局部场电位
神经科学
癫痫
颞叶
红藻氨酸
脑电图
希尔伯特-黄变换
心理学
计算机科学
生物
计算机视觉
生物化学
谷氨酸受体
滤波器(信号处理)
受体
作者
Tiwalade Sobayo,Ananda S. Fine,David J. Mogul
标识
DOI:10.1109/iembs.2011.6091863
摘要
Neuronal populations in the brain achieve levels of synchronous electrophysiological activity as a consequence of both normal brain functions as well as during pathological states such as in epileptic seizures. Understanding the nature of this synchrony and the dynamics of neuronal oscillators in the brain is a critical component towards decoding such complex behaviors. We have sought to achieve a more in-depth understanding of the dynamics underlying the evolution of seizures in limbic epilepsy by analyzing recordings of local field potentials from three subcortical nuclei that are part of the circuit of Papez in a kainic acid rat model of temporal lobe epilepsy using the empirical mode decomposition technique. The empirical mode decomposition allows for an adaptive and nonlinear decomposition of the local field potentials into a series of finite oscillatory components. We calculated the frequencies, power, and measures of phase synchrony of these oscillatory components as seizures evolve in the brain and discovered patterns of phase synchrony that varies between the different stages of the seizures.
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