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出生后短暂的静息期先于成熟皮质动态的出现。

A transient postnatal quiescent period precedes emergence of mature cortical dynamics.

机构信息

Institute for Genomic Medicine, Columbia University Medical Center, New York, United States.

Department of Biomedical Engineering, Columbia University, New York, United States.

出版信息

Elife. 2021 Jul 23;10:e69011. doi: 10.7554/eLife.69011.

Abstract

Mature neural networks synchronize and integrate spatiotemporal activity patterns to support cognition. Emergence of these activity patterns and functions is believed to be developmentally regulated, but the postnatal time course for neural networks to perform complex computations remains unknown. We investigate the progression of large-scale synaptic and cellular activity patterns across development using high spatiotemporal resolution in vivo electrophysiology in immature mice. We reveal that mature cortical processes emerge rapidly and simultaneously after a discrete but volatile transition period at the beginning of the second postnatal week of rodent development. The transition is characterized by relative neural quiescence, after which spatially distributed, temporally precise, and internally organized activity occurs. We demonstrate a similar developmental trajectory in humans, suggesting an evolutionarily conserved mechanism that could facilitate a transition in network operation. We hypothesize that this transient quiescent period is a requisite for the subsequent emergence of coordinated cortical networks.

摘要

成熟的神经网络通过同步和整合时空活动模式来支持认知。这些活动模式和功能的出现被认为是受发育调控的,但神经网络执行复杂计算的出生后时间进程仍然未知。我们使用新生小鼠体内高时空分辨率电生理学研究了发育过程中大规模突触和细胞活动模式的进展。我们揭示了成熟的皮质过程在啮齿动物发育的第二周开始后的离散但易变的过渡期间之后迅速且同时出现。该过渡的特征是相对神经静止,之后会发生空间分布、时间精确和内部组织的活动。我们在人类中证明了类似的发展轨迹,这表明存在一种进化上保守的机制,可能促进网络操作的转变。我们假设这个短暂的静止期是随后协调皮质网络出现的必要条件。

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