Initiation of Spontaneous Epileptiform Activity in the Neocortical Slice
- 1 August 1998
- journal article
- research article
- Published by American Physiological Society in Journal of Neurophysiology
- Vol. 80 (2) , 978-982
- https://doi.org/10.1152/jn.1998.80.2.978
Abstract
Tsau, Yang, Li Guan, and Jian-Young Wu. Initiation of spontaneous epileptiform activity in the neocortical slice. J. Neurophysiol. 80: 978–982, 1998. Cortical local circuitry is important in epileptogenesis. Voltage-sensitive dyes and fast imaging were used to visualize the initiation of spontaneous paroxysmal events in adult rat neocortical slices. Although spontaneous paroxysmal events could start from anywhere in the preparation, optical imaging revealed that all spontaneous events started at a few confined initiation foci and propagated to the whole preparation. Multielectrode recording over hundreds of spontaneous events revealed that often two or three initiation foci coexisted in each preparation (n = 10). These foci took turns being dominant; the dominant focus initiated the majority of the spontaneous paroxysmal events during that period. The dominant focus and dynamic rearrangement of foci suggest that the initiation of spontaneous epileptiform events involves a local multineuronal process, perhaps with potentiated synapses.Keywords
This publication has 20 references indexed in Scilit:
- Activity‐dependent properties of synaptic transmission at two classes of connections made by rat neocortical pyramidal axons in vitroThe Journal of Physiology, 1997
- Epileptiform Activity in the Guinea‐pig Neocortical Slice Spreads Preferentially along Supragranular Layers—Recordings with Voltage‐sensitive DyesEuropean Journal of Neuroscience, 1995
- Controlling chaos in the brainNature, 1994
- Neuronal Domains in Developing NeocortexScience, 1992
- Intrinsic Oscillations of Neocortex Generated by Layer 5 Pyramidal NeuronsScience, 1991
- The lateral spread of ictal discharges in neocortical brain slicesEpilepsy Research, 1990
- Initiation of synchronized neuronal bursting in neocortexNature, 1984
- Single neurones can initiate synchronized population discharge in the hippocampusNature, 1983
- Changes in absorption, fluorescence, dichroism, and birefringence in stained giant axons: Optical measurement of membrane potentialThe Journal of Membrane Biology, 1977
- Changes in ANS and TNS fluorescence in giant axons fromLoligoThe Journal of Membrane Biology, 1974