Department of Anatomy and Histology, University of Sydney, Sydney, NSW 2006, Australia.
Department of Anatomy and Histology, University of Sydney, Sydney, NSW 2006, Australia.
Neuroimage Clin. 2021;30:102630. doi: 10.1016/j.nicl.2021.102630. Epub 2021 Mar 17.
Although the mechanisms responsible for migraine initiation remain unknown, recent evidence shows that brain function is different immediately preceding a migraine. This is consistent with the idea that altered brain function, particularly in brainstem sites, may either trigger a migraine or facilitate a peripheral trigger that activates the brain, resulting in pain. The aim of this longitudinal study is therefore to expand on the above findings, and to determine if brainstem function oscillates over a migraine cycle in individual subjects. We performed resting state functional magnetic resonance imaging in three migraineurs and five controls each weekday for four weeks. We found that although resting activity variability was similar in controls and interictal migraineurs, brainstem variability increased dramatically during the 24-hour period preceding a migraine. This increase occurred in brainstem areas in which orofacial afferents terminate: the spinal trigeminal nucleus and dorsal pons. These increases were characterized by increased power at infra-slow frequencies, principally between 0.03 and 0.06 Hz. Furthermore, these power increases were associated with increased regional homogeneity, a measure of local signal coherence. The results show within-individual alterations in brain activity immediately preceding migraine onset and support the hypothesis that altered regional brainstem function before a migraine attack is involved in underlying migraine neurobiology.
尽管导致偏头痛发作的机制尚不清楚,但最近的证据表明,偏头痛发作前大脑功能会发生变化。这与大脑功能改变,特别是脑干部位的功能改变,可能引发偏头痛或促进外周触发因素激活大脑,导致疼痛的观点是一致的。因此,这项纵向研究旨在进一步研究上述发现,并确定个体偏头痛周期中脑干功能是否会出现波动。我们对三名偏头痛患者和五名对照者进行了为期四周的每个工作日的静息态功能磁共振成像。我们发现,尽管对照组和间歇期偏头痛患者的静息活动变异性相似,但在偏头痛发作前 24 小时内,脑干变异性显著增加。这种增加发生在面部传入神经终止的脑干区域:脊髓三叉神经核和背桥。这些增加的特点是亚慢频率(主要在 0.03 至 0.06 Hz 之间)的功率增加。此外,这些功率增加与局部信号相干性的度量——局部一致性的增加有关。这些结果显示了偏头痛发作前个体大脑活动的变化,并支持了这样一种假设,即在偏头痛发作前,大脑区域的功能改变与偏头痛的潜在神经生物学有关。