The chandelier cell of the human visual cortex: A Golgi study
- 1 February 1987
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 256 (1) , 61-70
- https://doi.org/10.1002/cne.902560106
Abstract
The size, location, distribution, and spatial orientation of the chandelier cell of the human visual cortex are described for the first time. The rapid Golgi method has been utilized to study the structural features of these inhibitory interneurons. The human chandelier cell is a small stellate interneuron with prominent idiodendritic and idioaxonic arborizations. These arborizations are distributed within a narrow rectangular tissue slab that measures approximately 300 × 200 × 100 m̈m. This relatively small and narrow functional territory is oriented perpendicular to the pial surface and to the long axis of the gyrus. The territory of distribution of its axon is larger than and encloses that of its dendrites. The number of specific axonic terminals (candles) per chandelier cell is also relatively small, ranging from 60 to 80 units. These axonic terminals represent the functional units of the neuron and reflect the number of pyramidal cell axons contacted by it. The chandelier cell of the human visual cortex possibly represents the smallest neuron of this kind described to date. The size of its functional territory and the number of its specific axonic terminals are among the smallest of any neuron of this kind thus far described. It is postulated herein that in the course of mammalian phylogeny the chandelier cell shows a tendency toward a progressive reduction in the size of its functional territory and in the number of its functional units (candles), as well as a tendency toward a more “idio” pattern of distribution for its axonic and dendritic arborizations. Perhaps, these progressive evolutionary modifications could reflect a tendency of this type of interneuron toward an increasing specialization. The possible existence of a relationship between the progressive transformation of the chandelier cell and the increasing visual acuity, dexterity, and skillfulness in the course of mammalian phylogeny should be explored.Keywords
This publication has 20 references indexed in Scilit:
- Development, morphology and topography of chandeller cells in the auditory cortex of the catDevelopmental Brain Research, 1985
- Anatomical organization of primate visual cortex area VIIJournal of Comparative Neurology, 1981
- A specialized type of neuron in the visual cortex of cat: A Golgi and electron microscope study of chandelier cellsJournal of Comparative Neurology, 1980
- Anatomical organization of the primary visual cortex (area 17) of the cat. A comparison with area 17 of the macaque monkeyJournal of Comparative Neurology, 1979
- Specific Thalamo-cortical Afferents and their Presumptive Targets in the Visual Cortex. A Golgi StudyPublished by Elsevier ,1979
- Varieties and distribution of non‐pyramidal cells in the somatic sensory cortex of the squirrel monkeyJournal of Comparative Neurology, 1975
- Three-dimensional reconstruction of the pericellular nests (baskets) of the motor (area 4) and visual (area 17) areas of the human cerebral cortexBrain Structure and Function, 1974
- Early prenatal ontogenesis of the cerebral cortex (neocortex) of the cat (Felis domestica). A Golgi studyBrain Structure and Function, 1971
- Prenatal and early postnatal ontogenesis of the human motor cortex: A Golgi study. II. The basket-pyramidal systemBrain Research, 1970
- Prenatal and early postnatal ontogenesis of the human motor cortex: A Golgi study. I. The sequential development of the cortical layersBrain Research, 1970