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Neuronal activity in hippocampal slices can be synchronized by drugs which either block synaptic inhibition (e.g. bicuculline methiodide) or do not (e.g. 4-aminopyridine). Here we compare these two drugs to assess the role of inhibition on the recruitment of neurones into synchronous epileptiform bursts. With 4-aminopyridine we recorded an acceleration of neuronal activity, and in most cells a slow depolarization (mean 6.8 mV), during the ca. 100 ms preceding the population burst. With bicuculline these changes occurred ca. 10 ms before the population bursts, and depolarizations reached a mean of 2.5 mV. We propose that bicuculline-sensitive synaptic inhibition retards the recruitment of neurones into epileptiform synchronous bursts.

More information Original publication

DOI

10.1016/0304-3940(90)90210-z

Type

Journal article

Publication Date

1990-05-04T00:00:00+00:00

Volume

112

Pages

239 - 245

Total pages

6

Keywords

4-Aminopyridine, Animals, Bicuculline, Epilepsy, Hippocampus, In Vitro Techniques, Male, Neural Conduction, Rats, Rats, Inbred Strains, Recruitment, Neurophysiological