Age-related differences in resting state functional connectivity in pediatric migraine
Abstract Background Migraine affects roughly 10% of youth aged 5–15 years, however the underlying mechanisms of migraine in youth are poorly understood. Multiple structural and functional alterations have been shown in the brains of adult migraine sufferers. This study aims to investigate the effect...
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doaj-fa8732f031d748f788d4557429fad1dd2021-07-11T11:45:44ZengBMCThe Journal of Headache and Pain1129-23691129-23772021-07-0122111210.1186/s10194-021-01274-yAge-related differences in resting state functional connectivity in pediatric migraineTiffany Bell0Akashroop Khaira1Mehak Stokoe2Megan Webb3Melanie Noel4Farnaz Amoozegar5Ashley D. Harris6Department of Radiology, University of CalgaryDepartment of Radiology, University of CalgaryDepartment of Radiology, University of CalgaryDepartment of Radiology, University of CalgaryHotchkiss Brain Institute, University of CalgaryHotchkiss Brain Institute, University of CalgaryDepartment of Radiology, University of CalgaryAbstract Background Migraine affects roughly 10% of youth aged 5–15 years, however the underlying mechanisms of migraine in youth are poorly understood. Multiple structural and functional alterations have been shown in the brains of adult migraine sufferers. This study aims to investigate the effects of migraine on resting-state functional connectivity during the period of transition from childhood to adolescence, a critical period of brain development and the time when rates of pediatric chronic pain spikes. Methods Using independent component analysis, we compared resting state network spatial maps and power spectra between youth with migraine aged 7–15 and age-matched controls. Statistical comparisons were conducted using a MANCOVA analysis. Results We show (1) group by age interaction effects on connectivity in the visual and salience networks, group by sex interaction effects on connectivity in the default mode network and group by pubertal status interaction effects on connectivity in visual and frontal parietal networks, and (2) relationships between connectivity in the visual networks and the migraine cycle, and age by cycle interaction effects on connectivity in the visual, default mode and sensorimotor networks. Conclusions We demonstrate that brain alterations begin early in youth with migraine and are modulated by development. This highlights the need for further study into the neural mechanisms of migraine in youth specifically, to aid in the development of more effective treatments.https://doi.org/10.1186/s10194-021-01274-yMigrainepediatricresting-state functional connectivitypower spectrabrain developmentIndependent Component Analysis |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tiffany Bell Akashroop Khaira Mehak Stokoe Megan Webb Melanie Noel Farnaz Amoozegar Ashley D. Harris |
spellingShingle |
Tiffany Bell Akashroop Khaira Mehak Stokoe Megan Webb Melanie Noel Farnaz Amoozegar Ashley D. Harris Age-related differences in resting state functional connectivity in pediatric migraine The Journal of Headache and Pain Migraine pediatric resting-state functional connectivity power spectra brain development Independent Component Analysis |
author_facet |
Tiffany Bell Akashroop Khaira Mehak Stokoe Megan Webb Melanie Noel Farnaz Amoozegar Ashley D. Harris |
author_sort |
Tiffany Bell |
title |
Age-related differences in resting state functional connectivity in pediatric migraine |
title_short |
Age-related differences in resting state functional connectivity in pediatric migraine |
title_full |
Age-related differences in resting state functional connectivity in pediatric migraine |
title_fullStr |
Age-related differences in resting state functional connectivity in pediatric migraine |
title_full_unstemmed |
Age-related differences in resting state functional connectivity in pediatric migraine |
title_sort |
age-related differences in resting state functional connectivity in pediatric migraine |
publisher |
BMC |
series |
The Journal of Headache and Pain |
issn |
1129-2369 1129-2377 |
publishDate |
2021-07-01 |
description |
Abstract Background Migraine affects roughly 10% of youth aged 5–15 years, however the underlying mechanisms of migraine in youth are poorly understood. Multiple structural and functional alterations have been shown in the brains of adult migraine sufferers. This study aims to investigate the effects of migraine on resting-state functional connectivity during the period of transition from childhood to adolescence, a critical period of brain development and the time when rates of pediatric chronic pain spikes. Methods Using independent component analysis, we compared resting state network spatial maps and power spectra between youth with migraine aged 7–15 and age-matched controls. Statistical comparisons were conducted using a MANCOVA analysis. Results We show (1) group by age interaction effects on connectivity in the visual and salience networks, group by sex interaction effects on connectivity in the default mode network and group by pubertal status interaction effects on connectivity in visual and frontal parietal networks, and (2) relationships between connectivity in the visual networks and the migraine cycle, and age by cycle interaction effects on connectivity in the visual, default mode and sensorimotor networks. Conclusions We demonstrate that brain alterations begin early in youth with migraine and are modulated by development. This highlights the need for further study into the neural mechanisms of migraine in youth specifically, to aid in the development of more effective treatments. |
topic |
Migraine pediatric resting-state functional connectivity power spectra brain development Independent Component Analysis |
url |
https://doi.org/10.1186/s10194-021-01274-y |
work_keys_str_mv |
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