4.5 Article

Structural changes of cerebellum and brainstem in migraine without aura

期刊

JOURNAL OF HEADACHE AND PAIN
卷 20, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s10194-019-1045-5

关键词

Migraine; cerebellum; brainstem; diffusion tensor images; voxel-based morphometry

资金

  1. National Natural Science Foundation of China [81571658, 81271302]
  2. research innovation project of the Shanghai Municipal Science and Technology Commission [14JC1404300]
  3. Prevention and Control of Chronic Diseases Project of Shanghai Hospital Development Center [SHDC12015310]
  4. project of the SHSMU-ION Research Center for Brain Disorders [2015NKX006]
  5. project of the Shanghai Municipal Education Commission-Gaofeng Clinical Medicine Grant Support [20161422]
  6. Clinical Research Project of Shanghai Jiao Tong University School of Medicine [DLY201614]
  7. Biomedicine Key program of the Shanghai Municipal Science and Technology Commission [16411953100]

向作者/读者索取更多资源

Background Increasing evidence has suggested that the cerebellum is associated with pain and migraine. In addition, the descending pain system of the brainstem is the major site of trigeminal pain processing and modulation and has been discussed as a main player in the pathophysiology of migraine. Cerebellar and brainstem structural changes associated with migraineurs remain to be further investigated. Methods Voxel-based morphometry (VBM) (50 controls, 50 migraineurs without aura (MWoAs)) and diffusion tensor imaging (DTI) (46 controls, 46 MWoAs) were used to assess cerebellum and brainstem anatomical alterations associated with MWoAs. We utilized a spatially unbiased infratentorial template toolbox (SUIT) to perform cerebellum and brainstem optimized VBM and DTI analysis. We extracted the average diffusion values from a probabilistic cerebellar white matter atlas to investigate whether MWoAs exhibited microstructure alterations in the cerebellar peduncle tracts. Results MWoAs showed decreased fractional anisotropy (FA) in the vermis VI extending to the bilateral lobules V and VI of the cerebellum. We also found higher axial diffusivity (AD), mean diffusivity (MD), and radial diffusivity (RD) in the right inferior cerebellum peduncle tract in MWoAs. MWoAs exhibited both reduced gray matter volume and increased AD, MD and RD in the spinal trigeminal nucleus (SpV). Conclusion MWoAs exhibited microstructural changes in the cerebellum and the local brainstem. These structural differences might contribute to dysfunction of the transmission and modulation of noxious information, trigeminal nociception, and conduction and integration of multimodal information in MWoAs. These findings further suggest involvement of the cerebellum and the brainstem in the pathology of migraine without aura.

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