Retrograde degeneration of myelinated axons and re-organization in the optic nerves of adult frogs (Xenopus laevis) following nerve injury or tectal ablation
- 1 April 1985
- journal article
- research article
- Published by Springer Nature in Journal of Neurocytology
- Vol. 14 (2) , 221-244
- https://doi.org/10.1007/bf01258449
Abstract
The optic nerve proximal to the lesion (toward the retina) was examined by light and electron microscopy in adultXenopus laevis after various types of injury to optic nerve fibres. Intraorbital resection, transection or crush of the optic nerve or ablation of the contralateral optic tectum all resulted in marked alterations in the myelinated axon population and in the overall appearance of the nerve proximal to the site of injury. Examination of the nerves from 3 days to 6 months postoperatively indicated that a progressive, retrograde degeneration of myelin and loss of large-diameter axons occurred throughout the retinal nerve stump regardless of the type of injury or distance of the injury from the retina. The retinal stump of nerves receiving resection or transection showed a nearly complete loss of myelin and large-diameter axons while the degree of degeneration was subtotal in nerves receiving crush injury or after lesions farther from the retina (i.e. tectal ablation). In addition, the entire retinal nerve stump after all types of injury was characterized by the appearance of an actively growing axon population situated circumferentially under the glia limitans. The latter fibres are believed to represent regrowing axons which are being added onto the nerve, external to the original axon population and are suspected to modify actively the glial terrain and glia limitans.This publication has 30 references indexed in Scilit:
- Axonal interactions with connective tissue and glial substrata during optic nerve regeneration in Xenopus larvae and adultsJournal of Anatomy, 1982
- Anomalous axonal outgrowth at the retina caused by injury to the optic nerve or tectal ablation in adultXenopusJournal of Neurocytology, 1982
- Retinal ganglion cell death and regeneration of abnormal retinotectal projections after removal of a segment of optic nerve in Xenopus tadpolesDevelopmental Biology, 1981
- Will central nervous systems in the adult mammal regenerate after bypassing a lesion? A study in the mouse and chick visual systemsExperimental Neurology, 1980
- Ensheathment and myelination of regenerating PNS fibres by transplanted optic nerve gliaNeuroscience Letters, 1978
- Developmental NeurobiologyPublished by Springer Nature ,1978
- Axonal guidance of developing optic nerves in the frog. I. Anatomy of the projection from transplanted eye primordiaJournal of Comparative Neurology, 1976
- The role of ependyma in spinal cord regeneration in the urodele, TriturusExperimental Neurology, 1972
- Preferential selection of central pathways by regenerating optic fibersExperimental Neurology, 1963
- Changes in conduction velocity and fibre size proximal to peripheral nerve lesionsThe Journal of Physiology, 1961