Deep tectal cells in pigeons respond to kinematograms
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Summary
It is demonstrated that deep tectal neurons in pigeons respond equally well to kinematograms as they do to traditional luminance contrast stimuli typically employed in visual experiments, and this similarity included directional selectivity, the in-phase inhibition anti-phase facilitation effect, and sensitivity to opposed motion independent of direction.
- Type
- review
- Published
- 1988-04-01
- Cited by
- 36
- References
- 33
- OpenAlex
- https://openalex.org/W3373454
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:23197703
Keywords
Fish , Juvenile, Base (topology), Fishery, Biology
References
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Cited by
- Microconnectomics of the pretectum and ventral thalamus in the chicken (Gallus gallus)
- Behavioral Evidence and Neural Correlates of Perceptual Grouping by Motion in the Barn Owl
- Perception and processing of illusory contours
- On the neural encoding of object information : a model simulation study of the fly lobula plate network
- Integrating brain, behavior, and phylogeny to understand the evolution of sensory systems in birds
- A Taxonomy of Different Forms of Visual Motion Detection and Their Underlying Neural Mechanisms
- Spatial organization of the pigeon tectorotundal pathway: An interdigitating topographic arrangement
- Figure-ground discrimination in the avian brain: The nucleus rotundus and its inhibitory complex
- Local motion processing in the optic tectum of the Japanese toad, Bufo japonicus
- The optic tectum of birds: mapping our way to understanding visual processing.
- Responses of toad's tectal neurons to in-phase and anti-phase movements of object and textured background
- Visual perception of texture in aggressive behavior of Betta splendens
- The visual response properties of neurons in the nucleus of the basal optic root of the pigeon: a quantitative analysis
- Mapping of the Receptive Fields in the Optic Tectum of Chicken (Gallus gallus) Using Sparse Noise
- Responses of Tectal Neurons to Contrasting Stimuli: An Electrophysiological Study in the Barn Owl
- Visual response characteristics of neurons in the nucleus isthmi magnocellularis and nucleus isthmi parvocellularis of pigeons
- Distributed Dendritic Processing Facilitates Object Detection: A Computational Analysis on the Visual System of the Fly
- Bilateral and Ipsilateral Ascending Tectopulvinar Pathways in Mammals: A Study in the Squirrel (Spermophilus beecheyi)
- Purkinje cells in the vestibulocerebellum of the pigeon respond best to either translational or rotational wholefield visual motion
- How owls structure visual information
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