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首页> 外文期刊>Royal Society Open Science >Formation of neural networks with structural and functional features consistent with small-world network topology on surface-grafted polymer particles
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Formation of neural networks with structural and functional features consistent with small-world network topology on surface-grafted polymer particles

机译:在表面接枝的聚合物颗粒上形成具有与小世界网络拓扑一致的结构和功能特征的神经网络

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In vitro electrophysiological investigation of neural activity at a network level holds tremendous potential for elucidating underlying features of brain function (and dysfunction). In standard neural network modelling systems, however, the fundamental three-dimensional (3D) character of the brain is a largely disregarded feature. This widely applied neuroscientific strategy affects several aspects of the structure–function relationships of the resulting networks, altering network connectivity and topology, ultimately reducing the translatability of the results obtained. As these model systems increase in popularity, it becomes imperative that they capture, as accurately as possible, fundamental features of neural networks in the brain, such as small-worldness. In this report, we combine in vitro neural cell culture with a biologically compatible scaffolding substrate, surface-grafted polymer particles (PPs), to develop neural networks with 3D topology. Furthermore, we investigate their electrophysiological network activity through the use of 3D multielectrode arrays. The resulting neural network activity shows emergent behaviour consistent with maturing neural networks capable of performing computations, i.e. activity patterns suggestive of both information segregation (desynchronized single spikes and local bursts) and information integration (network spikes). Importantly, we demonstrate that the resulting PP-structured neural networks show both structural and functional features consistent with small-world network topology.
机译:在网络层面进行神经活动的体外电生理研究具有阐明脑功能(和功能障碍)潜在特征的巨大潜力。但是,在标准的神经网络建模系统中,大脑的基本三维(3D)特性是很大程度上被忽略的功能。这种广泛应用的神经科学策略会影响所得网络的结构-功能关系的多个方面,从而改变网络的连接性和拓扑结构,最终降低所得结果的可翻译性。随着这些模型系统的流行,必须尽可能准确地捕获大脑中神经网络的基本特征,例如小世界。在本报告中,我们将体外神经细胞培养与生物相容的支架基质,表面接枝的聚合物颗粒(PPs)结合在一起,以开发具有3D拓扑结构的神经网络。此外,我们通过使用3D多电极阵列研究其电生理网络活动。最终的神经网络活动显示出与能够执行计算的成熟神经网络一致的紧急行为,即表明信息隔离(不同步的单个峰值和局部突发)和信息集成(网络峰值)的活动模式。重要的是,我们证明了所得的PP结构神经网络显示出与小世界网络拓扑一致的结构和功能特征。

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