Dynamics and concordance alterations of regional brain function indices in vestibular migraine: a resting-state fMRI

Xing Xiong1,2, Lingling Dai1,2, Wen Chen1,2

  • 1Department of Radiology, The First Affiliated Hospital of Soochow University, Suzhou, 215006, Jiangsu, China.

PubMed
Abstract

Insights

This study reveals altered brain activity dynamics in vestibular migraine (VM) patients, particularly in motor and sensory areas. Vestibular migraine patients show altered brain activity dynamics, with potential biomarkers for vertigo burden.

Area of Science:

  • Neuroimaging
  • Functional MRI
  • Brain Activity Dynamics

Background:

  • Vestibular migraine (VM) is associated with altered intrinsic brain activity (iBA) and functional connectivity.
  • Previous studies focused on static iBA, leaving temporal variations unexplored.

Purpose of the Study:

  • To investigate the temporal dynamics and concordance of regional iBA indices in VM patients during the interictal period.
  • To identify potential neuroimaging biomarkers for VM.

Main Methods:

  • Resting-state fMRI was used to compare 57 VM patients with 88 healthy controls (HC).
  • Sliding time-window analysis examined the dynamics and concordance of amplitude of low-frequency fluctuations (ALFF) and regional homogeneity (ReHo).
  • Partial correlation analyses explored relationships between clinical data and fMRI indices.

Main Results:

  • VM patients exhibited increased ALFF and ReHo dynamics and ALFF-ReHo concordance in the motor cortex (paracentral lobule, supplementary motor area).
  • Decreased ReHo dynamics were observed in the temporal pole, and decreased ALFF dynamics in the cerebellum, angular gyrus, and middle occipital gyrus (MOG).
  • A positive correlation was found between ALFF dynamics in the left MOG and vertigo duration.

Conclusions:

  • Altered temporal dynamics and concordance of iBA indices in motor, cerebellar, occipital, and temporoparietal cortices suggest disrupted multisensory processing and vestibular control in VM.
  • ALFF dynamics in the left MOG may serve as a valuable biomarker for assessing vertigo burden in VM.