Post-error recruitment of frontal sensory cortical projections promotes attention in mice.
Post-error recruitment of frontal sensory cortical projections promotes attention in mice.
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DOI:
10.1016/j.neuron.2021.02.001
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发表时间:
2021-04-07
期刊:
影响因子:
16.2
通讯作者:
Morishita H
中科院分区:
文献类型:
--
作者:
Norman KJ;Riceberg JS;Koike H;Bateh J;McCraney SE;Caro K;Kato D;Liang A;Yamamuro K;Flanigan ME;Kam K;Falk EN;Brady DM;Cho C;Sadahiro M;Yoshitake K;Maccario P;Demars MP;Waltrip L;Varga AW;Russo SJ;Baxter MG;Shapiro ML;Rudebeck PH;Morishita H
The frontal cortex, especially the anterior cingulate cortex area (ACA), is essential for exerting cognitive control after errors, but the mechanisms that enable the modulation of attention to improve performance after errors are poorly understood. Here, we demonstrate that during a mouse visual attention task, ACA neurons projecting to the visual cortex (VIS; ACAVIS) are recruited selectively by recent errors. Optogenetic manipulations of this pathway collectively support that rhythmic modulation of ACAVIS projection neurons in anticipation of visual stimuli is crucial for adjusting performance following errors. 30Hz optogenetic stimulation of ACAVIS in anesthetized mice recapitulates the increased gamma and reduced theta VIS oscillatory changes that are associated with endogenous post-error performance during behavior, and subsequently increased visual-evoked spiking, a hallmark feature of visual attention. This frontal-sensory neural circuit links error monitoring with implementing adjustments of attention to guide behavioral adaptation, pointing to a circuit-based mechanism for promoting cognitive control. Norman et. al found that behavioral errors recruit frontal-sensory projections in mice. 30 Hz optogenetic stimulation of this pathway modulates performance following errors in behaving mice, and recapitulates neurophysiological hallmarks of attention in anesthetized mice. Frontal-sensory projections thereby link error monitoring with attention adjustments for behavioral adaptation.
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