Feedforward inhibition of the rat entorhinal cortex and subicular complex
Open Access
- 1 July 1988
- journal article
- research article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 8 (7) , 2213-2226
- https://doi.org/10.1523/jneurosci.08-07-02213.1988
Abstract
We used in vivo intracellular recording techniques in order to provide evidence about the source of postsynaptic inhibition in the rat entorhinal cortex and subicular complex. Several different structures in the basal forebrain and hippocampus were electrically stimulated in order to activate inhibition by different pathways. This allowed a test of 2 different neuronal circuit models: feedback inhibition, in which recurrent collaterals from principal cell axons excite a local population of inhibitory neurons, and feedforward inhibition, in which excitatory afferents activate the inhibitory neurons. In both models, inhibitory cell axons branch and contribute to the inhibition of a population of principal cells. In the feedback model, a good correlation between antidromic and inhibitory response latencies is predicted. The feedforward model predicts independent antidromic and inhibitory response latencies. In one particular model of feedforward inhibition, afferents excite both local inhibitory cells and principal cells. This model predicts a high correlation between principal cell EPSP and IPSP latencies. The results showed no consistent relationship between the presence of antidromic action potentials and the presence of inhibition in response to stimulation of different sites. In addition, there was no correlation between antidromic and inhibitory response latencies. These results provide no clear support for the feedback model of inhibition. By contrast, there was a highly significant correlation between the latency of principal cell EPSPs and IPSPs, in support of a feedforward model of inhibition. Response latencies of candidate inhibitory neurons were also consistent with the feedforward model. The results provide evidence that an excitatory relay function of the entorhinal cortex and subicular complex is modified temporally by local, extrinsically activated inhibitory circuits.This publication has 31 references indexed in Scilit:
- Direct afferent excitation and long-term potentiation of hippocampal interneurons.Journal of Neurophysiology, 1982
- Evidence for separate projections of hippocampal pyramidal and non-pyramidal neurons to different parts of the septum in the rat brainNeuroscience Letters, 1982
- Feed‐forward dendritic inhibition in rat hippocampal pyramidal cells studied in vitroThe Journal of Physiology, 1982
- Commissural projection to the dentate gyrus of the rat: evidence for feed-forward inhibitionBrain Research, 1981
- Neurophysiology of the caudally directed hippocampal efferent system in the rat: Projections to the subicular complexBrain Research, 1980
- Inhibition in subicular and entorhinal principal neurons in response to electrical stimulation of the fornix and hippocampusBrain Research, 1980
- Physiological and morphological identification of a nonpyramidal hippocampal cell typeBrain Research, 1978
- An autoradiographic study of the organization of the efferet connections of the hippocampal formation in the ratJournal of Comparative Neurology, 1977
- Hippocampal neuron responses to selective activation of recurrent collaterals of hippocampofugal axonsExperimental Neurology, 1961
- ELECTROPHYSIOLOGY OF HIPPOCAMPAL NEURONS: I. SEQUENTIAL INVASION AND SYNAPTIC ORGANIZATIONJournal of Neurophysiology, 1961