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急性卒中皮质连接变化的小世界特征

Small-World Characteristics of Cortical Connectivity Changes in Acute Stroke.

作者信息

Caliandro Pietro, Vecchio Fabrizio, Miraglia Francesca, Reale Giuseppe, Della Marca Giacomo, La Torre Giuseppe, Lacidogna Giordano, Iacovelli Chiara, Padua Luca, Bramanti Placido, Rossini Paolo Maria

机构信息

Catholic University, Rome, Italy

Fondazione Don Carlo Gnocchi Onlus, Milan, Italy.

出版信息

Neurorehabil Neural Repair. 2017 Jan;31(1):81-94. doi: 10.1177/1545968316662525. Epub 2016 Aug 10.

Abstract

Background After cerebral ischemia, disruption and subsequent reorganization of functional connections occur both locally and remote to the lesion. Recently, complexity of brain connectivity has been described using graph theory, a mathematical approach that depicts important properties of complex systems by quantifying topologies of network representations. Functional and dynamic changes of brain connectivity can be reliably analyzed via electroencephalography (EEG) recordings even when they are not yet reflected in structural changes of connections. Objective We tested whether and how ischemic stroke in the acute stage may determine changes in small-worldness of cortical networks as measured by cortical sources of EEG. Methods Graph characteristics of EEG of 30 consecutive stroke patients in acute stage (no more than 5 days after the event) were examined. Connectivity analysis was performed using eLORETA in both hemispheres. Results Network rearrangements were mainly detected in delta, theta, and alpha bands when patients were compared with healthy subjects. In delta and alpha bands similar findings were observed in both hemispheres regardless of the side of ischemic lesion: bilaterally decreased small-worldness in the delta band and bilaterally increased small-worldness in the alpha2 band. In the theta band, bilaterally decreased small-worldness was observed only in patients with stroke in the left hemisphere. Conclusions After an acute stroke, brain cortex rearranges its network connections diffusely, in a frequency-dependent modality probably in order to face the new anatomical and functional frame.

摘要

背景 脑缺血后,病变局部及远处的功能连接均会发生破坏及随后的重组。最近,已使用图论来描述脑连接的复杂性,图论是一种数学方法,通过量化网络表示的拓扑结构来描绘复杂系统的重要属性。即使脑连接的功能和动态变化尚未在连接的结构变化中得到体现,也可通过脑电图(EEG)记录对其进行可靠分析。目的 我们测试了急性缺血性卒中是否以及如何决定由EEG皮质源测量的皮质网络小世界特性的变化。方法 对30例急性期(发病后不超过5天)连续的卒中患者的EEG图特征进行了检查。使用eLORETA对双侧进行连接性分析。结果 与健康受试者相比,患者在δ、θ和α频段主要检测到网络重排。在δ和α频段,无论缺血性病变位于哪一侧,双侧均观察到类似结果:δ频段双侧小世界特性降低,α2频段双侧小世界特性增加。在θ频段,仅在左半球卒中患者中观察到双侧小世界特性降低。结论 急性卒中后,大脑皮层以频率依赖方式广泛地重新排列其网络连接,可能是为了应对新的解剖和功能框架。

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