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Updated: Jun 26, 2026

Time-dependent Increase in the Network Response to the Stimulation of Neuronal Cell Cultures on Micro-electrode Arrays
Published on: May 29, 2017
Do external stimuli, applied to train cultured cortical networks, disturb the balance between activity and
Joost le Feber1, Jan Stegenga, Wim Rutten
1Biomedical Technology, Department of Electrical Engineering, Mathematics and Computer science, Biomedical Signals and Systems Group, University of Twente, PO Box 217, 7500 AE, Enschede, The Netherlands. j.lefeber@utwente.nl
Abstract:
Learning, or more generally, plasticity may be studied using cultured neuronal networks on multi electrode arrays. Many protocols have been proposed to change connectivity in such networks. So far, only one of these protocols, proposed by Shahaf and Marom, aimed to change the input-output relationship of a selected connection in the network. Although the results were quite promising, the experiments appeared difficult to repeat and the protocol did not serve as a basis for wider investigation yet. Here, we repeated their protocol, and compared our 'learning curves' to the original results. Although in some experiments the protocol did not seem to work, we found that on average, the protocol showed a significant learning effect indeed. We frequently found learning curves that initially declined as in the original results, but then increased again before finally settling at a low level.

