难治性癫痫迷走神经刺激后脑功能连通性和网络特征的改变。

IF 1.8 4区 医学 Q4 NEUROSCIENCES Translational Neuroscience Pub Date : 2023-01-01 DOI:10.1515/tnsci-2022-0308
Yongqiang Ding, Kunlin Guo, Xinjun Wang, Mingming Chen, Xinxiao Li, Yuehui Wu
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引用次数: 0

摘要

目的:研究迷走神经刺激(VNS)对癫痫发作期脑功能网络连通性和小世界指标的影响。方法:对10例难治性癫痫患者进行VNS治疗前后的视频脑电图监测。为每个参与者选择包含癫痫发作的2分钟脑电图片段,得到总共20分钟的癫痫发作数据。计算了全频带和不同频带(delta、theta、alpha、beta和gamma)的加权相位滞后指数(wPLI)和小世界指标。最后,对相关指标进行统计分析,并利用多次比较后的错误发现率对差异进行校正。结果:在整个频带内,wPLI显著增强,网络指标(度(D)、聚类系数(CC)、全局效率(GE))增加,特征路径长度(CPL)减少(P < 0.01)。在不同频带中,delta和β波段顶枕与额叶区域间的wPLI显著增强,β和γ波段额叶区域内和额顶与枕叶区域间的wPLI显著降低(P < 0.01)。结论:VNS治疗可显著改变wPLI和小世界指标。这些发现有助于更深入地了解VNS治疗对脑网络的影响,并为评估VNS的疗效提供客观指标。
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Brain functional connectivity and network characteristics changes after vagus nerve stimulation in patients with refractory epilepsy.

Objective: This study aims to investigate the impact of vagus nerve stimulation (VNS) on the connectivity and small-world metrics of brain functional networks during seizure periods.

Methods: Ten refractory epilepsy patients underwent video encephalographic monitoring before and after VNS treatment. The 2-min electroencephalogram segment containing the ictal was selected for each participant, resulting in a total of 20 min of seizure data. The weighted phase lag index (wPLI) and small-world metrics were calculated for the whole frequency band and different frequency bands (delta, theta, alpha, beta, and gamma). Finally, the relevant metrics were statistically analyzed, and the false discovery rate was used to correct for differences after multiple comparisons.

Results: In the whole band, the wPLI was notably enhanced, and the network metrics, including degree (D), clustering coefficient (CC), and global efficiency (GE), increased, while characteristic path length (CPL) decreased (P < 0.01). In different frequency bands, the wPLI between the parieto-occipital and frontal regions was significantly strengthened in the delta and beta bands, while the wPLI within the frontal region and between the frontal and parieto-occipital regions were significantly reduced in the beta and gamma bands (P < 0.01). In the low-frequency band (<13 Hz), the small-world metrics demonstrated significantly increased CC, D, and GE, with a significantly decreased CPL, indicating a more efficient network organization. In contrast, in the gamma band, the GE decreased, and the CPL increased, suggesting a shift toward less efficient network organization.

Conclusion: VNS treatment can significantly change the wPLI and small-world metrics. These findings contribute to a deeper understanding of the impact of VNS therapy on brain networks and provide objective indicators for evaluating the efficacy of VNS.

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来源期刊
CiteScore
3.00
自引率
4.80%
发文量
45
审稿时长
>12 weeks
期刊介绍: Translational Neuroscience provides a closer interaction between basic and clinical neuroscientists to expand understanding of brain structure, function and disease, and translate this knowledge into clinical applications and novel therapies of nervous system disorders.
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