Tsai Chia-Lin, Chou Kun-Hsien, Lee Pei-Lin, Liang Chih-Sung, Kuo Chen-Yuan, Lin Guan-Yu, Lin Yu-Kai, Hsu Yi-Chih, Ko Chien-An, Yang Fu-Chi, Lin Ching-Po
Department of Neurology, Tri-Service General Hospital, National Defense Medical Center, Taipei City, Taiwan.
Brain Research Center, National Yang Ming Chiao Tung University, Taipei City, Taiwan.
Front Aging Neurosci. 2023 Jun 20;15:1191991. doi: 10.3389/fnagi.2023.1191991. eCollection 2023.
Subjective cognitive decline (SCD) and migraine are often comorbid. Hippocampal structural abnormalities have been observed in individuals with both SCD and migraine. Given the known structural and functional heterogeneity along the long axis (anterior to posterior) of the hippocampus, we aimed to identify altered patterns of structural covariance within hippocampal subdivisions associated with SCD and migraine comorbidities.
A seed-based structural covariance network analysis was applied to examine large-scale anatomical network changes of the anterior and posterior hippocampus in individuals with SCD, migraine and healthy controls. Conjunction analyses were used to identify shared network-level alterations in the hippocampal subdivisions in individuals with both SCD and migraine.
Altered structural covariance integrity of the anterior and posterior hippocampus was observed in the temporal, frontal, occipital, cingulate, precentral, and postcentral areas in individuals with SCD and migraine compared with healthy controls. Conjunction analysis revealed that, in both SCD and migraine, altered structural covariance integrity was shared between the anterior hippocampus and inferior temporal gyri and between the posterior hippocampus and precentral gyrus. Additionally, the structural covariance integrity of the posterior hippocampus-cerebellum axis was associated with the duration of SCD.
This study highlighted the specific role of hippocampal subdivisions and specific structural covariance alterations within these subdivisions in the pathophysiology of SCD and migraine. These network-level changes in structural covariance may serve as potential imaging signatures for individuals who have both SCD and migraine.
主观认知下降(SCD)和偏头痛常合并存在。在患有SCD和偏头痛的个体中均观察到海马结构异常。鉴于已知海马体沿长轴(从前到后)存在结构和功能异质性,我们旨在确定与SCD和偏头痛合并症相关的海马亚区内结构协方差的改变模式。
应用基于种子的结构协方差网络分析来检查SCD、偏头痛患者及健康对照者前海马和后海马的大规模解剖网络变化。采用联合分析来确定同时患有SCD和偏头痛的个体海马亚区中共享的网络水平改变。
与健康对照相比,SCD和偏头痛患者在颞叶、额叶、枕叶、扣带回、中央前回和中央后回区域观察到前海马和后海马的结构协方差完整性改变。联合分析显示,在SCD和偏头痛中,前海马和颞下回之间以及后海马和中央前回之间的结构协方差完整性均发生改变。此外,后海马-小脑轴的结构协方差完整性与SCD的病程相关。
本研究强调了海马亚区的特定作用以及这些亚区内特定的结构协方差改变在SCD和偏头痛病理生理学中的作用。这些结构协方差的网络水平变化可能作为同时患有SCD和偏头痛个体的潜在影像学特征。