Journal: bioRxiv
Article Title: Dopamine-induced Relaxation of Connectivity Diversifies Burst Patterns in Cultured Hippocampal Networks
doi: 10.1101/2024.06.26.600923
Figure Lengend Snippet: E f fects of dopamine on network clusters and their connectivity A-B: Spatial profiles of the presentative sample in the baseline condition (A) and 1000 μM condition (B). Each dot represents the relative position of a single electrode in the MaxOne high-density microelectrode array. Colours represent the modularity, where electrodes in the same module share the same colour. Lines connect the electrode pairs whose connectivity strength was greater than a threshold, defined by the top 1% in the baseline condition. Coloured thin lines connect electrodes in the same module and black thick lines connect electrodes in different modules. C: Histograms of participation coefficients of the electrodes in the baseline condition (blue bars) and 1000 μM condition (orange bars) for the representative sample. D: Distance of electrode pairs in the two pools of within-module and across-module for the baseline condition (grey bars) and the four DA conditions (red shaded bars). E-F: Changes in number of modules (E) and the mean participation coefficient (F), normalised by the baseline level, for the four DA conditions, n=8 samples. The convention was the same as in . * p < 0.05, ** p < 0.01
Article Snippet: MaxOne high-density multi-electrode array (HD-MEA) chips (Maxwell Biosystems, Zurich, Switzerland) were pretreated and coated according to the manufacturer’s protocol.
Techniques: Microelectrode Array