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Altered effective brain network topology in tinnitus: An EEG source connectivity analysis

机译:耳鸣中改变了有效的脑网络拓扑:EEG源连接分析

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Tinnitus is defined as the auditory phantom perception in the absence of any objective external sound source. In this paper, we used the resting-state electroencephalography (EEG) data to reconstruct the neural sources based on the unit-noise-gain linearly constrained minimum-variance (LCMV) beamformer and applied the effective connectivity analysis on the reconstructed sources to examine the directional neuronal interactions between brain regions in tinnitus patients compared to the healthy controls. We found significantly disrupted patterns of effective connectivity in several brain areas including the frontal, temporal, and occipital cortices as well as the caudate nucleus. Particularly, significant aberrant causal couplings were observed in the orbitofrontal cortex, inferior frontal gyrus_triangular, and parahippocampal region that could potentially illustrate the auditory information retrieval, perception, and evaluation of the phantom sound in the brain of tinnitus patients. Furthermore, topological alterations of the brain network were investigated using graph theoretical analysis. Our findings demonstrated significantly decreased both global integration and segregation of the brain network in tinnitus patients accompanied by the topological shift of tinnitus network to a more random structure in the high-frequency bands. These findings were consistent with the hypothesis of the brain network deviation from small-worldness topology accompanied by reduced global integration in brain-related disorders.
机译:耳鸣被定义为在没有任何客观外部声源的情况下被定义为听觉幻影感知。在本文中,我们使用静态型脑电图(EEG)数据基于单位噪声增益线性约束的最小值(LCMV)波束形成器来重建神经源,并应用了重建源上的有效连接分析以检查与健康对照相比,耳鸣患者脑区域之间的定向神经元相互作用。我们发现在包括额外的脑部区域,包括前部,时间和枕骨和芯片核的几个脑区域中有效连通性的显着中断模式。特别地,在胰腺癌皮质,较差的额外gyrus_triangular和ParahipPocampal区域中观察到显着的异常因果偶联,这可能说明耳鸣患者脑中的幽灵声的听觉信息检索,感知和评估。此外,使用曲线图理论分析研究了脑网络的拓扑改变。我们的研究结果表明,耳鸣患者脑网络的全球整合和分离伴随着耳鸣网络的拓扑转移到高频带中的更随机结构。这些发现与小型世界拓扑的脑网络偏差的假设一致,伴随着脑与脑相关疾病的全球整合减少。

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