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PMID: 4338175 Published · ppublish English Journal Article

The onset and development of transmission in the chick ciliary ganglion.

The Journal of physiology ·Vol. 222 ·No. 3 ·1972-05-00 ·Pages 691-713

Landmesser L, Pilar G

Abstract

1. The onset and development of transmission has been studied electro-physiologically in the isolated chick ciliary ganglion from Stage 25 (Hamburger & Hamilton, 1951) until 28 days after hatching. Ultrastructure of the synapses was concomitantly investigated.2. Synaptic transmission began at Stage 26(1/2) and was 100% in both cell groups, ciliary and choroid, by Stage 33. It was initially chemical until Stage 41 when effective electrical coupling first appeared in the ciliary population. The proportion of electrically transmitting synapses increased to 80% by 1-2 days post-hatching.3. Few morphological synapses were present at Stage 33(1/2) when all ganglion cells were transmitting. A scarcity of synaptic vesicles persisted until late in embryonic development when all ciliary cells possessed calyces. At hatching the calyces were filled with synaptic vesicles.4. Initial synaptic contacts were by fine terminal branches often on the intricate processes of early ganglion cells. Calyces formed from Stage 36(1/2) and there was a concomitant retraction of ganglion cell processes, so that by Stage 40 all ciliary cells had simple calyces. The calyx was a transitory structure, which from the first week post-hatching began to break up into a cluster of boutons.5. Chemical post-synaptic potentials (PSPs) were at Stage 40 long (30 x the membrane time constant) and further prolonged by eserine. By Stage 43, PSPs had become markedly shortened and were unaffected by eserine. No simple explanation can be offered for the changes in PSP time course and sensitivity to anticholinesterases during development.6. Intracellular records from Stage 40 ciliary cells, which all possess calyces, showed 1-2 mV amplitude, diphasic, fast decaying electrical coupling potentials (CPs). Later in development the CPs became 20-40 mV amplitude, more slowly decaying and monophasic. This seemed to be correlated with faster presynaptic conduction velocities and myelination of the cell soma. Such changes in CPs may reflect a shift from capacitative to more resistive coupling and point to several factors contributing in varying degrees to the electrical transmission.7. Presynaptic fibres innervating ciliary cells were from the start of lower threshold and faster conduction velocity than those innervating ciliary cells, as occurred in the adult. It is concluded that these preganglionic fibres were probably specified by the time transmission starts and that they selectively innervated the proper post-synaptic cells.

