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发育中的初级视觉皮层中紧密耦联的抑制性和兴奋性功能网络。

Tightly coupled inhibitory and excitatory functional networks in the developing primary visual cortex.

机构信息

Department of Neuroscience, University of Minnesota, Minneapolis, United States.

Center for Theoretical Neuroscience, Zuckerman Institute, Columbia University, New York, United States.

出版信息

Elife. 2021 Dec 8;10:e72456. doi: 10.7554/eLife.72456.

Abstract

Intracortical inhibition plays a critical role in shaping activity patterns in the mature cortex. However, little is known about the structure of inhibition in early development prior to the onset of sensory experience, a time when spontaneous activity exhibits long-range correlations predictive of mature functional networks. Here, using calcium imaging of GABAergic neurons in the ferret visual cortex, we show that spontaneous activity in inhibitory neurons is already highly organized into distributed modular networks before visual experience. Inhibitory neurons exhibit spatially modular activity with long-range correlations and precise local organization that is in quantitative agreement with excitatory networks. Furthermore, excitatory and inhibitory networks are strongly co-aligned at both millimeter and cellular scales. These results demonstrate a remarkable degree of organization in inhibitory networks early in the developing cortex, providing support for computational models of self-organizing networks and suggesting a mechanism for the emergence of distributed functional networks during development.

摘要

皮层内抑制在塑造成熟皮层中的活动模式方面起着关键作用。然而,在感觉经验出现之前的早期发育阶段,对于抑制的结构知之甚少,此时自发活动表现出长程相关性,可预测成熟的功能网络。在这里,我们使用雪貂视觉皮层中的 GABA 能神经元钙成像技术,表明在视觉经验之前,抑制性神经元中的自发活动已经高度组织成分布式模块化网络。抑制性神经元表现出具有长程相关性和精确局部组织的空间模块化活动,与兴奋性网络在数量上是一致的。此外,兴奋性和抑制性网络在毫米和细胞尺度上都强烈对齐。这些结果表明,在发育中的皮层早期,抑制性网络具有显著的组织程度,为自组织网络的计算模型提供了支持,并为发育过程中分布式功能网络的出现提供了一种机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa6a/8654369/cce05483fcce/elife-72456-fig1.jpg

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