Bassez Iege, Van de Steen Frederik, Ricci Katia, Vecchio Eleonora, Gentile Eleonora, Marinazzo Daniele, de Tommaso Marina
Department of Data Analysis, Ghent University, Henri Dunantlaan 1, 9000 Gent, Belgium.
Applied Neurophysiology and Pain Unit, Department of Basic Medical Sciences, Neurosciences and Sensory Organs, Bari Aldo Moro University, Piazza Giulio Cesare 11, 70123 Bari, Italy.
Brain Sci. 2020 Oct 7;10(10):712. doi: 10.3390/brainsci10100712.
A consistent finding in migraine is reduced cortical habituation to repetitive sensory stimuli. This study investigated brain dynamics underlying the atypical habituation to painful stimuli in interictal migraine. We investigated modulations in effective connectivity between the sources of laser evoked potentials (LEPs) from a first to final block of trigeminal LEPs using dynamic causal modelling (DCM) in a group of 23 migraine patients and 20 controls. Additionally, we looked whether the strength of dynamical connections in the migrainous brain is initially different. The examined network consisted of the secondary somatosensory areas (lS2, rS2), insulae (lIns, rIns), anterior cingulate cortex (ACC), contralateral primary somatosensory cortex (lS1), and a hidden source assumed to represent the thalamus. Results suggest that migraine patients show initially heightened communication between lS1 and the thalamus, in both directions. After repetitive stimulations, connection strengths from the thalamus to all somatosensory areas habituated in controls whereas this was not apparent in migraine. Together with further abnormalities in initial connectivity strengths and modulations between the thalamus and the insulae, these results are in line with altered thalamo-cortical network dynamics in migraine. Group differences in connectivity from and to the insulae including interhemispheric connections, suggests an important role of the insulae.
偏头痛的一个一致发现是皮质对重复感觉刺激的习惯化减弱。本研究调查了发作间期偏头痛患者对疼痛刺激的非典型习惯化背后的脑动力学。我们使用动态因果模型(DCM),在一组23名偏头痛患者和20名对照中,研究了从三叉神经激光诱发电位(LEP)的第一个到最后一个块中,激光诱发电位(LEP)源之间有效连接性的调制。此外,我们研究了偏头痛大脑中动态连接的强度最初是否不同。所检查的网络由次级体感区(左S2、右S2)、脑岛(左脑岛、右脑岛)、前扣带回皮质(ACC)、对侧初级体感皮质(左S1)以及一个假定代表丘脑的隐藏源组成。结果表明,偏头痛患者最初在左S1和丘脑之间双向表现出增强的交流。在重复刺激后,对照组中从丘脑到所有体感区的连接强度出现习惯化,而在偏头痛患者中则不明显。连同丘脑与脑岛之间初始连接强度和调制的进一步异常,这些结果与偏头痛中丘脑 - 皮质网络动力学改变一致。包括半球间连接在内的与脑岛的连接性组间差异表明脑岛起着重要作用。