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无先兆偏头痛患者脑岛后部和小脑的功能改变:一项静息态MRI研究

Functional Alterations in the Posterior Insula and Cerebellum in Migraine Without Aura: A Resting-State MRI Study.

作者信息

Ke Jun, Yu Yang, Zhang Xiaodong, Su Yunyan, Wang Ximing, Hu Su, Dai Hui, Hu Chunhong, Zhao Hongru, Dai Lingling

机构信息

Department of Radiology, the First Affiliated Hospital of Soochow University, Soochow, China.

Institute of Medical Imaging, Soochow University, Soochow, China.

出版信息

Front Behav Neurosci. 2020 Oct 6;14:567588. doi: 10.3389/fnbeh.2020.567588. eCollection 2020.

Abstract

: Hypothesis-driven functional connectivity (FC) analyses have revealed abnormal functional interaction of regions or networks involved in pain processing in episodic migraine patients. We aimed to investigate the resting-state FC patterns in episodic migraine by combining data-driven voxel-wise degree centrality (DC) calculation and seed-based FC analysis. : Thirty-nine patients suffering from episodic migraine without aura and 35 healthy controls underwent clinical assessment and functional MRI. DC was analyzed voxel-wise and compared between groups, and FC of regions with DC differences were further examined using a seed-based approach. : Compared with the control group, the migraine group showed increased and decreased DC in the right posterior insula and left crus I, respectively. Seed-based FC analyses revealed that migraine patients demonstrated increased right posterior insula connections with the postcentral gyrus, supplementary motor area/paracentral lobule, fusiform gyrus and temporal pole. The left crus I showed decreased FC with regions of the default mode network (DMN), including the medial prefrontal cortex (mPFC), angular gyrus, medial and lateral temporal cortex in patients with migraine. Furthermore, pain intensity positively correlated with DC in the right amygdala/parahippocampal gyrus, and migraine frequency negatively correlated with FC between the left crus I and mPFC. : Patients with episodic migraine without aura have increased FC with the right posterior insula and decreased FC within the DMN, which may underlie disturbed sensory integration and cognitive processing of pain. The left crus I-mPFC connectivity may be a useful biomarker for assessing migraine frequency.

摘要

假设驱动的功能连接(FC)分析揭示了发作性偏头痛患者疼痛处理相关区域或网络的异常功能相互作用。我们旨在通过结合数据驱动的体素级度中心性(DC)计算和基于种子点的FC分析,研究发作性偏头痛的静息态FC模式。

39例无先兆发作性偏头痛患者和35名健康对照者接受了临床评估和功能磁共振成像检查。对DC进行体素级分析并在组间进行比较,对DC有差异的区域进一步采用基于种子点的方法检查FC。

与对照组相比,偏头痛组右侧后岛叶DC增加,左侧脚I DC减少。基于种子点的FC分析显示,偏头痛患者右侧后岛叶与中央后回、辅助运动区/中央旁小叶、梭状回和颞极的连接增加。偏头痛患者左侧脚I与默认模式网络(DMN)区域的FC降低,DMN区域包括内侧前额叶皮质(mPFC)、角回、颞叶内侧和外侧皮质。此外,疼痛强度与右侧杏仁核/海马旁回的DC呈正相关,偏头痛发作频率与左侧脚I和mPFC之间的FC呈负相关。

无先兆发作性偏头痛患者右侧后岛叶的FC增加,DMN内的FC降低,这可能是疼痛感觉整合和认知处理紊乱的基础。左侧脚I-mPFC连接性可能是评估偏头痛发作频率的有用生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/145d/7573354/b5179650ba9f/fnbeh-14-567588-g0001.jpg

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