MeSH Terms
Animals Chick Embryo Chickens Choroid/innervation Ciliary Body/innervation Electrophysiology Ganglia, Autonomic/cytology,physiology Neostigmine/pharmacology Neural Conduction Oculomotor Nerve/physiology Physostigmine/pharmacology Synapses/physiology Synaptic Transmission Synaptic Vesicles/physiology
Chemicals
Neostigmine Physostigmine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Landmesser L
Pilar G
References (30)
30 references, click to expand
  1. DUAL MODE OF SYNAPTIC TRANSMISSION IN THE AVIAN CILIARY GANGLION.
    J Physiol. 1963 Sep;168:443-63 PMID: 14062687
  2. Temporary junctions between neoroblasts in the developing spinal ganglia of the domestic fowl.
    J Ultrastruct Res. 1967 Dec 12;21(3):233-50 PMID: 5587786
  3. Correlation between transmission and structure in avian ciliary ganglion synapses.
    J Physiol. 1969 Jun;202(2):339-54 PMID: 4306543
  4. [Relations between the distribution of acetylcholinesterase activity and that of ergastoplasm in the neurons of the ciliary ganglion of the chicken].
    Arch Anat Microsc Morphol Exp. 1965 Oct-Dec;54(4):937-63 PMID: 5861682
  5. Physiological studies during formation and development of rat neuromuscular junctions in tissue culture.
    J Gen Physiol. 1971 Oct;58(4):467-81 PMID: 5112661
  6. Onset and development of functional interneuronal connections in explants of rat spinal cord-ganglia during maturation in culture.
    Brain Res. 1967 Dec;6(4):750-62 PMID: 6080224
  7. AN ANALYSIS OF ELECTRICAL COUPLING AT SYNAPSES IN THE AVIAN CILIARY GANGLION.
    J Physiol. 1964 Jun;171:454-75 PMID: 14193934
  8. Degeneration in the nucleus of origin of the preganglionic fibers to the chick ciliary ganglion following early removal of the optic vesicle.
    J Exp Zool. 1968 May;168(1):105-23 PMID: 5700165
  9. The growth of synaptic endings in the mammalian brain: a study of the calyces of the trapezoid body.
    Z Anat Entwicklungsgesch. 1968 Nov 4;127(3):201-20 PMID: 5710348
  10. Characterization of two ganglion cell populations in avian ciliary ganglia.
    Brain Res. 1971 Jan 22;25(2):317-34 PMID: 4322855
  11. Ultrastructure and contractures of the pigeon iris striated muscle.
    J Physiol. 1971 Dec;219(2):253-66 PMID: 5003460
  12. Electrophysiological evidence for low-resistance intercellular junctions in the early chick embryo.
    J Cell Biol. 1968 Jun;37(3):650-9 PMID: 11905198
  13. Distribution of adrenergic nerves and changes in neuromuscular transmission in the mouse vas deferens during postnatal development.
    Dev Biol. 1970 Apr;21(4):491-505 PMID: 4315417
  14. Developmental aspects of synaptology with special emphasis upon the cerebellar cortex.
    UCLA Forum Med Sci. 1971;14:141-65 PMID: 4942372
  15. Innervation of skeletal muscle cells differentiated in vitro from chick embryo.
    Brain Res. 1971 Apr 2;27(2):402-5 PMID: 4251711
  16. ELECTRON MICROSCOPICAL STUDIES OF THE SYNAPSE IN THE DEVELOPING CHICK SPINAL CORD.
    Z Zellforsch Mikrosk Anat. 1964 Apr 9;62:356-62 PMID: 14218148
  17. Some observations on the fine structure of the synaptic area in the ciliary ganglion of the chick.
    Z Zellforsch Mikrosk Anat. 1965 Jul 15;67(2):174-84 PMID: 5883933
  18. The fine structure of the axon and growth cone of the dorsal root neuroblast of the rabbit embryo.
    J Cell Biol. 1970 Jan;44(1):62-79 PMID: 5409464
  19. The onset of synapse formation in spinal cord cultures as studied by electron microscopy.
    Brain Res. 1967 Dec;6(4):728-49 PMID: 6080223
  20. Fine structure of nerves in the regenerating limb of the newt Triturus.
    Am J Anat. 1967 Nov;121(3):647-69 PMID: 5582409
  21. Selective reinnervation of two cell populations in the adult pigeon ciliary ganglion.
    J Physiol. 1970 Nov;211(1):203-16 PMID: 5500994
  22. Experimental research on the origin of the ciliary ganglion in the chicken embryo.
    Arch Biol (Liege). 1947;58(3):265-88 PMID: 18920737
  23. Excitation and conduction in immature nerve fibers of the developing chick.
    Am J Physiol. 1957 Aug;190(2):371-6 PMID: 13458473
  24. Synaptic transmission and its duplication by focally applied acetylcholine in parasympathetic neurons in the heart of the frog.
    Proc R Soc Lond B Biol Sci. 1971 Apr 27;177(1049):509-39 PMID: 4396518
  25. [Electron microscopic investigation of the development of the autonomic (sympathetic trunk) and spinal ganglia in Gallus domesticus].
    Acta Neuroveg (Wien). 1967;30(1):427-44 PMID: 6080700
  26. Developmental changes in the structure of the synapse on the myelinated cell bodies of the chicken ciliary ganglion.
    J Cell Biol. 1965 Jun;25(3):Suppl:1-19 PMID: 5840798
  27. Junctions between intimately apposed cell membranes in the vertebrate brain.
    J Cell Biol. 1969 Mar;40(3):648-77 PMID: 5765759
  28. TRANSMISSION THROUGH THE CILIARY GANGLION OF THE CHICK.
    J Physiol. 1963 Sep;168:464-75 PMID: 14062688
  29. Effect of prostigmine on the time course of the end-plate potential in the rat diaphragm.
    J Physiol. 1971 Mar;213(3):533-44 PMID: 5551401
  30. Development of fine structure of spinal cord in monkey fetuses. II. Pre-reflex period to period of long intersegmental reflexes.
    J Comp Neurol. 1968 Jun;133(2):113-66 PMID: 4971353
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1972-05-00
Pages
691-713
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1331408
Subset
IM
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