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Double dissociation in neural correlates of visual working memory: a PET study
J Ventre-Dominey1, A Bailly, F Lavenne
1INSERM and CNRS-Cognitive Sciences Institute-UMR5015, 67 Bd Pinel, 69500 Bron, France. ventre@isc.cnrs.fr
This study used positron emission tomography (PET) to reveal distinct brain networks for spatial and object-based visual working memory. Findings show separate dorsal and ventral cortical systems process spatial versus non-spatial information.
Area of Science:
- Neuroscience
- Cognitive Psychology
Background:
- Visual working memory (VWM) is crucial for daily tasks.
- Understanding the neural basis of VWM, particularly the distinction between spatial and object-based information processing, remains an active area of research.
Purpose of the Study:
- To investigate the neural organization of spatial versus object-based visual working memory.
- To identify distinct brain networks supporting these two types of VWM.
Main Methods:
- Positron emission tomography (PET) was used in 11 healthy human subjects.
- A conditional color-response association task was embedded within spatial and object-based VWM tasks.
- Brain activity was measured during memory retrieval and association tasks.
Main Results:
- Activation of the nucleus accumbens and anterior cingulate cortex during the associative task suggests their role in associative memory.
- The spatial VWM task activated a right-hemisphere dorsal stream network (parieto-occipital and dorsal prefrontal cortex).
- The object-based VWM task activated a left-hemisphere ventral stream network (temporo-occipital, ventral prefrontal cortex, and striatum).
Conclusions:
- The results support a domain-specific dissociation in visual working memory.
- Distinct dorsal and ventral cortical systems are involved in processing spatial and non-spatial information, respectively.
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