COMPARISON OF SPATIAL FIRING CHARACTERISTICS OF UNITS IN DORSAL AND VENTRAL HIPPOCAMPUS OF THE RAT

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The septal and temporal poles of the hippocampus differ markedly in their anatomical and neurochemical organization. Although it is well established that the internal representation of space is a fundamental function of hippocampal neurons, most of what is known about spatial coding in the hippocampus of freely moving animals has come from recordings from the dorsal one-third (largely for technical convenience). The present study therefore compared the spatial selectivity of CA 1 neurons in the dorsal and ventral hippocampi of rats during performance of a food reinforced, random search task in a square chamber containing simple visual landmarks. Neural activity was recorded in the dorsal and ventral hippocampi of opposite hemispheres in the same rats, in many cases simultaneously. As in dorsal hippocampus, ventral CA 1 units could be classified as ''complex spike'' (pyramidal) cells or ''theta'' interneurons. Both dorsal and ventral theta cells fired at relatively high rates and with low spatial selectivity in the apparatus. Of the population of complex spike cells in the ventral hippocampus, a significantly smaller number had ''place fields'' than in the dorsal hippocampus, and the average spatial selectivity was of significantly lower resolution than that found among dorsal hippocampal complex spike cells. Thus, a septotemporal difference of spatial selectivity was found in the CA 1 field of the rat hippocampus, complementing many other anatomical and neuropharmacological studies. A number of possible functional interpretations can be suggested from these results, including a computational advantage of representing space at different scales or a preeminence of essentially nonspatial information processing in the ventral hippocampus.
Publisher
OXFORD UNIV PRESS INC
Issue Date
1994-12
Language
English
Article Type
Article
Keywords

FREELY-BEHAVING RATS; ENTORHINAL CORTEX; DENTATE GYRUS; PREFRONTAL CORTEX; SEPTOTEMPORAL AXIS; ELECTROPHYSIOLOGICAL EVIDENCE; DIFFERENTIAL DISTRIBUTION; PARAHIPPOCAMPAL CORTEX; RECIPROCAL CONNECTIONS; SUBCORTICAL AFFERENTS

Citation

JOURNAL OF NEUROSCIENCE, v.14, no.12, pp.7347 - 7356

ISSN
0270-6474
URI
http://hdl.handle.net/10203/67667
Appears in Collection
BS-Journal Papers(저널논문)
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