Somatic sensory cortex (SmI) of the prosimian primateGalago crassicaudatus: Organization of mechanoreceptive input from the hand in relation to cytoarchitecture
- 15 January 1980
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 189 (2), 249-271
- https://doi.org/10.1002/cne.901890204
Abstract
Mechanoreceptive input from the hand to the somatic sensory cortex (SmI) of the prosimian primate Galago crassicaudatus was examined with microelectrode mapping methods. In anesthetized animals, low threshold cutaneous input from the hand projects to SmI cortex in a single, complete, somatotopically organized pattern. Within this single pattern, cells with receptive fields on the glabrous skin of the palm, digits and digit tips are located in the rostral half, and cells with RFs on the hairy skin of the dorsal hand and digits are located in the caudal half of the hand area. The cutaneous hand area is coextensive with the densely granular architectonic region of SmI. Studies of single cells in this region of awake galagos reveal the same pattern of cutaneous input and, in addition, demonstrate the presence of cells responding to joint movement not detected in anesthetized animals. Cells responsive to joint movement are arranged in vertically oriented columns located adjacent to cutaneous columns with receptive fields on the same part of the hand. In anesthetized animals, cells rostral to the granular region, in an area typified by increasing numbers of pyramidal cells in layer V and decreasing numbers of granular cells in upper layers, respond to high threshold stimulation of large areas of the hand. The few cells isolated in this area in awake animals respond to either active or passive hand movements. In such animals, cells caudal to the granular region, in an area characterized as agranular and alaminar cortex, respond to either passive stimulation of single or multiple joints or to active hand movements. These results, together with similar findings in a related prosimian, Nycticebus coucang, emphasize the generality of a single cutaneous hand area in SmI of prosimian species. The demonstration of multiple hand areas corresponding to multiple cytoarchitectonic subdivisions in SmI of Old and New World simians illustrates the increased degree of SmI differentiation from the prosimian to the simian grade of organization. The present results further suggest that determination of the homologues of multiple areas or subdivisions within and surrounding SmI in primates will require comparisons of somatotopy, submodality, sulcal patterns, cytoarchitecture, and connectivity in representative members of prosimian and simian families.This publication has 33 references indexed in Scilit:
- Postcentral neurons in hand region of area 2: their possible role in the form discrimination of tactile objectsBrain Research, 1978
- Sensory projections to the cerebral cortex inPerodicticus potto edwarsi BouvierPrimates, 1977
- Some Morphological, Physiological and Behavioral Specializations in North American Beavers (Castor canadensis)Brain, Behavior and Evolution, 1976
- Lamination and differential distribution of thalamic afferents within the sensory‐motor cortex of the squirrel monkeyJournal of Comparative Neurology, 1975
- Origin, Course and Termination of Corticospinal Fibers in a Prosimian Primate (Galago)Brain, Behavior and Evolution, 1975
- Differential contributions of spinal pathways to body representation in postcentral gyrus of Macaca mulatta.Journal of Neurophysiology, 1974
- Somatosensory System: Organizational Hierarchy from Single Units in Monkey Area 5Science, 1971
- The cortico‐thalamic projections from the sensorimotor cortex of Galago crassicaudatusJournal of Comparative Neurology, 1969
- Use of the Hand in Lower PrimatesPublished by Elsevier ,1964
- On the thalamo-cortical connexions of the general sensory cortex of MacacaProceedings of the Royal Society of London. B. Biological Sciences, 1953