Independence and merger of thalamocortical channels within macaque monkey primary visual cortex: Anatomy of interlaminar projections
- 1 May 1994
- journal article
- research article
- Published by Maximum Academic Press in Visual Neuroscience
- Vol. 11 (3) , 467-489
- https://doi.org/10.1017/s0952523800002406
Abstract
An important issue in understanding the function of primary visual cortex in the macaque monkey is how the several efferent neuron groups projecting to extrastriate cortex acquire their different response properties. To assist our understanding of this issue, we have compared the anatomical distribution of VI intrinsic relays that carry information derived from magno- (M) and parvocellular (P) divisions of the dorsal lateral geniculate nucleus between thalamic recipient neurons and interareal efferent neuron groups within area VI. We used small, iontophoretic injections of biocytin placed in individual cortical laminae of area VI to trace orthograde and retrograde inter- and intralaminar projections. In either the same or adjacent sections, the tissue was reacted for cytochrome oxidase (CO), which provides important landmarks for different efferent neuron populations located in CO rich blobs and CO poor interblobs in laminae ⅔, as well as defining clear boundaries for the populations of efferent neurons in laminae 4A and 4B. This study shows that the interblobs, but not the blobs, receive direct input from thalamic recipient 4C neurons; the interblobs receive relays from mid 4C neurons (believed to receive convergent M and P inputs), while blobs receive indirect inputs from either M or P (or both) pathways through layers 4B (which receives M relays from layer 4Cα) and 4A (which receives P relays directly from the thalamus as well as from layer 4Cβ). The property of orientation selectivity, most prominent in the interblob regions and in layer 4B, may have a common origin from oriented lateral projections made by mid 4C spiny stellate neurons. While layer 4B efferents may emphasize M characteristics and layer 4A efferents emphasize P characteristics, the dendrites of their constituent pyramidal neurons may provide anatomical access to the other channel since both blob and interblob regions in layers ⅔ have anatomical access to M and P driven relays, despite functional differences in the way these properties may be expressed in the two compartments.Keywords
This publication has 40 references indexed in Scilit:
- Comparison of Intrinsic Connectivity in Different Areas of Macaque Monkey Cerebral CortexCerebral Cortex, 1993
- Laminar Distribution of Neurons Projecting from Area V1 to V2 in Macaque and Squirrel MonkeysCerebral Cortex, 1992
- Local circuit neurons of macaque monkey striate cortex: III. Neurons of laminae 4B, 4A, and 3BJournal of Comparative Neurology, 1991
- Local circuit neurons of macaque monkey striate cortex: II. Neurons of laminae 5B and 6Journal of Comparative Neurology, 1988
- Background light and the contrast gain of primate P and M retinal ganglion cells.Proceedings of the National Academy of Sciences, 1988
- Local circuit neurons of macaque monkey striate cortex: I. Neurons of laminae 4C and 5AJournal of Comparative Neurology, 1987
- Specificity of cortico-cortical connections in monkey visual systemNature, 1983
- Ferrier lecture - Functional architecture of macaque monkey visual cortexProceedings of the Royal Society of London. B. Biological Sciences, 1977
- Interlaminar connections and pyramidal neuron organisation in the visual cortex, area 17, of the Macaque monkeyJournal of Comparative Neurology, 1975
- Organization of neurons in the visual cortex, area 17, of the monkey (Macaca mulatta)Journal of Comparative Neurology, 1973