Skip to main navigation Skip to search Skip to main content

Up and Down States of Cortical Neurons in Focal Limbic Seizures

  • Zongwei Yue
  • , Isaac G. Freedman
  • , Peter Vincent
  • , John P. Andrews
  • , Christopher Micek
  • , Mark Aksen
  • , Reese Martin
  • , David Zuckerman
  • , Quentin Perrenoud
  • , Garrett T. Neske
  • , Lim Anna Sieu
  • , Xiao Bo
  • , Jessica A. Cardin
  • , Hal Blumenfeld
  • Yale University
  • Central South University
  • Sun Yat-Sen University

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

Recent work suggests an important role for cortical-subcortical networks in seizure-related loss of consciousness. Temporal lobe seizures disrupt subcortical arousal systems, which may lead to depressed cortical function and loss of consciousness. Extracellular recordings show ictal neocortical slow waves at about 1 Hz, but it is not known whether these simply represent seizure propagation or alternatively deep sleep-like activity, which should include cortical neuronal Up and Down states. In this study, using in vivo whole-cell recordings in a rat model of focal limbic seizures, we directly examine the electrophysiological properties of cortical neurons during seizures and deep anesthesia. We found that during seizures, the membrane potential of frontal cortical secondary motor cortex layer 5 neurons fluctuates between Up and Down states, with decreased input resistance and increased firing rate in Up states when compared to Down states. Importantly, Up and Down states in seizures are not significantly different from those in deep anesthesia, in terms of membrane potential, oscillation frequency, firing rate, and input resistance. By demonstrating these fundamental similarities in cortical electrophysiology between deep anesthesia and seizures, our results support the idea that a state of decreased cortical arousal may contribute to mechanisms of loss of consciousness during seizures.

Original languageEnglish
Pages (from-to)3074-3086
Number of pages13
JournalCerebral Cortex
Volume30
Issue number5
DOIs
StatePublished - May 14 2020

Keywords

  • arousal
  • consciousness
  • epilepsy
  • sleep
  • slow waves
  • whole-cell recordings

Fingerprint

Dive into the research topics of 'Up and Down States of Cortical Neurons in Focal Limbic Seizures'. Together they form a unique fingerprint.

Cite this