晚年重度抑郁障碍或轻度认知障碍患者的脑室有效连接。

0 PSYCHIATRY
Pablo Maturana-Quijada, Pamela Chavarría-Elizondo, Inés Del Cerro, Ignacio Martínez-Zalacaín, Asier Juaneda-Seguí, Andrés Guinea-Izquierdo, Jordi Gascón-Bayarri, Ramón Reñé, Mikel Urretavizcaya, José M Menchón, Isidre Ferrer, Virginia Soria, Carles Soriano-Mas
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引用次数: 0

摘要

简介我们比较了晚期重度抑郁症(MDD)患者、失忆性轻度认知功能障碍(aMCI)患者和健康对照组(HCs)在静息状态下大脑小脑位置(LC)的有效连接性:对参与者进行了两个时间点的评估,时间间隔为两年。他们接受了静息态功能磁共振成像和高分辨率解剖学采集以及临床评估。通过动态因果建模分析功能成像数据,并使用参数经验贝叶斯模型绘制 7 个不同节点之间的有效连接图:结果显示,在两年的随访期间,有4个节点来自脑室,3个区域显示灰质减少:对结构数据的纵向分析发现了患者(MDD + aMCI vs. HCs)灰质体积随时间减少较多的三个集群:右侧楔前叶、视觉联想皮层和海马旁皮层。aMCI患者从LC左侧喙部到尾部的有效连接减少,而从LC左侧喙部到海马旁皮层的连接增加。在 MDD 患者中,LC 尾部种子间的有效连接性下降,而随着时间的推移,LC 左侧喙部到左侧尾部种子间的连接性增加。与皮层区域的连接性改变涉及跨大脑半球的增加和同大脑半球的减少:我们的发现有助于深入了解晚期 MDD 和 aMCI 患者有效连接性的动态变化,同时也揭示了神经退行性疾病发病的潜在机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effective connectivity of the locus coeruleus in patients with late-life Major Depressive Disorder or mild cognitive impairment.

Introduction: We compared effective connectivity from the locus coeruleus (LC) during the resting-state in patients with late-life Major Depressive Disorder (MDD), individuals with amnestic Mild Cognitive Impairment (aMCI), and Healthy Controls (HCs).

Participants: 23 patients with late-life MDD, 22 patients with aMCI, and 28 HCs.

Material and methods: Participants were assessed in two time-points, 2 years apart. They underwent a resting-state functional magnetic resonance imaging and a high-resolution anatomical acquisition, as well as clinical assessments. Functional imaging data were analyzed with dynamic causal modeling, and parametric empirical Bayes model was used to map effective connectivity between 7 distinct nodes: 4 from the locus coeruleus and 3 regions displaying gray matter decreases during the two-year follow-up period.

Results: Longitudinal analysis of structural data identified three clusters of larger over-time gray matter volume reduction in patients (MDD+aMCI vs. HCs): the right precuneus, and the visual association and parahippocampal cortices. aMCI patients showed decreased effective connectivity from the left rostral to caudal portions of the LC, while connectivity from the left rostral LC to the parahippocampal cortex increased. In MDD, there was a decline in effective connectivity across LC caudal seeds, and increased connectivity from the left rostral to the left caudal LC seed over time. Connectivity alterations with cortical regions involved cross-hemisphere increases and same-hemisphere decreases.

Conclusions: Our discoveries provide insight into the dynamic changes in effective connectivity in individuals with late-life MDD and aMCI, also shedding light on the mechanisms potentially contributing to the onset of neurodegenerative disorders.

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