Fundamental Properties of Intensity, Form, and Motion Perception in the Visual Nervous Systems of Calliphora phaenicia and Musca domestica
Open Access
- 1 April 1969
- journal article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 53 (4) , 385-413
- https://doi.org/10.1085/jgp.53.4.385
Abstract
Several classes of interneurons in the optic lobes and brain of the insects, Musca domestica and Calliphora phaenicia, have been studied in detail. Visual stimuli have been categorized on the basis of the properties of intensity, form, and motion. Response characteristics of the classes of neural units are described with respect to these three classes of visual stimuli. While those units that detect motion in select directions have a tonic response, form detection units have a phasic response only. Through correlation of the responses of these classes with visual stimuli, it is shown that these units integrate the responses of other units which have very small visual fields. The small-field units are presumed to integrate the output of a small group of adjacent retinula cells and to respond differentially to intensity, form, and motion. It is shown that the response of both form and motion detection units is independent of the direction of pattern intensity gradation. As a consequence of this independence, it is further shown that failure to detect motion properly must start at a spatial wavelength four times the effective sampling station spacing rather than twice as has been predicted previously.Keywords
This publication has 5 references indexed in Scilit:
- Motion detection by interneurons of optic lobes and brain of the flies Calliphora phaenicia and Musca domestica.Journal of Neurophysiology, 1968
- Neural correlates of the optomotor response in the flyBiological Cybernetics, 1967
- Patterns of projection in the visual system of the fly. I. Retina-lamina projectionsExperimental Brain Research, 1967
- Optomotor response studies of insect visionProceedings of the Royal Society of London. B. Biological Sciences, 1965
- Optomotorische Reaktionen der Fliege Musca DomesticaBiological Cybernetics, 1963