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3D-Neuronavigation In Vivo Through a Patient's Brain During a Spontaneous Migraine Headache
Published on: June 2, 2014
Alterations of White Matter Microstructure in Migraine Patients Vary in the Peri-ictal Phases
Ana R Fouto1, Rita G Nunes2, Irene Guadilla2,3
1Institute for Systems and Robotics and Department of Bioengineering, Instituto Superior Técnico, Universidade de Lisboa, Lisbon 1049-001, Portugal anafouto@tecnico.ulisboa.pt.
Abstract:
Alterations in white matter (WM) microstructure are commonly found in migraine patients. Here, we employ a longitudinal study of episodic migraine without aura using diffusion magnetic resonance imaging (dMRI) to investigate whether such WM microstructure alterations vary through the different phases of the pain cycle. Fourteen patients with episodic migraine without aura related with menstruation were scanned through four phases of their (spontaneous) migraine cycle (interictal, preictal, ictal, and postictal). Fifteen healthy controls were studied in the corresponding phases of the menstrual cycle. Multishell dMRI data were acquired and preprocessed to obtain maps of diffusion parameters reflecting WM microstructure. After a whole-brain analysis comparing patients with controls, a region-of-interest analysis was performed to determine whether the patients' microstructural changes varied across the migraine cycle in specific WM tracts. Compared with controls, patients showed reduced axial diffusivity (AD) in several WM tracts across the whole brain in the interictal phase and increased fractional anisotropy (FA) in commissural fibers in the ictal phase. Interestingly, AD returned to baseline levels during peri-ictal phases in specific projection and association fibers. In contrast, FA values decreased in the ictal phase away from normal values in a few commissural and projection tracts. Widespread WM fiber tracts suffer structural variations across the migraine cycle, suggesting microstructural changes potentially associated with limbic and salience functional networks and highlighting the importance of the cycle phase in imaging studies of migraine.
Insights
Migraine patients show changes in white matter (WM) microstructure that vary across the pain cycle. These microstructural variations in WM tracts highlight the importance of considering the migraine cycle phase in research.
Area of Science:
- Neuroimaging
- Neurology
- Neuroscience
Background:
- White matter (WM) microstructure alterations are frequently observed in migraine patients.
- Previous studies often analyze migraine patients without considering the pain cycle phase.
Purpose of the Study:
- To investigate longitudinal changes in WM microstructure across the migraine pain cycle in episodic migraine without aura.
- To determine if WM alterations vary significantly between different phases of the migraine cycle.
Main Methods:
- Longitudinal diffusion magnetic resonance imaging (dMRI) study.
- Fourteen episodic migraine without aura patients and fifteen healthy controls scanned across four cycle phases (interictal, preictal, ictal, postictal).
- Multishell dMRI data analyzed for diffusion parameters reflecting WM microstructure.
Main Results:
- Migraine patients exhibited reduced axial diffusivity (AD) in interictal WM tracts compared to controls.
- Increased fractional anisotropy (FA) was observed in commissural fibers during the ictal phase.
- AD normalized in peri-ictal phases, while FA decreased in specific tracts during the ictal phase.
Conclusions:
- Widespread WM fiber tracts undergo structural variations throughout the migraine cycle.
- These microstructural changes may link to limbic and salience network functions.
- The phase of the migraine cycle is a critical factor in neuroimaging studies of migraine.

