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基于颅内 EEG 的 α 到 γ 频带内定向功能连接反映了人类中颞网络的局部回路。

Intracranial EEG-Based Directed Functional Connectivity in Alpha to Gamma Frequency Range Reflects Local Circuits of the Human Mesiotemporal Network.

机构信息

Epilepsy Center, Department of Neurosurgery, Faculty of Medicine, University of Freiburg, Breisacher Strasse 64, 79106, Freiburg, Germany.

Center for Basics in NeuroModulation, Faculty of Medicine, University of Freiburg, Breisacher Strasse 64, 79106, Freiburg, Germany.

出版信息

Brain Topogr. 2024 Oct 22;38(1):10. doi: 10.1007/s10548-024-01084-w.

Abstract

To date, it is largely unknown how frequency range of neural oscillations measured with EEG is related to functional connectivity. To address this question, we investigated frequency-dependent directed functional connectivity among the structures of mesial and anterior temporal network including amygdala, hippocampus, temporal pole and parahippocampal gyrus in the living human brain. Intracranial EEG recording was obtained from 19 consecutive epilepsy patients with normal anterior mesial temporal MR imaging undergoing intracranial presurgical epilepsy diagnostics with multiple depth electrodes. We assessed intratemporal bidirectional functional connectivity using several causality measures such as Granger causality (GC), directed transfer function (DTF) and partial directed coherence (PDC) in a frequency-specific way. In order to verify the obtained results, we compared the spontaneous functional networks with intratemporal effective connectivity evaluated by means of SPES (single pulse electrical stimulation) method. The overlap with the evoked network was found for the functional connectivity assessed by the GC method, most prominent in the higher frequency bands (alpha, beta and low gamma), yet vanishing in the lower frequencies. Functional connectivity assessed by means of DTF and PCD obtained a similar directionality pattern with the exception of connectivity between hippocampus and parahippocampal gyrus which showed opposite directionality of predominant information flow. Whereas previous connectivity studies reported significant divergence between spontaneous and evoked networks, our data show the role of frequency bands for the consistency of functional and evoked intratemporal directed connectivity. This has implications for the suitability of functional connectivity methods in characterizing local brain circuits.

摘要

迄今为止,尚不清楚脑电图测量的神经振荡频率范围与功能连接之间的关系。为了解决这个问题,我们研究了活体人脑内侧和前颞网络结构(包括杏仁核、海马体、颞极和海马旁回)之间的频率依赖性有向功能连接。我们从 19 名连续的癫痫患者中获得了颅内 EEG 记录,这些患者的前内侧颞磁共振成像正常,正在接受颅内术前癫痫诊断,使用多个深部电极。我们以特定频率评估了几种因果关系测量,如格兰杰因果关系(GC)、定向传递函数(DTF)和部分定向相干性(PDC),以评估颞内双向功能连接。为了验证获得的结果,我们将自发功能网络与通过 SPES(单脉冲电刺激)方法评估的颞内有效连接进行了比较。GC 方法评估的功能连接与诱发网络存在重叠,在较高频率(α、β和低γ)下最为明显,但在较低频率下消失。DTF 和 PDC 评估的功能连接获得了相似的方向模式,除了海马体和海马旁回之间的连接显示出主要信息流的相反方向。尽管先前的连接研究报告自发和诱发网络之间存在显著差异,但我们的数据显示了频率带对于功能和诱发颞内有向连接一致性的作用。这对功能连接方法在描述局部脑回路中的适用性具有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ac6/11496326/e4dd7fc7ffaf/10548_2024_1084_Fig1_HTML.jpg

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