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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >NEURONAL ACTIVITY PATTERNS IN THE DEVELOPING BARREL CORTEX
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NEURONAL ACTIVITY PATTERNS IN THE DEVELOPING BARREL CORTEX

机译:显影桶皮层中的神经元活动模式

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The developing barrel cortex reveals a rich repertoire of neuronal activity patterns, which have been also found in other sensory neocortical areas and in other species including the somatosensory cortex of preterm human infants. The earliest stage is characterized by asynchronous, sparse single-cell firing at low frequencies. During the second stage neurons show correlated firing, which is initially mediated by electrical synapses and subsequently transforms into network bursts depending on chemical synapses. Activity patterns during this second stage are synchronous plateau assemblies, delta waves, spindle bursts and early gamma oscillations (EGOs). In newborn rodents spindle bursts and EGOs occur spontaneously or can be elicited by sensory stimulation and synchronize the activity in a barrel-related columnar network with topographic organization at the day of birth. Interfering with this early activity causes a disturbance in the development of the cortical architecture, indicating that spindle bursts and EGOs influence the formation of cortical columns. Early neuronal activity also controls the rate of programed cell death in the developing barrel cortex, suggesting that spindle bursts and EGOs are physiological activity patterns particularly suited to suppress apoptosis. It remains to be studied in more detail how these different neocortical activity patterns control early developmental processes such as formation of synapses, microcircuits, topographic maps and large-scale networks. This article is part of a Special Issue entitled: Barrel Cortex. (C) 2017 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:发展中的桶皮层揭示了一种丰富的神经元活性模式,这些方法也已在其他感官新奇地区和其他物种中发现,包括早产儿婴儿的躯体感官皮质。最早的阶段的特点是在低频下异步,稀疏的单细胞射击。在第二阶段神经元期间,神经元显示相关烧制,其最初被电突触介导,随后根据化学突触转换为网络突发。在第二阶段期间的活动模式是同步平台组件,三角波,主轴突发和早期伽马振动(EGO)。在新生儿啮齿动物中,主轴突发和EGOS自发地发生,或者可以通过感官刺激引发,并在出生日时与地形组织在桶相关柱状网络中的活动同步。干扰这种早期活动导致皮质架构的发展导致干扰,表明主轴突发和eGOS影响皮质柱的形成。早期神经元活动也控制了发展桶皮层中的编程细胞死亡率,表明主轴突发和EGO是特别适合抑制细胞凋亡的生理活性模式。这些不同的新皮肤活动模式如何控制早期发育过程,例如突触,微电路,地形图和大型网络的形成,仍然详细研究。本文是题为:Barrel Cortex的特殊问题的一部分。 (c)2017年IBRO。 elsevier有限公司出版。保留所有权利。

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