Interlaminar and lateral excitatory amino acid connections in the striate cortex of monkey
Open Access
- 1 February 1989
- journal article
- research article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 9 (2) , 667-682
- https://doi.org/10.1523/jneurosci.09-02-00667.1989
Abstract
The intrinsic excitatory amino acid pathways within the striate cortex of monkeys were studied by autoradiographic detection of retrogradely labeled somata following microinjections of D-3H-aspartate (D-3H-Asp) into different layers. The labeled amino acid was selectively accumulated by subpopulations of neurons and, to a small extent, by glial cells, the latter mainly in the supragranular layers. Immunocytochemical detection of neurons containing GABA showed that, apart from a few cells exclusively in layer I, GABAergic neurons do not accumulate D-3H-Asp. Several lines of evidence suggest that D-3H-Asp uptake occurred only at nerve terminals; thus, the pattern of perikaryal labeling allowed the delineation of interlaminar and lateral projections. Neurons in layer I probably project laterally, and layer I receives wide-ranging projections from layer IVB and layer V from cells up to 1300 microns laterally. Some neurons in layer II send a focused projection to lower layer VI. Some neurons in layers II/III project up to 1 mm laterally within their own layer, but relatively few neurons can be labeled in these projections. Similarly, in layers II/III few neurons can be retrogradely labeled from layers V and upper VI, and this projection is organized such that cells closer to the pia project deeper in layer V/VI. The connections of layer IVA could not be revealed separately because of the difficulty of confining injections to this thin sublamina. Neurons in layer IVB project up to 1300 microns within IVB itself. A small number of cells from IVB also project to layers III, IVC-alpha, V, and VI with much more restricted lateral spread. Neurons in upper IVC-alpha send axons to layer IVB with at least 600–800 microns lateral spread. Neurons in lower IVC-alpha/upper IVC-beta project to layer III with at least 300–500 microns lateral spread. The bottom 50–80 microns of layer IVC-beta contains neurons with a very focused projection, apparently exclusively to the layer III/IVA border region. Both layers IVC alpha and beta have rich connections within themselves, the beta sublayer having more restricted lateral connections. Some neurons in layer IVC-beta give a laterally restricted small input to layers IVC-alpha and IVB. Both IVC-alpha and - beta project to layers V and VI, and these projections are spread at least 400 microns laterally. Neurons in layer V project to all layers, but the projection to layers I-III and within layer V itself spread much further laterally than the projections to layers IV and VI.(ABSTRACT TRUNCATED AT 400 WORDS)This publication has 34 references indexed in Scilit:
- NEURO-PHARMACOLOGICAL PROPERTIES OF ELECTROPHYSIOLOGICALLY IDENTIFIED, VISUALLY RESPONSIVE NEURONS OF THE POSTERIOR LATERAL SUPRASYLVIAN AREA - A MICROIONTOPHORETIC STUDY1983
- Selective retrograde transport of d-aspartate in spinal interneurons and cortical neurons of ratsBrain Research, 1982
- Selectivity of neuronal [3H]GABA accumulation in the visual cortex as revealed by Golgi staining of the labeled neuronsBrain Research, 1981
- Ordinal position and afferent input of neurons in monkey striate cortexJournal of Comparative Neurology, 1980
- Selective retrograde labeling indicating the transmitter of neuronal pathwaysJournal of Comparative Neurology, 1980
- Columnar cortico-cortical interconnections within the visual system of the squirrel and macaque monkeysBrain Research, 1979
- The neurological organization of pathways between the dorsal lateral geniculate nucleus and visual cortex in old world and new world primatesJournal of Comparative Neurology, 1978
- Columnar distribution of cortico-cortical fibers in the frontal association, limbic, and motor cortex of the developing rhesus monkeyBrain Research, 1977
- Receptive fields and functional architecture of monkey striate cortexThe Journal of Physiology, 1968
- Iontophoretic studies of neurones in the mammalian cerebral cortexThe Journal of Physiology, 1963