Morphology of central terminations of intra‐axonally stained, large, myelinated primary afferent fibers from facial skin in the rat
- 8 July 1985
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 237 (2) , 195-215
- https://doi.org/10.1002/cne.902370205
Abstract
Horseradish peroxidase was intra‐axonally injected into functionally identified primary afferent fibers within the rat spinal trigeminal tract in order to study the morphology of their central terminations. They were physiologically determined to be large, myelinated, cutaneous primary afferents by means of electrical and mechanical stimulation of their receptive fields. Ninety‐three axons that innervated vibrissa follicles, guard hair follicles, and slowly adapting receptors were stained for distances of 4–12 mm at the levels of the main sensory nucleus, spinal trigeminal nucleus, and rostral cervical spinal cord. The collaterals of single axons from these receptors formed terminal arbors in the outer part of the spinal trigeminal nucleus rostral to and near the level of the obex (rostral type collaterals). In the rostral part of the subnucleus caudalis (Vc) they were confined to lamina V (caudalis type collaterals) and in the caudal part of Vc and in cervical segments they were confined to lamina III/IV (spinal‐dorsal‐horn‐type collaterals). There were no transitional forms between the rostral and caudalis types, but there was a transitional form between the caudalis and spinal dorsal horn types. This transitional form was distributed in laminae III/IV and V. The terminal arbors of the rostral type of collaterals formed an interrupted, rostrocaudally oriented column like those seen in the lumbar dorsal horn, but the column shifted down to lamina V near the obex, and more caudally, gradually shifted upward to lamina III. Major morphological differences were not observed among the three different functional types of collaterals with respect to the rostrocaudal distribution of collaterals, and the shape and location of collaterals. The differential laminar distribution of collateral arbors of single axons along the rostrocaudal axis distinguishes the spinal trigeminal nucleus from the spinal dorsal horn where functional types of mechanoreceptive afferents form continuous or interrupted sagittal columns of terminal arbors that do not shift dorsoventrally within segments.Keywords
This publication has 30 references indexed in Scilit:
- Organization in the Spinal CordPublished by Springer Nature ,1981
- Projections from Pacinian corpuscles and rapidly adapting mechanoreceptors of glabrous skin to the cat's spinal cord.The Journal of Physiology, 1980
- The morphology of hair follicle afferent fibre collaterals in the spinal cord of the catThe Journal of Physiology, 1977
- Somatotopic organization of mechanoreceptor units in the trigeminal nuclear complex of the macaqueJournal of Comparative Neurology, 1968
- Somatotopic organization in the spinal trigeminal nucleus, the dorsal column nuclei and related structures in the ratJournal of Comparative Neurology, 1967
- THF EARLY STAGES OF ABSORPTION OF INJECTED HORSERADISH PEROXIDASE IN THE PROXIMAL TUBULES OF MOUSE KIDNEY: ULTRASTRUCTURAL CYTOCHEMISTRY BY A NEW TECHNIQUEJournal of Histochemistry & Cytochemistry, 1966
- Proceedings of the Physiological Society, 25 May 1963, The Cambridge Meeting: DemonstrationsThe Journal of Physiology, 1963
- A single-neurone investigation of somatotopic organization within the cat's trigeminal brain-stem nucleiThe Journal of Physiology, 1963
- Afferent connections to the sensory trigeminal nuclei, the nucleus of the solitary tract and adjacent structures. An experimental study in the ratJournal of Comparative Neurology, 1956
- On the anatomical and functional organization of the spinal trigeminal nucleusJournal of Comparative Neurology, 1950