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PMID: 7965856 Published · ppublish English Journal Article

Relationships between morphology and physiology of pyramid-pyramid single axon connections in rat neocortex in vitro.

The Journal of physiology ·Vol. 478 Pt 3 ·1994-08-01 ·Pages 423-35

Deuchars J, West DC, Thomson AM

Abstract

1. Double intracellular recordings were made from 1163 pairs of pyramidal neurones in layer V-VI of the rat somatomotor cortex in vitro using sharp electrodes filled with biocytin. Monosynaptically connected pairs of cells were identified when an action potential in one could elicit a constant latency excitatory postsynaptic potential (EPSP) in the other and the cells were filled with biocytin. Labelled cells were subsequently identified histologically with avidin-horseradish peroxidase. 2. Thirty-four pairs of cells were found to be monosynaptically connected. Fifteen of these pairs were sufficiently stable for electrophysiological recordings and three of these were recovered sufficiently to permit full morphological reconstruction. 3. The EPSP recorded between the first pair of pyramids varied in amplitude between 0 and 3 mV (mean 1.33 +/- 1.06 mV) and fluctuated considerably (coefficient of variation, 0.796). This was largely due to a high incidence of apparent failures of transmission. On reconstruction two boutons from the presynaptic pyramid axon were in close apposition to the proximal portions of basal dendrites of the postsynaptic cell. 4. In the second pair of pyramids the EPSP had a mean amplitude of 1.06 mV, and displayed a 10-90% rise time of 2.8 ms and a width at half-amplitude of 23 ms. This EPSP did not alter significantly with changes in membrane potential at the soma. The presynaptic axon closely apposed the distal apical dendrite of the postsynaptic cell in eight places. 5. In the third pair of pyramids, the EPSPs, recorded at a relatively depolarized membrane potential, were long lasting and could elicit slow dendritic spikes with long and variable latencies. These slow spikes suggested that the postsynaptic recording site was dendritic and on reconstruction a possible location was identified on the apical dendrite. A total of five presynaptic boutons closely apposed three separate, proximal branches of the postsynaptic apical dendrite. 6. These results provide the first illustration of a morphological basis for variations in functional properties of pyramid-pyramid connections in the neocortex.

MeSH Terms
Animals Axons/physiology,ultrastructure Cerebral Cortex/physiology,ultrastructure Dendrites/physiology Electrodes Electrophysiology Male Membrane Potentials/physiology Motor Cortex/cytology,physiology Neural Pathways/physiology,ultrastructure Pyramidal Cells/physiology,ultrastructure Rats Synapses/physiology
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Deuchars J
Department of Physiology, Royal Free Hospital School of Medicine, Hampstead, London.
West D C
Thomson A M
References (23)
23 references, click to expand
  1. THE USE OF DEGENERATION METHODS IN THE INVESTIGATION OF SHORT NEURONAL CONNEXIONS.
    Prog Brain Res. 1965;14:1-32 PMID: 14317758
  2. Clustered intrinsic connections in cat visual cortex.
    J Neurosci. 1983 May;3(5):1116-33 PMID: 6188819
  3. Targets of horizontal connections in macaque primary visual cortex.
    J Comp Neurol. 1991 Mar 15;305(3):370-92 PMID: 1709953
  4. Organization of neurons in the visual cortex, area 17, of the monkey (Macaca mulatta).
    J Comp Neurol. 1973 Feb 15;147(4):455-96 PMID: 4122705
  5. Comparative electrophysiology of pyramidal and sparsely spiny stellate neurons of the neocortex.
    J Neurophysiol. 1985 Oct;54(4):782-806 PMID: 2999347
  6. Fluctuations in pyramid-pyramid excitatory postsynaptic potentials modified by presynaptic firing pattern and postsynaptic membrane potential using paired intracellular recordings in rat neocortex.
    Neuroscience. 1993 May;54(2):329-46 PMID: 8336828
  7. Form, function and intracortical projections of spiny neurones in the striate visual cortex of the cat.
    J Physiol. 1984 Aug;353:463-504 PMID: 6481629
  8. Large, deep layer pyramid-pyramid single axon EPSPs in slices of rat motor cortex display paired pulse and frequency-dependent depression, mediated presynaptically and self-facilitation, mediated postsynaptically.
    J Neurophysiol. 1993 Dec;70(6):2354-69 PMID: 8120587
  9. The organization of the visual cortex in the cat.
    J Anat. 1955 Jan;89(1):33-46 PMID: 14353795
  10. Response properties and morphological identification of neurons in the cat motor cortex.
    Brain Res. 1984 Jul 23;306(1-2):197-206 PMID: 6087975
  11. Morphology and intracortical projections of functionally characterised neurones in the cat visual cortex.
    Nature. 1979 Jul 12;280(5718):120-5 PMID: 552600
  12. Synaptic targets of HRP-filled layer III pyramidal cells in the cat striate cortex.
    Exp Brain Res. 1986;64(3):541-52 PMID: 3803491
  13. Regenerative activity in apical dendrites of pyramidal cells in neocortex.
    Cereb Cortex. 1993 Jan-Feb;3(1):26-38 PMID: 8439739
  14. Magnesium gates glutamate-activated channels in mouse central neurones.
    Nature. 1984 Feb 2-8;307(5950):462-5 PMID: 6320006
  15. Matching dendritic neuron models to experimental data.
    Physiol Rev. 1992 Oct;72(4 Suppl):S159-86 PMID: 1438585
  16. Connections between pyramidal neurons in layer 5 of cat visual cortex (area 17).
    J Comp Neurol. 1987 May 15;259(3):364-81 PMID: 3584561
  17. Synaptic transmission between individual pyramidal neurons of the rat visual cortex in vitro.
    J Neurosci. 1991 Jan;11(1):72-84 PMID: 1846012
  18. The amplitude, time course and charge of unitary excitatory post-synaptic potentials evoked in spinal motoneurone dendrites.
    J Physiol. 1973 Nov;234(3):665-88 PMID: 4764434
  19. Cellular organization of reciprocal patchy networks in layer III of cat visual cortex (area 17).
    Neuroscience. 1992;46(2):275-86 PMID: 1542406
  20. Changes of cyanide content and linamarase activity in wounded cassava roots.
    Plant Physiol. 1983 May;72(1):186-9 PMID: 16662957
  21. The pyramidal neuron of the cerebral cortex: morphological and chemical characteristics of the synaptic inputs.
    Prog Neurobiol. 1992 Dec;39(6):563-607 PMID: 1410442
  22. The 'module-concept' in cerebral cortex architecture.
    Brain Res. 1975 Sep 23;95(2-3):475-96 PMID: 808252
  23. Electrophysiological and morphological properties of rat motor cortex neurons in vivo.
    Brain Res. 1991 Jan 25;539(2):181-90 PMID: 1711391
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1994-08-01
Pages
423-35
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1155663
Subset
IM
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