Suppr超能文献

癫痫发作期间前丘脑核团内的相位-振幅耦合

Phase-amplitude coupling within the anterior thalamic nuclei during seizures.

作者信息

Ibrahim George M, Wong Simeon, Morgan Benjamin R, Lipsman Nir, Fallah Aria, Weil Alexander G, Krishna Vibhor, Wennberg Richard A, Lozano Andres A

机构信息

Division of Neurosurgery, Department of Surgery, University of Toronto , Toronto, Ontario , Canada.

Department of Diagnostic Imaging, The Hospital for Sick Children , Toronto, Ontario , Canada.

出版信息

J Neurophysiol. 2018 Apr 1;119(4):1497-1505. doi: 10.1152/jn.00832.2017. Epub 2017 Dec 27.

Abstract

Cross-frequency phase-amplitude coupling (cfPAC) subserves an integral role in the hierarchical organization of interregional neuronal communication and is also expressed by epileptogenic cortex during seizures. Here, we sought to characterize patterns of cfPAC expression in the anterior thalamic nuclei during seizures by studying extra-operative recordings in patients implanted with deep brain stimulation electrodes for intractable epilepsy. Nine seizures from two patients were analyzed in the peri-ictal period. CfPAC was calculated using the modulation index and interregional functional connectivity was indexed using the phase-locking value. Statistical analysis was performed within subjects on the basis of nonparametric permutation and corrected with Gaussian field theory. Five of the nine analyzed seizures demonstrated significant cfPAC. Significant cfPAC occurred during the pre-ictal and ictal periods in three seizures, as well as the postictal windows in four seizures. The preferred phase at which cfPAC occurred differed 1) in space, between the thalami of the epileptogenic and nonepileptogenic hemispheres; and 2) in time, at seizure termination. The anterior thalamic nucleus of the epileptogenic hemisphere also exhibited altered interregional phase-locking synchrony concurrent with the expression of cfPAC. By analyzing extraoperative recordings from the anterior thalamic nuclei, we show that cfPAC associated with altered interregional phase synchrony is lateralized to the thalamus of the epileptogenic hemisphere during seizures. Electrophysiological differences in cfPAC, including preferred phase of oscillatory interactions may be further investigated as putative targets for individualized neuromodulation paradigms in patients with drug-resistant epilepsy. NEW & NOTEWORTHY The association between fast brain activity and slower oscillations is an integral mechanism for hierarchical neuronal communication, which is also manifested in epileptogenic cortex. Our data suggest that the same phenomenon occurs in the anterior thalamic nuclei during seizures. Further, the preferred phase of modulation shows differences in space, between the epileptogenic and nonepileptogenic hemispheres and time, as seizures terminate. Our data encourage the study of cross-frequency coupling for targeted, individualized closed-loop stimulation paradigms.

摘要

交叉频率相位-振幅耦合(cfPAC)在区域间神经元通信的层级组织中发挥着不可或缺的作用,并且在癫痫发作期间也由致痫皮层表现出来。在这里,我们试图通过研究植入深部脑刺激电极以治疗顽固性癫痫的患者的术中记录,来表征癫痫发作期间前丘脑核中cfPAC的表达模式。分析了两名患者在发作期周围的9次癫痫发作。使用调制指数计算cfPAC,并使用锁相值对区域间功能连接进行索引。基于非参数置换在受试者内部进行统计分析,并用高斯场理论进行校正。9次分析的癫痫发作中有5次表现出显著的cfPAC。3次癫痫发作在发作前期和发作期出现显著的cfPAC,4次癫痫发作在发作后期窗口出现显著的cfPAC。cfPAC出现的偏好相位在空间上有所不同,即在致痫半球和非致痫半球的丘脑之间;在时间上也有所不同,即在癫痫发作终止时。致痫半球的前丘脑核在cfPAC表达的同时,区域间锁相同步也发生了改变。通过分析前丘脑核的术中记录,我们表明,与区域间相位同步改变相关的cfPAC在癫痫发作期间定位于致痫半球的丘脑。cfPAC中的电生理差异,包括振荡相互作用的偏好相位,可能作为耐药性癫痫患者个体化神经调节范式的假定靶点进行进一步研究。新发现与值得注意的是,快速脑活动与较慢振荡之间的关联是层级神经元通信的一个不可或缺的机制,这在致痫皮层中也有体现。我们的数据表明,在癫痫发作期间,前丘脑核也会出现同样的现象。此外,调制的偏好相位在空间上,即在致痫半球和非致痫半球之间,以及在时间上,即在癫痫发作终止时,都存在差异。我们的数据鼓励对交叉频率耦合进行研究,以用于有针对性的、个体化的闭环刺激范式。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验