Visual performance of the toad (Bufo bufo) at low light levels: retinal ganglion cell responses and prey-catching accuracy
- 1 June 1993
- journal article
- Published by Springer Nature in Journal of Comparative Physiology A
- Vol. 172 (6) , 671-682
- https://doi.org/10.1007/bf00195393
Abstract
The accuracy of toad snapping towards moving worm dummies under various levels of dim illumination (from absolute threshold to “moonlight”) was videorecorded and related to spike responses of retinal ganglion cells exposed to equivalent stimuli. Some toads (at ca. 16 °C) successfully snapped at dummies that produced only one photoisomerization per 50 rods per second in the retina, in good agreement with thresholds of sensitive retinal ganglion cells. One factor underlying such high sensitivity is extensive temporal summation by the ganglion cells. This, however, is inevitably accompanied by very long response latencies (around 3 s near threshold), whereby the information reaching the brain shows the dummy in a position where it was several seconds earlier. Indeed, as the light was dimmed, snaps were displaced successively further to the rear of the dummy, finally missing it. The results in weak but clearly supra-threshold illumination indicate that snaps were aimed at the advancing head as seen by the brain, but landed further backwards in proportion to the retinal latency. Near absolute threshold, however, accuracy was “too good”, suggesting that the animal had recourse to a neural representation of the regularly moving dummies to correct for the slowness of vision.Keywords
This publication has 19 references indexed in Scilit:
- Visual latency and brightness: An interpretation based on the responses of rods and ganglion cells in the frog retinaVisual Neuroscience, 1989
- Low retinal noise in animals with low body temperature allows high visual sensitivityNature, 1988
- Adaptation-related changes in the spatial and temporal summation of frog retinal ganglion cellsActa Physiologica Scandinavica, 1987
- Effects of temperature changes on toad rod photocurrents.The Journal of Physiology, 1983
- Receptive fields of frog retinal ganglion cells: response formation and light‐dark‐adaptation.The Journal of Physiology, 1981
- Two components of electrical dark noise in toad retinal rod outer segments.The Journal of Physiology, 1980
- RESPONSES OF RETINAL RODS TO SINGLE PHOTONS1979
- The electrical response of turtle cones to flashes and steps of lightThe Journal of Physiology, 1974
- Movement-sensitive neurones in the toad's retinaExperimental Brain Research, 1972
- Anatomy and Physiology of Vision in the Frog (Rana pipiens)The Journal of general physiology, 1960