Development of intersecting CNS fiber tracts: The corpus callosum and its perforating fiber pathway
- 8 June 1988
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 272 (2) , 177-190
- https://doi.org/10.1002/cne.902720203
Abstract
What are the mechanisms acting during development at points of intersection of central nervous system fiber tracts which influence the direction taken by a population of growing axons? In order to address this question, the ontogeny of the intersecting rostral corpus callosum and its perforating fiber pathway (PF), and the microenvironment through which these fiber systems grow, were examined in a series of mouse embryos and early postnates. Our results show that the perforating fibers are identifiable in silverstained sections between embryonic days (E) 15 and 16, at least 1 day prior to the initial appearance of the callosal projection. Soon after the PF can be identified, a dense accumulation of subventricular cells surrounds the PF at a point just ventral to the location where the callosum and PF will intersect (i.e., at the corticoseptal boundary). Callosal axons, which are present at the point of intersection beginning on E17, do not join the perforating fibers, nor do they appear to penetrate the underlying population of subventricular cells. Instead, the callosal fibers turn across the PF and enter the contralateral cerebral hemisphere. Thus, the intersection of the callosal and perforating fiber systems during development may be related both to the sequential development of each pathway and to the altered nonneuronal environment at the point of intersection.Keywords
This publication has 54 references indexed in Scilit:
- Embryogenesis of peripheral nerve pathways in grasshopper legsDevelopmental Biology, 1983
- Extracellular matrix during laminar pattern formation of neocortex in normal and reeler mutant miceDevelopmental Biology, 1983
- The early formation of the corpus callosum: a light and electron microscopic study in foetal and neonatal ratsJournal of Neurocytology, 1982
- Morphology and position of growth cones in the developing Xenopus spinal cordDevelopmental Brain Research, 1982
- Oriented extracellular channels and axonal guidance in the embryonic chick retinaDevelopmental Biology, 1981
- Effects of fasciculation on the outgrowth of neurites from spinal ganglia in culture.The Journal of cell biology, 1980
- Responses to cell contacts between growth cones, neurites and ganglionic non-neuronal cellsJournal of Neurocytology, 1980
- Axonal guidance during embryogenesis and regeneration in the spinal cord of the newt: The blueprint hypothesis of neuronal pathway patterningJournal of Comparative Neurology, 1979
- Adhesion among neural cells of the chick embryo. IV. Role of the cell surface molecule CAM in the formation of neurite bundles in cultures of spinal ganglia.The Journal of cell biology, 1978
- Studies on the developing cerebellums. Ultrastructure of the growth conesJournal of Comparative Neurology, 1968