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Structural and Functional Reorganization of the Brain in Migraine Without Aura

机译:无先兆偏头痛的大脑的结构和功能重组

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摘要

It remains unknown whether migraine headache has a progressive component in its pathophysiology. Quantitative MRI may provide valuable insight into abnormal changes in the migraine interictum and assist in identifying disrupted brain networks. We carried out a data-driven study of structural integrity and functional connectivity of the resting brain in migraine without aura. MRI scanning was performed in 36 patients suffering from episodic migraine without aura and 33 age-matched healthy subjects. Voxel-wise analysis of regional brain volume was performed by registration of the T1-weighted MRI scans into a common study brain template using the tensor-based morphometry (TBM) method. Changes in functional synchronicity of the brain networks were assessed using probabilistic independent component analysis (ICA). TBM revealed that migraine is associated with reduced volume of the medial prefrontal cortex (mPFC). Among 375 functional brain networks, resting-state connectivity was decreased between two components spanning the visual cortex, posterior insula, and parietal somatosensory cortex. Our study reveals structural and functional alterations of the brain in the migraine interictum that may stem from underlying disease risk factors and the “silent” aura phenomenon. Longitudinal studies will be needed to investigate whether interictal brain changes are progressive and associated with clinical disease trajectories.
机译:偏头痛在其病理生理学中是否具有进行性成分尚不清楚。定量MRI可以为偏头痛间质中的异常变化提供有价值的见解,并有助于识别大脑网络的破坏。我们对无先兆偏头痛的静息大脑的结构完整性和功能连接性进行了数据驱动的研究。 MRI扫描在36例无先兆性发作性偏头痛的患者和33例年龄相匹配的健康受试者中进行。通过使用基于张量的形态计量学(TBM)方法将T1加权MRI扫描配准到普通研究的大脑模板中,对区域大脑体积进行体素分析。使用概率独立成分分析(ICA)评估大脑网络功能同步性的变化。 TBM显示偏头痛与内侧前额叶皮层(mPFC)体积减少有关。在375个功能性大脑网络中,跨越视觉皮层,后岛和顶叶体感皮层的两个组件之间的静止状态连接性降低。我们的研究表明,偏头痛间质中大脑的结构和功能改变可能源于潜在的疾病风险因素和“沉默”先兆现象。纵向研究将需要调查小脑间部的变化是否是渐进性的并且与临床疾病的轨迹有关。

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