Oscillatory synchrony between human extrastriate areas during visual short-term memory maintenance

被引:290
作者
Tallon-Baudry, C
Bertrand, O
Fischer, C
机构
[1] INSERM, U280, F-69003 Lyon, France
[2] Neurol Hosp, F-69003 Lyon, France
关键词
visual short-term memory; delayed-matching-to-sample task; oscillations; synchrony; cell assembly; intracranial human EEG;
D O I
10.1523/JNEUROSCI.21-20-j0008.2001
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
How do we keep an object in mind? Based on evidence from animal electrophysiology and human brain-imaging techniques, it is commonly held that short-term memory relies on sustained activity in a network distributed over sensory and prefrontal cortices. How does neural firing persist in such a distributed network in the absence of visual input? Hebb's influential but so far unproved proposal, developed more than 50 years ago, is that sustained activation in short-term memory networks is maintained by reverberating activity in neuronal loops. We hypothesized that synchronized oscillatory activity, proposed to provide a dynamic link between distributed areas, could not only coordinate activity in the network but also establish reentrant loops in the system to enable both sustained firing and temporal coincidence of inputs. We show in human intracranial recordings that limited regions of extrastriate visual areas, separated by several centimeters, become synchronized in an oscillatory mode during the rehearsal of an object in visual short-term memory. Synchrony occurs specifically in the beta range (15-25 Hz) and disappears in a control condition. These findings thus confirm experimentally the hypothesis of a functional role of synchronized oscillatory activity in the coordination of distributed neural activity in humans, and support Hebb's popular but unproved concept of short-term memory maintenance by reentrant activity within the activated network.
引用
收藏
页码:art. no. / RC177
页数:5
相关论文
共 38 条
[1]   EPISODIC MULTIREGIONAL CORTICAL COHERENCE AT MULTIPLE FREQUENCIES DURING VISUAL TASK-PERFORMANCE [J].
BRESSLER, SL ;
COPPOLA, R ;
NAKAMURA, R .
NATURE, 1993, 366 (6451) :153-156
[2]   The hippocampo-neocortical dialogue [J].
Buzsaki, G .
CEREBRAL CORTEX, 1996, 6 (02) :81-92
[3]   Neural Mechanisms of Selective Visual Attention [J].
Moore, Tirin ;
Zirnsak, Marc .
ANNUAL REVIEW OF PSYCHOLOGY, VOL 68, 2017, 68 :47-72
[4]   Mapping striate and extrastriate visual areas in human cerebral cortex [J].
DeYoe, EA ;
Carman, GJ ;
Bandettini, P ;
Glickman, S ;
Wieser, J ;
Cox, R ;
Miller, D ;
Neitz, J .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (06) :2382-2386
[5]   Visual working memory for shape and 3D-orientation: A PET study [J].
Faillenot, I ;
Sakata, H ;
Costes, N ;
Decety, J ;
Jeannerod, M .
NEUROREPORT, 1997, 8 (04) :859-862
[6]   INFEROTEMPORAL NEURONS DISTINGUISH AND RETAIN BEHAVIORALLY RELEVANT FEATURES OF VISUAL-STIMULI [J].
FUSTER, JM ;
JERVEY, JP .
SCIENCE, 1981, 212 (4497) :952-955
[7]   Network memory [J].
Fuster, JM .
TRENDS IN NEUROSCIENCES, 1997, 20 (10) :451-459
[8]   Activation of the middle fusiform 'face area' increases with expertise in recognizing novel objects [J].
Gauthier, I ;
Tarr, MJ ;
Anderson, AW ;
Skudlarski, P ;
Gore, JC .
NATURE NEUROSCIENCE, 1999, 2 (06) :568-573
[9]   CELLULAR BASIS OF WORKING-MEMORY [J].
GOLDMANRAKIC, PS .
NEURON, 1995, 14 (03) :477-485
[10]   Chattering cells: Superficial pyramidal neurons contributing to the generation of synchronous oscillations in the visual cortex [J].
Gray, CM ;
McCormick, DA .
SCIENCE, 1996, 274 (5284) :109-113