Literature DB >> 21826119

Dynamics of epileptiform activity in mouse hippocampal slices.

Gregory Filatov, Giri P Krishnan, Nikolai F Rulkov, Maxim Bazhenov.   

Abstract

Increase of the extracellular K( + ) concentration mediates seizure-like synchronized activities in vitro and was proposed to be one of the main factors underlying epileptogenesis in some types of seizures in vivo. While underlying biophysical mechanisms clearly involve cell depolarization and overall increase in excitability, it remains unknown what qualitative changes of the spatio-temporal network dynamics occur after extracellular K( + ) increase. In this study, we used multi-electrode recordings from mouse hippocampal slices to explore changes of the network activity during progressive increase of the extracellular K( + ) concentration. Our analysis revealed complex spatio-temporal evolution of epileptiform activity and demonstrated a sequence of state transitions from relatively simple network bursts into complex bursting, with multiple synchronized events within each burst. We describe these transitions as qualitative changes of the state attractors, constructed from experimental data, mediated by elevation of extracellular K( + ) concentration.

Entities:  

Keywords:  Burst; Epileptiform; Network dynamics; Oscillations; Potassium concentration; Seizure; Spatio-temporal

Year:  2011        PMID: 21826119      PMCID: PMC3101328          DOI: 10.1007/s10867-011-9216-x

Source DB:  PubMed          Journal:  J Biol Phys        ISSN: 0092-0606            Impact factor:   1.365


  31 in total

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Review 10.  Potassium dynamics in the epileptic cortex: new insights on an old topic.

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5.  Characterizing Concentration-Dependent Neural Dynamics of 4-Aminopyridine-Induced Epileptiform Activity.

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