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Fine structure of the dorsal latreral geniculate nucleus of the turtle, Emys orbicularis : A Golgi, combined hrp tracing and GABA immunocytochemical study
Author(s) -
Kenigfest N. B.,
Repérant J.,
Rio J.P.,
Belekhova M. G.,
Tumanova N. L.,
Ward R.,
Vesselkin N. P.,
Herbin M.,
Chkeidze D. D.,
Ozirskaya E. V.
Publication year - 1995
Publication title -
journal of comparative neurology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.855
H-Index - 209
eISSN - 1096-9861
pISSN - 0021-9967
DOI - 10.1002/cne.903560409
Subject(s) - neuropil , biology , axon , golgi apparatus , efferent , synaptic vesicle , horseradish peroxidase , immunocytochemistry , postsynaptic potential , nucleus , axon terminal , electron microscope , anatomy , microbiology and biotechnology , neuroscience , vesicle , central nervous system , endoplasmic reticulum , biochemistry , afferent , physics , receptor , membrane , endocrinology , optics , enzyme
The afferent and efferent cortical projections of the dorsal lateral geniculate nucleus (GLD) of adult specimens of the turtle Emys orbicularis were investigated after intraocular or intracortical injections of horseradish peroxidase (HRP), and the distribution of gamma aminobutyric acid (GABA) immunoreactivity in the nucleus was carried out by immunocytochemical techniques, both techniques being combined with light and electron microscopy. In addition, some specimens were prepared for double‐labeling of HRP and GABA immunoreactivity, and additional samples impregnated by a rapid Golgi technique. On purely morphological grounds, four types of neurons can be distinguished by light microscopy: two types of large cells in the cell plate which project to the cortex, and two types of smaller cells in the neuropil and optic tract which do not. The small cells are consistently GABA‐immunoreactive, while the former are, with extremely rare exceptions, immunonegative for GABA. The supposition that the small neurons of the neuropil are interneurons is supported by electron microscopic observations; these strongly GABA‐immunoreactive cells have large plicated nuclei surrounded by a thin layer of cytoplasm poorly endowed with organelles. The dendrites of these cells may contain pleomorphic synaptic vesicles (DCSVs) and appear to be presynaptic to other dendritic profiles. These DCSVs are occasionally contacted by GABA‐immunoreactive axon terminals, and more frequently by retinal terminals consistently immunonegative for GABA. The latter, frequently organized in glomeruli, also make synaptic contacts with immunonegative dendrites arising from corticopetal neurons of the cell plate. Two major categories of GABA‐immunoreactive axon terminals can be distinguished, and we are led to the conclusion that one of these represents an intrinsic GABAergic innervation of the GLD, while the second is tentatively interpreted as an extrinsic source of GABA to the nucleus, possibly from ventral thalamic structures. The fine structure of the dorsal lateral geniculate nucleus of Emys orbicularis thus shows many similarities with that of mammals. © 1995 Wiley‐Liss, Inc.

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