Cortical fMRI activation produced by attentive tracking of moving targets.
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Summary
FMRI results suggest that attentive tracking is mediated by a network of areas that includes parietal and frontal regions responsible for attention shifts and eye movements and the MT complex, thought to be responsible for motion perception.
- Type
- article
- Published
- 1998-11-01
- Cited by
- 566
- References
- 90
- OpenAlex
- https://openalex.org/W1926876413
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:14600496
Keywords
Intraparietal sulcus, Functional magnetic resonance imaging, Psychology, Posterior parietal cortex, Frontal eye fields
References
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- Low-level and high-level processes in apparent motion.
- Representation of motion boundaries in retinotopic human visual cortical areas
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- Many areas in the human brain respond to visual motion.
- Attention-regulated activity in human primary visual cortex.
- A PET study of visuospatial attention
- Attention-generated apparent motion
- Visual working memory for shape and 3D‐orientation: a PET study
- Location and function of the human frontal eye-field: a selective review.
- Evidence for the lateral intraparietal area as the parietal eye field.
- Functional neuroanatomy of antisaccade eye movements investigated with positron emission tomography.
Cited by
- The retinotopy of visual spatial attention.
- The generality of parietal involvement in visual attention.
- Object temporal connotation.
- Common Neural Mechanisms for Response Selection and Perceptual Processing
- Determinants and mechanisms of attentional modulation of neural processing.
- Abrupt and ramped flicker-defined form shows evidence for a large magnocellular impairment in dyslexia.
- The neural representation of plural discourse entities.
- Early Left Parietal Activity Elicited by Direct Gaze: A High-Density EEG Study
- The Nature of Consciousness: A Hypothesis
- Attention — brains at work!
- Dimension-based Processing in Visual Pop-out Search
- Functional Magnetic Resonance Imaging Studies of Visual Motion Processing in the Human Brain
- Gehirn-Computer-Interfaces: Neuroanatomische Korrelate der SCP-Kontrolle
- Low-level visual cortex and motion perception: an MRI study. (Système visuel cortical de bas niveau et perception du mouvement: une caractérisation par IRM)
- Modality-independent neural mechanisms for novel phonetic processing.
- Effect of reduced visual acuity on precision of two-dimensional tracing movements
- Things and Places: How the Mind Connects with the World
- The effect of occlusion therapy on motion perception deficits in amblyopia.
- Formes et mouvements : de la perception à l'action
- Temporal Limits of Multiple Object Tracking and Resource Theory
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