Issue 5, 2021

Collective dynamics of neuronal activities in various modular networks

Abstract

Modularity is a key feature of structural and functional brain networks. However, the association between the structure and function of modular brain networks has not been revealed. We constructed three types of modular cortical networks in vitro and investigated their neuronal activities. The modular networks comprising 4, 3, or 2 modules were constructed using polydimethylsiloxane (PDMS) microstructures fabricated directly on a multi-electrode array (MEA) without transfer. The 4-module network had the strongest modular connectivity, followed by the 3-module and 2-module networks. To investigate how neuronal activities were affected by the modular network structure, spontaneous neuronal activities were recorded on different days in vitro and analyzed based on spike amplitudes, network bursts, and the propagation properties of individual spikes. Different characteristics were observed depending on the network topology and modular connectivity. Moreover, when an electrode was stimulated by biphasic voltage pulses, bursts were elicited for the 4-module network, whereas spikes were elicited for the 3-module and 2-module networks. Direct fabrication of the PDMS microstructures on the MEA without transfer allows microscale construction of modular networks and high-density functional recording; therefore, the technique utilizing the PDMS microstructures can be applied to the systematic study of the dynamics of modular neuronal networks in vitro.

Graphical abstract: Collective dynamics of neuronal activities in various modular networks

Supplementary files

Article information

Article type
Paper
Submitted
02 Nov 2020
Accepted
06 Jan 2021
First published
12 Jan 2021

Lab Chip, 2021,21, 951-961

Collective dynamics of neuronal activities in various modular networks

M. U. Park, Y. Bae, K. Lee, J. H. Song, S. Lee and K. Yoo, Lab Chip, 2021, 21, 951 DOI: 10.1039/D0LC01106A

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