首页> 外文期刊>Trends in Neurosciences >Early patterns of electrical activity in the developing cerebral cortex of humans and rodents.
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Early patterns of electrical activity in the developing cerebral cortex of humans and rodents.

机译:人类和啮齿动物大脑皮质发育中电活动的早期模式。

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摘要

During prenatal and early postnatal development, the cerebral cortex exhibits synchronized oscillatory network activity that is believed to be essential for the generation of neuronal cortical circuits. The nature and functional role of these early activity patterns are of central interest in neuroscience. Much of the research is performed in rodents and in vitro, but how closely do these model systems relate to the human fetal brain? In this review, we compare observations in humans with in vivo and in vitro rodent data, focusing on particular oscillatory activity patterns that share many common features: delta brushes, spindle bursts and spindle-like oscillations. There is considerable evidence that the basic functional properties of immature cortical networks are conserved through mammalian evolution, making the neonatal rodent an excellent model for studying early cortical activity and associated plasticity during the developmental period corresponding to the human fetal stage. This review is part of the INMED/TINS special issue "Nature and nurture in brain development and neurological disorders", based on presentations at the annual INMED/TINS symposium (http://inmednet.com/).
机译:在产前和产后早期发育期间,大脑皮层表现出同步的振荡网络活动,这被认为对神经元皮层回路的产生至关重要。这些早期活动模式的性质和功能作用在神经科学中具有重要意义。许多研究是在啮齿动物和体外进行的,但是这些模型系统与人类胎儿的大脑有多紧密联系?在这篇综述中,我们将人体与体内和体外啮齿类动物的数据进行比较,重点研究具有许多共同特征的特定振荡活动模式:三角刷,纺锤状爆发和纺锤状振荡。有大量证据表明,未成熟皮质网络的基本功能特性通过哺乳动物的进化得以保留,这使新生啮齿类动物成为研究早期皮质活动和与人类胎儿阶段相对应的可塑性的极好的模型。该评论是INMED / TINS​​特刊“大脑发育和神经系统疾病中的自然与养育”的一部分,该刊物以年度INMED / TINS​​专题讨论会(http://inmednet.com/)的演讲为基础。

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