Coexisting representations of sensory and mnemonic information in human visual cortex

被引:0
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作者
Rosanne L. Rademaker
Chaipat Chunharas
John T. Serences
机构
[1] University of California,Department of Psychology
[2] San Diego,Donders Institute for Brain, Cognition and Behavior
[3] Radboud University,Department of Medicine, King Chulalongkorn Memorial Hospital
[4] Chulalongkorn University,Neurosciences Graduate Program
[5] University of California,Kavli Institute for Brain and Mind
[6] San Diego,undefined
[7] University of California,undefined
[8] San Diego,undefined
来源
Nature Neuroscience | 2019年 / 22卷
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摘要
Traversing sensory environments requires keeping relevant information in mind while simultaneously processing new inputs. Visual information is kept in working memory via feature-selective responses in early visual cortex, but recent work has suggested that new sensory inputs obligatorily wipe out this information. Here we show region-wide multiplexing abilities in classic sensory areas, with population-level response patterns in early visual cortex representing the contents of working memory alongside new sensory inputs. In a second experiment, we show that when people get distracted, this leads to both disruptions of mnemonic information in early visual cortex and decrements in behavioral recall. Representations in the intraparietal sulcus reflect actively remembered information encoded in a transformed format, but not task-irrelevant sensory inputs. Together, these results suggest that early visual areas play a key role in supporting high-resolution working memory representations that can serve as a template for comparison with incoming sensory information.
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页码:1336 / 1344
页数:8
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