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首页> 外文期刊>Seminars in pediatric neurology >Neurobiological mechanisms of developmental epilepsy: translating experimental findings into clinical application.
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Neurobiological mechanisms of developmental epilepsy: translating experimental findings into clinical application.

机译:发育性癫痫的神经生物学机制:将实验结果转化为临床应用。

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摘要

Although seizures are very common during early brain development, consequences of seizures during this age period are less severe than in the mature brain. Reasons for this discrepancy relate to both the sequential development of neural elements (ion channels, neurotransmitters, synapses, and circuits) and the effects of seizures on these ongoing processes at different ages. In this review, I critically discuss 2 recent experimental trends in developmental neurobiology that impact seizures and their consequences. First, the paradoxic excitatory effects of gamma-aminobutyric acid early in life are related to seizure susceptibility in this developmental period. Second, the plasticity of immature neuronal circuits and the effects of seizures on subsequent cognition and behavior as a function of age are considered. These topics are relevant to the pediatric neurologist when evaluating and treating a young child with seizures.
机译:尽管癫痫发作在大脑早期发育中非常普遍,但在这个年龄段的癫痫发作的后果不如成熟大脑严重。这种差异的原因既与神经元(离子通道,神经递质,突触和回路)的顺序发育有关,也与癫痫发作对不同年龄的这些进行中的过程的影响有关。在这篇综述中,我主要讨论影响癫痫发作及其后果的发育神经生物学的2个最新实验趋势。首先,生命早期γ-氨基丁酸的悖论性兴奋作用与该发育时期的癫痫发作敏感性有关。其次,考虑了未成熟神经元回路的可塑性以及癫痫发作对随后认知和行为的影响(随年龄的变化)。这些主题与评估和治疗癫痫发作的小儿神经科医师有关。

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