Attention-regulated activity in human primary visual cortex.
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Summary
To the knowledge, this is the first finding that attention to motion activates as early as area V1, and it is suggested that attentional activation of area V 1 is task dependent.
- Type
- article
- Published
- 1998-04-01
- Cited by
- 157
- References
- 32
- OpenAlex
- https://openalex.org/W1781433246
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:945007
Keywords
Visual cortex, Neuroscience, Psychology, Primary motor cortex, Communication
References
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Cited by
- The retinotopy of visual spatial attention.
- Automatic gain control contrast mechanisms are modulated by attention in humans: evidence from visual evoked potentials.
- Attentional modulation of threshold sensitivity to first-order motion and second-order motion patterns.
- Recognition of Objects in Non-Canonical Views: A Functional MRI Study
- The Nature of Consciousness: A Hypothesis
- Papel de las ráfagas de potenciales de acción en la detección de estímulos visuales en primates : regulación por la vía córtico-talámica
- THE PAST 25 YEARS
- Mécanismes et bases cérébrales du traitement des fréquences spatiales lors de la catégorisation de scènes visuelles
- Plasticity in the Visual System
- Status of the ITER ICRF system design—‘Externally Matched’ approach
- Perceptual learning without perception
- The contribution of brain reorganisation to recovery inpatients with optic neuritis
- Selective attention, ideal observer theory and 'early' visual channels.
- Control of Cognitive Processes
- The Complementary Brain: A Unifying View of Brain Specialization and Modularity
- Effects of Attention on Pattern-Reversal Visual Evoked Potentials: Foveal Field Stimulation Versus Peripheral Field Stimulation
- Information integration and neural plasticity in sensory processing investigated at the levels of single neurons, networks, and perception
- Dynamic visual attention: competitive versus motion priority scheme
- Task-related modulation of visual cortex.
- Reproducibility of visual activation in functional MR imaging and effects of postprocessing.
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