Low-Probability Transmission of Neocortical and Entorhinal Impulses Through the Perirhinal Cortex
- 1 May 2004
- journal article
- Published by American Physiological Society in Journal of Neurophysiology
- Vol. 91 (5) , 2079-2089
- https://doi.org/10.1152/jn.01197.2003
Abstract
One model of episodic memory posits that during slow-wave sleep (SWS), the synchronized discharges of hippocampal neurons in relation to sharp waves “replay” activity patterns that occurred during the waking state, facilitating synaptic plasticity in the neocortex. Although evidence of replay was found in the hippocampus in relation to sharp waves, it was never shown that this activity reached the neocortex. Instead, it was assumed that the rhinal cortices faithfully transmit information from the hippocampus to the neocortex and reciprocally. Here, we tested this idea using 3 different approaches. 1) Stimulating electrodes were inserted in the entorhinal cortex and temporal neocortex and evoked unit responses were recorded in between them, in the intervening rhinal cortices. In these conditions, impulse transfer occurred with an extremely low probability, in both directions. 2) To rule out the possibility that this unreliable transmission resulted from the artificial nature of electrical stimuli, crosscorrelation analyses of spontaneous neocortical, perirhinal, and entorhinal firing were performed in unanesthetized animals during the states of waking and SWS. Again, little evidence of propagation could be obtained in either state. 3) To test the idea that propagation occurs only when large groups of neurons are activated within a narrow time window, we computed perievent histograms of neocortical, perirhinal, and entorhinal neuronal discharges around large-amplitude sharp waves. However, these synchronized entorhinal discharges also failed to propagate across the perirhinal cortex. These findings suggest that the rhinal cortices are more than a relay between the neocortex and hippocampus, but rather a gate whose properties remain to be identified.Keywords
This publication has 74 references indexed in Scilit:
- Amygdala oscillations and the consolidation of emotional memoriesTrends in Cognitive Sciences, 2002
- Recognition memory: What are the roles of the perirhinal cortex and hippocampus?Nature Reviews Neuroscience, 2001
- Morphology and physiology of neurons in the rat perirhinal-lateral amygdala areaJournal of Comparative Neurology, 1999
- Input synchrony and the irregular firing of cortical neuronsNature Neuroscience, 1998
- Efferent projections of the anterior perirhinal cortex in the ratJournal of Comparative Neurology, 1996
- Replay of Neuronal Firing Sequences in Rat Hippocampus During Sleep Following Spatial ExperienceScience, 1996
- Projections from the nucleus reuniens thalami to the entorhinal cortex, hippocampal field CA1, and the subiculum in the rat arise from different populations of neuronsJournal of Comparative Neurology, 1996
- Reactivation of Hippocampal Ensemble Memories During SleepScience, 1994
- Two-stage model of memory trace formation: A role for “noisy” brain statesNeuroscience, 1989
- Efferent connections of the prelimbic (area 32) and the infralimbic (area 25) cortices: An anterograde tracing study in the catJournal of Comparative Neurology, 1985