Changing Patterns of Vasculature in the Developing Amphibian Retina
Open Access
- 1 September 1997
- journal article
- Published by The Company of Biologists in Journal of Experimental Biology
- Vol. 200 (18) , 2479-2492
- https://doi.org/10.1242/jeb.200.18.2479
Abstract
Patterns of vascularisation were examined in whole-mounted retinae from tadpole stages to adulthood in the tree frog Litoria moorei using perfusion with Indian ink. Changing cell densities in the underlying ganglion cell layer were studied in a parallel Cresyl-stained series. Throughout development, the vasculature was pan-retinal and the hyaloid vessel was prominent. In early tadpole stages, capillaries were arranged as a honeycomb, and their number increased at a rate sufficient to maintain high densities in the face of increasing retinal area; major arteries and veins condensed within the capillary network. By early post-metamorphic life, the retinal vasculature was remodelled by the loss of four-fifths of the capillaries; the reduction in their density was far greater than could be accounted for by continuing retinal growth. This loss resulted in a change from the honeycomb appearance to one with largely parallel vessels linked by fewer connecting ones, an arrangement that became increasingly pronounced. In post-metamorphic life, the number of branch points increased such that their density decreased only slightly in the face of considerable increases in retinal area. The density of branch points varied across the retina and changed with age. Initially, the vasculature was most dense centrally, but by mid-larval life densities were highest in two patches located in the mid-temporal and mid-nasal retina. Thereafter, the vasculature increasingly assumed gradients resembling an area centralis and visual streak, a profile that survived the vascular remodelling. The development of density gradients in the vasculature preceded that of cells in the ganglion cell layer, the latter appearing only following metamorphosis. However, in post-metamorphic life, the topographies of the retinal vasculature and cells in the ganglion cell layer were closely related.Keywords
This publication has 52 references indexed in Scilit:
- Transient neovascularisation of the frog retina during optic nerve regenerationJournal of Comparative Neurology, 1993
- Development of retinal vasculature in the cat: processes and mechanismsCurrent Eye Research, 1990
- Diffusion of O2 in the retina of anesthetized miniature pigs in normoxia and hyperoxiaExperimental Eye Research, 1989
- Nonuniform retinal expansion during the formation of the rabbit's visual streak: Implications for the ontogeny of mammalian retinal topographyVisual Neuroscience, 1989
- Ontogeny of the area centralis in the catJournal of Comparative Neurology, 1987
- Non‐uniform postnatal growth of the cat retinaJournal of Comparative Neurology, 1984
- Uniformity of cell distribution in the ganglion cell layer of prenatal cat retina: Implications for mechanisms of retinal developmentDevelopmental Brain Research, 1981
- A quantitative analysis of the cat retinal ganglion cell topographyJournal of Comparative Neurology, 1975
- ON THE FALCIFORM PROCESS, VITREAL VESSELS AND OTHER RELATED STRUCTURES OF THE TELEOST EYENIPPON SUISAN GAKKAISHI, 1959
- The role of intraocular pressure in the development of the chick eye. I. Control of eye sizeJournal of Experimental Zoology, 1956