Rapid adaptation of saccadic amplitude in humans and monkeys.
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Summary
Induced saccadic dysmetria provides a tool for the study of adaptive motor learning in the oculomotor system and it is hypothesized that the adaptive mechanism may use either or both of two signals: a visual error signal representing the retinal distance of the target from the fovea after the initial saccades and/or a motor error signal represented by the amplitude of the corrective saccade.
- Type
- article
- Published
- 1989-08-01
- Cited by
- 93
- References
- 18
- OpenAlex
- https://openalex.org/W42167922
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:38422696
Keywords
Saccade, Saccadic masking, Dysmetria, Saccadic suppression of image displacement, Computer science
References
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- Fundamental statistics in psychology and education
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Cited by
- Coordinate System for Learning in the Smooth Pursuit Eye Movements of Monkeys
- The role of the cerebellum in saccadic adaptation as a window into neural mechanisms of motor learning
- A Study of Saccade Dynamics and Adaptation in Athletes and Non Athletes
- Saccades in the absence of binocular vision
- Saccadic gain modification: visual error drives motor adaptation.
- Reduced saccadic resilience and impaired saccadic adaptation due to cerebellar disease
- Express saccades and visual attention
- Adaptive changes in saccade amplitude: oculocentric or orbitocentric mapping?
- Express saccades: A separable population?
- Monkey superior colliculus activity during short-term saccadic adaptation.
- Selective and delay adaptation of human saccades.
- Does saccadic undershoot minimize saccadic flight-time? A Monte-Carlo study.
- Visual error is the stimulus for saccade gain adaptation.
- La plasticité de la transformation sensori-motrice dans le système visuel : l’adaptation saccadique
- Separate populations of visually guided saccades in humans: reaction times and amplitudes
- Salient Distractors Can Induce Saccade Adaptation
- Visual Issues In The Use Of A Head-Mounted Monocular Display
- Saccade Adaptation as a Model of Flexible and General Motor Learning
- Learning and Maintaining Saccadic Accuracy: A Model of BrainstemCerebellar Interactions
- The express saccade: Autobahn or short circuit of the brain?
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