Altered cerebral neurovascular coupling in medication-overuse headache: A study combining multi-modal resting-state

Xin Li1,2, Mengqi Liu2, Wenping Fan2

  • 1The Second School of Clinical Medicine, Southern Medical University, Guangzhou, China.

Abstract

Insights

Medication-overuse headache (MOH) is linked to neurovascular coupling (NVC) dysfunction, particularly in specific brain regions. This study suggests NVC imaging may serve as a novel biomarker for headache research.

Area of Science:

  • Neuroimaging
  • Neurology
  • Brain Function

Background:

  • Medication-overuse headache (MOH) is associated with brain changes, but neurovascular dysfunction remains unclear.
  • Neurovascular coupling (NVC), reflecting the relationship between neuronal activity and cerebral blood flow, is a key area for investigation in MOH.

Purpose of the Study:

  • To investigate potential alterations in brain neurovascular coupling (NVC) in individuals with medication-overuse headache (MOH).
  • To explore the utility of resting-state functional MRI (rs-fMRI) and 3D pseudo-continuous arterial spin labeling (3D PCASL) in assessing NVC in MOH.

Main Methods:

  • Recruited 40 patients with MOH and 32 healthy controls (NCs).
  • Acquired rs-fMRI and 3D PCASL data on a 3.0 T MR scanner.
  • Analyzed NVC by correlating rs-fMRI metrics (ReHo, fALFF, DC) with cerebral blood flow (CBF) derived from 3D PCASL.

Main Results:

  • NVC primarily showed a negative correlation in both MOH patients and NCs.
  • No significant difference in average NVC was found across the entire gray matter.
  • Patients with MOH exhibited significantly decreased NVC in the left orbital superior frontal gyrus, bilateral gyrus rectus, and olfactory cortex compared to NCs.
  • NVC dysfunction in specific brain regions positively correlated with MOH disease duration and negatively with pain intensity (VAS score).

Conclusions:

  • Cerebral NVC dysfunction is present in patients with medication-overuse headache (MOH).
  • NVC assessment using advanced MRI techniques shows promise as a new imaging biomarker for headache research.

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