulate cortex, which correlated with the visual analog scale (VAS) response to word cues. This activity independently correlated with patient responses on questionnaires of depression, fatigue, and dyspnea vigilance. Activation in the anterior insula, lateral prefrontal cortex, and precuneus correlated with the VAS dyspnea scale but not with the questionnaires. CONCLUSIONS: The findings suggest that engagement of the emotional circuitry of the brain is important for interpretation of dyspnea-related cues in COPD and is influenced by depression, fatigue, and vigilance. A heightened response to salient cues is associated with increased symptom perception in chronic pain and asthma, and the findings suggest that such mechanisms may be relevant in COPD. American College of Chest Physicians 2015-10 2015-07-02 /pmc/articles/PMC4594628/ /pubmed/26134891 http://dx.doi.org/10.1378/chest.15-0416 Text en © 2015 AMERICAN COLLEGE OF CHEST PHYSICIANS This is a Research Councils UK-compliant open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Original Research
Herigstad, Mari
Hayen, Anja
Evans, Eleanor
Hardinge, Frances M.
Davies, Robert J.
Wiech, Katja
Pattinson, Kyle T. S.
Dyspnea-Related Cues Engage the Prefrontal Cortex: Evidence From Functional Brain Imaging in COPD
title Dyspnea-Related Cues Engage the Prefrontal Cortex: Evidence From Functional Brain Imaging in COPD
title_full Dyspnea-Related Cues Engage the Prefrontal Cortex: Evidence From Functional Brain Imaging in COPD
title_fullStr Dyspnea-Related Cues Engage the Prefrontal Cortex: Evidence From Functional Brain Imaging in COPD
title_full_unstemmed Dyspnea-Related Cues Engage the Prefrontal Cortex: Evidence From Functional Brain Imaging in COPD
title_short Dyspnea-Related Cues Engage the Prefrontal Cortex: Evidence From Functional Brain Imaging in COPD
title_sort dyspnea-related cues engage the prefrontal cortex: evidence from functional brain imaging in copd
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4594628/
https://www.ncbi.nlm.nih.gov/pubmed/26134891
http://dx.doi.org/10.1378/chest.15-0416
work_keys_str_mv AT herigstadmari dyspnearelatedcuesengagetheprefrontalcortexevidencefromfunctionalbrainimagingincopd
AT hayenanja dyspnearelatedcuesengagetheprefrontalcortexevidencefromfunctionalbrainimagingincopd
AT evanseleanor dyspnearelatedcuesengagetheprefrontalcortexevidencefromfunctionalbrainimagingincopd
AT hardingefrancesm dyspnearelatedcuesengagetheprefrontalcortexevidencefromfunctionalbrainimagingincopd
AT daviesrobertj dyspnearelatedcuesengagetheprefrontalcortexevidencefromfunctionalbrainimagingincopd
AT wiechkatja dyspnearelatedcuesengagetheprefrontalcortexevidencefromfunctionalbrainimagingincopd
AT pattinsonkylets dyspnearelatedcuesengagetheprefrontalcortexevidencefromfunctionalbrainimagingincopd