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Time-Varying Networks of Inter-Ictal Discharging Reveal Epileptogenic Zone

机译:唾液间放电的时变网络揭示了致痫区

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摘要

The neuronal synchronous discharging may cause an epileptic seizure. Currently, most of the studies conducted to investigate the mechanism of epilepsy are based on EEGs or functional magnetic resonance imaging (fMRI) recorded during the ictal discharging or the resting-state, and few studies have probed into the dynamic patterns during the inter-ictal discharging that are much easier to record in clinical applications. Here, we propose a time-varying network analysis based on adaptive directed transfer function to uncover the dynamic brain network patterns during the inter-ictal discharging. In addition, an algorithm based on the time-varying outflow of information derived from the network analysis is developed to detect the epileptogenic zone. The analysis performed revealed the time-varying network patterns during different stages of inter-ictal discharging; the epileptogenic zone was activated prior to the discharge onset then worked as the source to propagate the activity to other brain regions. Consistence between the epileptogenic zones detected by our proposed approach and the actual epileptogenic zones proved that time-varying network analysis could not only reveal the underlying neural mechanism of epilepsy, but also function as a useful tool in detecting the epileptogenic zone based on the EEGs in the inter-ictal discharging.
机译:神经元同步放电可能会导致癫痫发作。目前,大多数研究癫痫机制的研究都是基于脑电图或在发作期或静息状态下记录的功能磁共振成像(fMRI),很少有研究探讨发作间期的动态模式。在临床应用中更易于记录。在这里,我们提出了一种基于自适应有向传递函数的时变网络分析方法,以揭示发作间放电期间动态脑网络模式。此外,开发了一种基于从网络分析得出的信息随时间变化的流出算法来检测致癫痫区。进行的分析揭示了在间壁放电不同阶段的时变网络模式。癫痫发生区在放电开始之前被激活,然后作为将活性传播到其他大脑区域的来源。我们提出的方法检测到的癫痫发生区与实际的癫痫发生区之间的一致性证明,时变网络分析不仅可以揭示癫痫病的潜在神经机制,而且还可以作为基于脑电图检测癫痫发作区的有用工具。间放电。

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