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PMID: 5666180 Published · ppublish English Journal Article

Electrical activity observed in guinea-pig olfactory cortex maintained in vitro.

The Journal of physiology ·Vol. 197 ·No. 3 ·1968-08-00 ·Pages 667-83

Richards CD, Sercombe R

Abstract

1. Electrical recordings were made from a preparation of guinea-pig olfactory cortex maintained in vitro.2. The response of the prepiriform area to a volley delivered to the lateral olfactory tract comprised a sharp negative deflexion upon which several positive notches were superimposed followed by a long-duration low-amplitude positive wave.3. Both the negative and positive waves were of maximal amplitude near the top surface of the preparation (the original cortical surface).4. Units recorded at depths of 250-350 mu showed facilitation and latency variation. The latency distribution of these spikes was very similar to that of the positive notches observed on the surface of the slice.5. The surface observed negative waves were rapidly abolished by oxygen lack.6. The negative and positive waves have been tentatively identified as the extracellular manifestations of the excitatory post-synaptic potentials (EPSPs) and inhibitory post-synaptic potentials (IPSPs) occurring in the apical dendrites.7. Some spontaneous activity was observed in a proportion of the preparations studied.8. The evidence presented here strongly supports the contention that portions of the mammalian brain may be maintained in a satisfactory functional condition when isolated from the body, provided that they are maintained in a suitable environment. We believe that such preparations will prove very useful for physiological studies of the mammalian brain.

MeSH Terms
Action Potentials Animals Cerebral Cortex/physiology Dendrites/physiology Electric Stimulation Electrophysiology Evoked Potentials Guinea Pigs Hypoxia In Vitro Techniques Limbic System/physiology Models, Biological Smell Synapses/physiology
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Richards C D
Sercombe R
References (9)
9 references, click to expand
  1. Potentials evoked in vitro in preparations from the mammalian brain.
    Nature. 1966 Jun 4;210(5040):1055-6 PMID: 5914903
  2. Ionic basis for the depolarization of cerebral tissues by excitatory acidic amino acids.
    J Neurochem. 1966 Nov;13(11):1163-77 PMID: 5924665
  3. Electrical activities in thin sections from the mammalian brain maintained in chemically-defined media in vitro.
    J Neurochem. 1966 Dec;13(12):1333-43 PMID: 5962016
  4. Intracellular postsynaptic potentials and location of synapses in pyramidal cells of the cat olfactory cortex.
    Nature. 1966 Oct 22;212(5060):361-2 PMID: 5970143
  5. Electrical responses in brain samples.
    Nature. 1967 Aug 12;215(5102):704-7 PMID: 6059538
  6. Electrical activity observed in guinea-pig olfactory cortex maintained in vitro and its modification by changes in the ionic composition of the bathing medium.
    J Physiol. 1968 May;196(2):94P-95P PMID: 4297418
  7. Pyriform responses to electrical stimulation of olfactory fila, bulb and tract.
    Am J Physiol. 1957 May;189(2):395-400 PMID: 13435381
  8. LOCATION OF POSTSYNAPTIC INHIBITORY SYNAPSES ON HIPPOCAMPAL PYRAMIDS.
    J Neurophysiol. 1964 Jul;27:592-607 PMID: 14194960
  9. CONTINUOUS RECORDINGS OF CHANGES IN MEMBRANE POTENTIAL IN MAMMALIAN CEREBRAL TISSUES IN VITRO; RECOVERY AFTER DEPOLARIZATION BY ADDED SUBSTANCES.
    J Physiol. 1965 Jan;176:261-83 PMID: 14286354
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1968-08-00
Pages
667-83
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1351755
Subset
IM
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