Synaptic organization of the dorsal lateral geniculate nucleus in the adult hamster
- 1 February 1985
- journal article
- research article
- Published by Springer Nature in Brain Structure and Function
- Vol. 171 (2) , 223-234
- https://doi.org/10.1007/bf00341417
Abstract
The synaptic organization of the α sector of the dorsal lateral geniculate nucleus has been examined by electron microscopy in normal adult hamsters and in adult hamsters subjected to unilateral eye enucleation or intravitreal injection of horseradish peroxidase. Two types of neuropil are apparent. Islands of complex neuropil partially enclosed by astrocyte processes (synaptic glomeruli) are surrounded by a sea of simpler non-glomerular neuropil. The latter is dominated by small axon terminals with spherical synaptic vesicles and Gray type 1 axodendritic contacts (SR-boutons) and also contains axon terminals with flattened synaptic vesicles (F-boutons). The glomerular neuropil contains (i) exclusively postsynaptic dendrites and dendritic protrusions of presumptive projection cells; (ii) pre- and postsynaptic pleomorphic-vesiclecontaining P-boutons (interpreted as appendages of the dendrites of interneurons); (iii) large axon terminals containing spherical synaptic vesicles and large pale mitochondria (R-boutons) which were experimentally identified as retinal terminals and which are presynaptic to both projection cell dendrites and P-boutons at Gray type 1 contacts; (iv) F-boutons (minority component). F-boutons and P-boutons are presynaptic to both projection cell dendrites and P-boutons and P-boutons are the intermediate elements of various serial synapses including triplet (triadic) synapses. Medium-large terminals with spherical synatpic vesicles and dark mitochondria (RLD-boutons) which were commonly invaginated by dendritic spines of projection cells in small glomerulus-like formations were also identified. The origin of RLD-boutons is unknown but SR-boutons probably derive chiefly from ipsilateral visual cortex and possibly also from superior colliculus, and non-glomerular F-boutons probably originate in the ipsilateral thalamic reticular nucleus. No differences in synaptic organization were found between the part of the nucleus which receives uncrossed retinal input and the part which receives crossed input, nor were differences seen in the size, fine structure or relationships between the terminals of identified crossed and uncrossed retinal axons.This publication has 61 references indexed in Scilit:
- Retinal ganglion cell death and terminal field retraction in the developing rodent visual systemDevelopmental Brain Research, 1984
- The normal and abnormal postnatal development of retinogeniculate projections in golden hamsters: An anterograde horseradish peroxidase tracing studyDevelopmental Brain Research, 1984
- Postnatal development of retinal projections in the brushtailed possum, Trichosurus vulpeculaDevelopmental Brain Research, 1982
- Retinal projections in adult and newborn grey squirrelsDevelopmental Brain Research, 1982
- The dorsal lateral geniculate nucleus of the normal ferret and its postnatal developmentJournal of Comparative Neurology, 1981
- Neuronal and synaptic structure of the dorsal lateral geniculate nucleus in normal and monocularly deprived Macaca monkeysJournal of Comparative Neurology, 1981
- SOME PROPERTIES OF INTRINSIC NEURONS OF THE DORSAL LATERAL GENICULATE NUCLEUS OF THE RATThe Japanese Journal of Physiology, 1977
- Cytological organization of the dorsal lateral geniculate nuclei in mutant anophthalmic and postnatally enucleated miceJournal of Neurocytology, 1976
- Aspects of the synaptic organization of intrinsic neurons in the dorsal lateral geniculate nucleusJournal of Neurocytology, 1974
- Neuronal and synaptic organization of the normal dorsal lateral geniculate nucleus of the squirrel monkey,Saimiri sciureusJournal of Comparative Neurology, 1972