Neural network activity in the neonatal acute slice, slice culture and cell culture


Autoria(s): Sun, Jyh-Jang
Data(s)

2009

Resumo

Information processing and storage in the brain may be presented by the oscillations and cell assemblies. Here we address the question of how individual neurons associate together to assemble neural networks and present spontaneous electrical activity. Therefore, we dissected the neonatal brain at three different levels: acute 1-mm thick brain slice, cultured organotypic 350-µm thick brain slice and dissociated neuronal cultures. The spatio-temporal properties of neural activity were investigated by using a 60-channel Micro-electrode arrays (MEA), and the cell assemblies were studied by using a template-matching method. We find local on-propagating as well as large- scale propagating spontaneous oscillatory activity in acute slices, spontaneous network activity characterized by synchronized burst discharges in organotypic cultured slices, and autonomous bursting behaviour in dissociated neuronal cultures. Furthermore, repetitive spike patterns emerge after one week of dissociated neuronal culture and dramatically increase their numbers as well as their complexity and occurrence in the second week. Our data indicate that neurons can self-organize themselves, assembly to a neural network, present spontaneous oscillations, and emerge spatio-temporal activation patterns. The spontaneous oscillations and repetitive spike patterns may serve fundamental functions for information processing and storage in the brain.

Formato

application/pdf

Identificador

urn:nbn:de:hebis:77-20501

http://ubm.opus.hbz-nrw.de/volltexte/2009/2050/

Idioma(s)

eng

Publicador

10: Biologie. 10: Biologie

Direitos

http://ubm.opus.hbz-nrw.de/doku/urheberrecht.php

Palavras-Chave #newborn, neural network activity, oscillation, spike pattern, acute slice, slice culture and cell culture #Life sciences
Tipo

Thesis.Doctoral