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首页> 外文期刊>International Journal of Neural Systems >Dynamics of Epileptiform Discharges Induced by Transcranial Magnetic Stimulation in Genetic Generalized Epilepsy
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Dynamics of Epileptiform Discharges Induced by Transcranial Magnetic Stimulation in Genetic Generalized Epilepsy

机译:遗传广义癫痫中经颅磁刺激诱导的癫痫型排出的动态

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Objective: In patients with Genetic Generalized Epilepsy (GGE), transcranial magnetic stimulation (TMS) can induce epileptiform discharges (EDs) of varying duration. We hypothesized that (a) the ED duration is determined by the dynamic states of critical network nodes (brain areas) at the early post-TMS period, and (b) brain connectivity changes before, during and after the ED, as well as within the ED. Methods: EEG recordings from two GGE patients were analyzed. For hypothesis (a), the characteristics of the brain dynamics at the early ED stage are measured with univariate and multivariate EEG measures and the dependence of the ED duration on these measures is evaluated. For hypothesis (b), effective connectivity measures are combined with network indices so as to quantify the brain network characteristics and identify changes in brain connectivity. Results: A number of measures combined with specific channels computed on the first EEG segment post-TMS correlate with the ED duration. In addition, brain connectivity is altered from pre-ED to ED and post-ED and statistically significant changes were also detected across stages within the ED. Conclusion: ED duration is not purely stochastic, but depends on the dynamics of the post-TMS brain state. The brain network dynamics is significantly altered in the course of EDs.
机译:目的:在遗传广义癫痫(GGE)的患者中,经颅磁刺激(TMS)可以诱导不同持续时间的癫痫型排出(EDS)。我们假设(a)ED持续时间由在TMS期间的关键网络节点(脑区域)的动态状态决定,(b)脑连接之前,期间和之后的脑连接,以及内部ed。方法:分析了两种GGE患者的EEG记录。对于假设(a),通过单变量和多变量的EEG测量测量早期ED阶段的脑动力学的特征,并评估ED持续时间对这些措施的依赖性。对于假设(b),有效的连接措施与网络指标相结合,以量化脑网络特征并识别脑连接的变化。结果:多种措施与在TMS后的第一EEG段计算的特定通道相结合,与ED持续时间相关联。此外,脑连接从预先编辑到ED,并在ED内的阶段检测到后ED和统计学上显着的变化。结论:ED持续时间不纯随机,但取决于TMS后脑状态的动态。在EDS过程中,大脑网络动态显着改变。

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