Septotemporal distribution of entorhinal projections to the hippocampus in the cat: Electrophysiological evidence
- 1 August 1985
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 238 (1) , 1-9
- https://doi.org/10.1002/cne.902380102
Abstract
The projection of the entorhinal cortex (EA) to the hippocampus in the cat has been studied by electrophysiological methods. Field potentials elicited by EA stimulation sites were measured in the hippocampus (fascia dentata). Different topographic distributions of the amplitude and of the onset latency of average evoked potentials (AEPs) were obtained depending on the place of the stimulation along a lateromedial axis in the Ea. The lateral EA elicited the largest AEPs in the septal part of the hippocampus and the medial EA evoked maximal responses in the temporal part of the hippocampus, while the intermediate part of the EA evoked the largest AEPs in the splenial (intermediate) part of the hippocampus. Unit activity elicited by hippocampal stimulation was measured in the EA. Analysis of the antidromic unit activity showed that the pathways analysed were monosynaptic. Different conduction velocities to the septal part of the hippocampus were found; the pathway from the lateral EA was the fastest and the pathway from the medial EA the slowest. Assuming that the sites of maximal AEP amplitude correspond to the location of the major synaptic inputs, it can be conduced that the active synaptic inputs arising along a lateromedial axis in the EA are distributed within the hippocampus according to a septotemporal axis, although with some overlap between the different projections. Therefore it may be concluded that the hippocampus is not homogeneous with respect to the inputs from the EA. The present observations are discussed regarding anatomical data and putative functional differences between septal and temporal hippocampus.Keywords
This publication has 36 references indexed in Scilit:
- Dorsal and ventral hippocampal lesions and behaviorPublished by Elsevier ,2003
- Topography between the entorhinal cortex and the dentate septotemporal axis in rats: I. Medial and intermediate entorhinal projecting cellsJournal of Comparative Neurology, 1982
- Evoked potentials and long-term potentiation in the mouse dentate gyrus after stimulation of the entorhinal cortexExperimental Neurology, 1982
- Physiological identification and analysis of dentate granule cell responses to stimulation of the medial and lateral perforant pathways in the ratJournal of Comparative Neurology, 1977
- Projections from the amygdaloid complex and adjacent olfactory structures to the entorhinal cortex and to the subiculum in the rat and catJournal of Comparative Neurology, 1977
- Topographic organization of the projections from the entorhinal area to the hippocampal formation of the ratJournal of Comparative Neurology, 1976
- Some connections of the entorhinal (area 28) and perirhinal (area 35) cortices of the rhesus monkey. III. Efferent connectionsBrain Research, 1975
- Some connections of the entorhinal (area 28) and perirhinal (area 35) cortices of the rhesus monkey. I. Temporal lobe afferentsBrain Research, 1975
- Effects of dorsal and ventral hippocampal lesions on spontaneous alternation, learned alternation and probability learning in ratsBrain Research, 1973
- Excitatory Synapses on Hippocampal Apical Dendrites Activated by Entorhinal StimulationActa Physiologica Scandinavica, 1966