The Pulvinar Regulates Information Transmission Between Cortical Areas Based on Attention Demands

Selective attention mechanisms route behaviorally relevant information through large-scale cortical networks. Although evidence suggests that populations of cortical neurons synchronize their activity to preferentially transmit information about attentional priorities, it is unclear how cortical syn...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2012-08, Vol.337 (6095), p.753-756
Hauptverfasser: Saalmann, Yuri B., Pinsk, Mark A., Wang, Liang, Li, Xin, Kastner, Sabine
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Sprache:eng
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Zusammenfassung:Selective attention mechanisms route behaviorally relevant information through large-scale cortical networks. Although evidence suggests that populations of cortical neurons synchronize their activity to preferentially transmit information about attentional priorities, it is unclear how cortical synchrony across a network is accomplished. Based on its anatomical connectivity with the cortex, we hypothesized that the pulvinar, a thalamic nucleus, regulates cortical synchrony. We mapped pulvino-cortical networks within the visual system, using diffusion tensor imaging, and simultaneously recorded spikes and field potentials from these interconnected network sites in monkeys performing a visuospatial attention task. The pulvinar synchronized activity between interconnected cortical areas according to attentional allocation, suggesting a critical role for the thalamus not only in attentional selection but more generally in regulating information transmission across the visual cortex.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.1223082