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体外自发向上状态:大脑皮质功能成熟和区域分化的单一指标

Spontaneous Up states in vitro: a single-metric index of the functional maturation and regional differentiation of the cerebral cortex.

作者信息

Rigas Pavlos, Adamos Dimitrios A, Sigalas Charalambos, Tsakanikas Panagiotis, Laskaris Nikolaos A, Skaliora Irini

机构信息

Neurophysiology Laboratory, Center for Basic Research, Biomedical Research Foundation of the Academy of Athens Athens, Greece.

Neuroinformatics Group, Aristotle University of Thessaloniki Thessaloniki, Greece ; School of Music Studies, Aristotle University of Thessaloniki Thessaloniki, Greece.

出版信息

Front Neural Circuits. 2015 Oct 13;9:59. doi: 10.3389/fncir.2015.00059. eCollection 2015.

Abstract

Understanding the development and differentiation of the neocortex remains a central focus of neuroscience. While previous studies have examined isolated aspects of cellular and synaptic organization, an integrated functional index of the cortical microcircuit is still lacking. Here we aimed to provide such an index, in the form of spontaneously recurring periods of persistent network activity -or Up states- recorded in mouse cortical slices. These coordinated network dynamics emerge through the orchestrated regulation of multiple cellular and synaptic elements and represent the default activity of the cortical microcircuit. To explore whether spontaneous Up states can capture developmental changes in intracortical networks we obtained local field potential recordings throughout the mouse lifespan. Two independent and complementary methodologies revealed that Up state activity is systematically modified by age, with the largest changes occurring during early development and adolescence. To explore possible regional heterogeneities we also compared the development of Up states in two distinct cortical areas and show that primary somatosensory cortex develops at a faster pace than primary motor cortex. Our findings suggest that in vitro Up states can serve as a functional index of cortical development and differentiation and can provide a baseline for comparing experimental and/or genetic mouse models.

摘要

了解新皮层的发育和分化仍然是神经科学的核心研究重点。尽管先前的研究已经考察了细胞和突触组织的各个孤立方面,但仍缺乏一个关于皮质微电路的综合功能指标。在这里,我们旨在提供这样一个指标,其形式为在小鼠皮质切片中记录到的持续网络活动的自发重复周期——即上行状态。这些协调的网络动态通过多种细胞和突触元件的精心调控而出现,代表了皮质微电路的默认活动。为了探究自发上行状态是否能够捕捉皮质内网络的发育变化,我们在小鼠的整个生命周期内进行了局部场电位记录。两种独立且互补的方法表明,上行状态活动会随着年龄的增长而系统性地改变,其中最大的变化发生在早期发育和青春期。为了探究可能存在的区域异质性,我们还比较了两个不同皮质区域上行状态的发育情况,并表明初级体感皮层的发育速度比初级运动皮层更快。我们的研究结果表明,体外上行状态可作为皮质发育和分化的功能指标,并可为比较实验性和/或基因小鼠模型提供一个基线。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc95/4603250/5864a7f24921/fncir-09-00059-g0001.jpg

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