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Methods to Understand Brain Connections and Neural Function: The functional organization of human epileptic hippocampus

机译:理解大脑连接和神经功能的方法:人类癫痫海马的功能组织

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摘要

The function and connectivity of human brain is disrupted in epilepsy. We previously reported that the region of epileptic brain generating focal seizures, i.e., the seizure onset zone (SOZ), is functionally isolated from surrounding brain regions in focal neocortical epilepsy. The modulatory effect of behavioral state on the spatial and spectral scales over which the reduced functional connectivity occurs, however, is unclear. Here we use simultaneous sleep staging from scalp EEG with intracranial EEG recordings from medial temporal lobe to investigate how behavioral state modulates the spatial and spectral scales of local field potential synchrony in focal epileptic hippocampus. The local field spectral power and linear correlation between adjacent electrodes provide measures of neuronal population synchrony at different spatial scales, ∼1 and 10 mm, respectively. Our results show increased connectivity inside the SOZ and low connectivity between electrodes in SOZ and outside the SOZ. During slow-wave sleep, we observed decreased connectivity for ripple and fast ripple frequency bands within the SOZ at the 10 mm spatial scale, while the local synchrony remained high at the 1 mm spatial scale. Further study of these phenomena may prove useful for SOZ localization and help understand seizure generation, and the functional deficits seen in epileptic eloquent cortex.
机译:人脑的功能和连通性在癫痫症中被破坏。我们以前曾报道过,癫痫脑产生局灶性癫痫发作的区域,即癫痫发作区(SOZ),在功能上与局灶性新皮层癫痫的周围大脑区域隔离。但是,尚不清楚行为状态对空间和频谱尺度的调节作用,在该尺度上发生功能连接性降低。在这里,我们使用头皮脑电图的同时睡眠分期和内侧颞叶的颅内脑电图记录来研究行为状态如何调节局灶性癫痫海马体中局部场电位同步的空间和频谱尺度。相邻电极之间的局部场谱功率和线性相关性分别提供了在不同的空间尺度(分别约为1和10 mm)下神经元种群同步性的度量。我们的结果表明,SOZ内部的连接性增强,而SOZ内部和外部的电极之间的连接性较低。在慢波睡眠过程中,我们观察到在10 mm空间尺度上SOZ内的波纹和快速波纹频带的连通性降低,而在1 mm空间尺度上的局部同步性仍然很高。进一步研究这些现象可能对SOZ定位有用,并有助于了解癫痫发作的发生以及癫痫雄性皮层中所见的功能缺陷。

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