Microstructural differences in migraine: A diffusion-tensor imaging study

部分各向异性 偏头痛 磁共振弥散成像 医学 光环 核磁共振 内科学 磁共振成像 放射科 物理
作者
Dóra Dobos,Gyöngyi Kökönyei,Gyula Gyebnár,Edina Szabó,Natália Kocsel,Attila Galambos,Kinga Gecse,Dániel Baksa,Lajos R. Kozák,Gabriella Juhász
出处
期刊:Cephalalgia [SAGE]
卷期号:43 (12) 被引量:3
标识
DOI:10.1177/03331024231216456
摘要

Background Diffusion-tensor imaging can be applied to describe the microstructural integrity of the whole brain. As findings about microstructural alterations in migraine are inconsistent, we aimed to replicate the most frequent results and assess a relationship between migraine parameters and changes in microstructure. Methods Diffusion-weighted MRI data of 37 migraine patients and 40 controls were collected. Two indices of diffusion of water molecules, fractional anisotropy and mean diffusivity were used in a voxel-wise analysis. Group comparisons were carried out in SPM12 using age and sex as covariates. Statistically significant results survived family-wise error correction (p FWE < 0.05). Migraine intensity, frequency, and duration were self-reported and correlated with mean fractional anisotropy and mean diffusivity values across clusters. Results Migraine patients showed significantly lower fractional anisotropy in occipital regions, and significantly higher fractional anisotropy in thirteen clusters across the brain. Mean diffusivity of migraine patients was significantly decreased in the cerebellum and pons, but it was not increased in any area. Correlation between migraine duration and fractional anisotropy was significantly positive in the frontal cortex and significantly negative in the superior parietal lobule. Conclusion We suggest that microstructural integrity of the migraine brain is impaired in visual areas and shows duration-related alterations in regions of the default mode network.
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