Visual working memory (VWM) relies on a distributed cortical network. Yet, the extent to which individual cortical areas, like early visual cortex and intraparietal sulcus, are essential to VWM storage remains debated. Here, we reanalyze key datasets from two independent labs to address three topics at the forefront of current-day VWM research: Resiliency of mnemonic representations against visual distraction, the role of attentional priority in memory, and brain–behavior relationships. By utilizing different analysis approaches, each designed to test different aspects of mnemonic coding, our results provide a comprehensive perspective on the role of early visual and intraparietal areas. We emphasize the importance of analysis choices, and ...
In their recent review, Xu critically assesses the role of early visual areas in VWM storage in the ...
Traversing sensory environments requires keeping relevant information in mind while simultaneously p...
Contains fulltext : 204873pub.pdf (publisher's version ) (Closed access)Traversing...
Visual working memory (VWM) relies on a distributed cortical network. Yet, the extent to which indiv...
Visual working memory (VWM) relies on a distributed cortical network. Yet, the extent to which indiv...
Visual working memory (VWM) relies on a distributed cortical network. Yet, the extent to which indiv...
Visual working memory (VWM) relies on a distributed cortical network. Yet, the extent to which indiv...
Contains fulltext : 234345.pdf (Publisher’s version ) (Closed access)Visual workin...
Recent methodological and conceptual advances have led to a fundamental reappraisal of the nature of...
Visual working memory (VWM) is the ability to maintain visual information in a readily available and...
Visual working memory (VWM) recruits a broad network of brain regions, including prefrontal, parieta...
Traversing sensory environments requires keeping relevant information in mind while simultaneously p...
Evidence from recent studies suggested that visual areas (V1-V3) might be also actively involved in ...
In their recent review, Xu critically assesses the role of early visual areas in VWM storage in the ...
In their recent review, Xu critically assesses the role of early visual areas in VWM storage in the ...
In their recent review, Xu critically assesses the role of early visual areas in VWM storage in the ...
Traversing sensory environments requires keeping relevant information in mind while simultaneously p...
Contains fulltext : 204873pub.pdf (publisher's version ) (Closed access)Traversing...
Visual working memory (VWM) relies on a distributed cortical network. Yet, the extent to which indiv...
Visual working memory (VWM) relies on a distributed cortical network. Yet, the extent to which indiv...
Visual working memory (VWM) relies on a distributed cortical network. Yet, the extent to which indiv...
Visual working memory (VWM) relies on a distributed cortical network. Yet, the extent to which indiv...
Contains fulltext : 234345.pdf (Publisher’s version ) (Closed access)Visual workin...
Recent methodological and conceptual advances have led to a fundamental reappraisal of the nature of...
Visual working memory (VWM) is the ability to maintain visual information in a readily available and...
Visual working memory (VWM) recruits a broad network of brain regions, including prefrontal, parieta...
Traversing sensory environments requires keeping relevant information in mind while simultaneously p...
Evidence from recent studies suggested that visual areas (V1-V3) might be also actively involved in ...
In their recent review, Xu critically assesses the role of early visual areas in VWM storage in the ...
In their recent review, Xu critically assesses the role of early visual areas in VWM storage in the ...
In their recent review, Xu critically assesses the role of early visual areas in VWM storage in the ...
Traversing sensory environments requires keeping relevant information in mind while simultaneously p...
Contains fulltext : 204873pub.pdf (publisher's version ) (Closed access)Traversing...