“What”—Then—“Where” in Visual Working Memory: An Event-Related fMRI Study
- 1 November 1999
- journal article
- Published by MIT Press in Journal of Cognitive Neuroscience
- Vol. 11 (6) , 585-597
- https://doi.org/10.1162/089892999563652
Abstract
Behavioral studies indicate that spatial and object working memory are computed by dissociable subsystems. We investigated the neural bases of this dissociation with a whole-brain fMRI design and analysis technique that permitted direct assessment of delay-period activity, uncontaminated by other components of the trial. The task employed a "what"-then-"where" design, with an object and a spatial delay period incorporated in each trial; within-trial order of delay conditions was balanced across each scan. Our experiment failed to find evidence, at the single-subject level and at the group level, for anatomical segregation of spatial and object working memory function in the frontal cortex. Delay-period activity in the caudate nucleus revealed a sensitivity to position in the trial in the spatial, but not the object, condition. In posterior regions, spatial delay-period activity was associated with preferential recruitment of extrastriate areas falling within Brodmann's area 19 and, less reliably, the superior parietal lobule. Object-specific delay-period activity was found predominantly in ventral regions of the posterior cortex and demonstrated more topographic variability across subjects than did spatial working memory activity.Keywords
This publication has 54 references indexed in Scilit:
- An Area within Human Ventral Cortex Sensitive to “Building” StimuliNeuron, 1998
- Functional MRI studies of spatial and nonspatial working memoryCognitive Brain Research, 1998
- Dissociation of mnemonic and perceptual processes during spatial and nonspatial working memory using fMRIHuman Brain Mapping, 1998
- Active Representation of Shape and Spatial Location in ManCerebral Cortex, 1996
- Fully three-dimensional nonlinear spatial normalisation: A new approachNeuroImage, 1996
- Visual feature selectivity in frontal eye fields induced by experience in mature macaquesNature, 1996
- Object and Spatial Visual Working Memory Activate Separate Neural Systems in Human CortexCerebral Cortex, 1996
- Attentional Modulation of Neural Processing of Shape, Color, and Velocity in HumansScience, 1990
- Parallel Organization of Functionally Segregated Circuits Linking Basal Ganglia and CortexAnnual Review of Neuroscience, 1986
- The quantitative study of shape and pattern perception.Psychological Bulletin, 1956