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首页> 外文期刊>The Journal of Physiology >Synchronization and desynchronization in epilepsy: controversies and hypotheses
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Synchronization and desynchronization in epilepsy: controversies and hypotheses

机译:癫痫中的同步和去同步:争议和假设

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Epilepsy has been historically seen as a functional brain disorder associated with excessive synchronization of large neuronal populations leading to a hypersynchronous state. Recent evidence showed that epileptiform phenomena, particularly seizures, result from complex interactions between neuronal networks characterized by heterogeneity of neuronal firing and dynamical evolution of synchronization. Desynchronization is often observed preceding seizures or during their early stages; in contrast, high levels of synchronization observed towards the end of seizures may facilitate termination. In this review we discuss cellular and network mechanisms responsible for such complex changes in synchronization. Recent work has identified cell-type-specific inhibitory and excitatory interactions, the dichotomy between neuronal firing and the non-local measurement of local field potentials distant to that firing, and the reflection of the neuronal dark matter problem in non-firing neurons active in seizures. These recent advances have challenged long-established views and are leading to a more rigorous and realistic understanding of the pathophysiology of epilepsy.
机译:癫痫已经被历史上被视为与过度同步状态的大型神经元群体的过度同步相关的功能性大脑障碍。最近的证据表明,癫痫型现象,特别是癫痫发作,是神经元网络之间的复杂相互作用,其特征在于神经元射击的异质性和同步的动力学演变。在癫痫发作之前或在早期阶段期间经常观察去同步;相反,朝向癫痫发作末端观察的高水平同步可以促进终止。在本报告中,我们讨论负责此类复杂变化的蜂窝和网络机制同步。最近的工作已经确定了特异性特异性抑制和兴奋性相互作用,神经元烧制与局部场势的非局部测量与该烧制的非局部测量,以及在非烧制神经元中的神经元暗物质问题的反射癫痫发作。这些最近的进展已经挑战了良好的观点,并导致对癫痫病理生理学的更严格和现实的理解。

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