Attenuated alpha oscillation and hyperresponsiveness reveals impaired perceptual learning in migraineurs

Author:

Fong Chun YuenORCID,Law Wai Him Crystal,Fahrenfort Johannes Jacobus,Braithwaite Jason J.,Mazaheri Ali

Abstract

Abstract Background Anomalous phantom visual perceptions coupled to an aversion and discomfort to some visual patterns (especially grating in mid-range spatial frequency) have been associated with the hyperresponsiveness in migraine patients. Previous literature has found fluctuations of alpha oscillation (8-14 Hz) over the visual cortex to be associated with the gating of the visual stream. In the current study, we examined whether alpha activity was differentially modulated in migraineurs in anticipation of an upcoming stimulus as well as post-stimulus periods. Methods We used EEG to examine the brain activity in a group of 28 migraineurs (17 with aura /11 without) and 29 non-migraineurs and compared their alpha power in the pre/post-stimulus period relative to the onset of stripped gratings. Results Overall, we found that migraineurs had significantly less alpha power prior to the onset of the stimulus relative to controls. Moreover, migraineurs had significantly greater post-stimulus alpha suppression (i.e event-related desynchronization) induced by the grating in 3 cycles per degree at the 2nd half of the experiment. Conclusions These findings, taken together, provide strong support for the presence of the hyperresponsiveness of the visual cortex of migraine sufferers. We speculate that it could be the consequence of impaired perceptual learning driven by the dysfunction of GABAergic inhibitory mechanism.

Publisher

Springer Science and Business Media LLC

Subject

Anesthesiology and Pain Medicine,Neurology (clinical),General Medicine

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Excitation-Inhibition Imbalance in Migraine: From Neurotransmitters to Brain Oscillations;International Journal of Molecular Sciences;2023-06-13

2. Application of EEG in migraine;Frontiers in Human Neuroscience;2023-02-17

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