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Intrinsic neuronal dynamics predict distinct functional roles during working memory.

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Wasmuht DF. et al, (2018), Nat commun, 9

The Importance of Single-Trial Analyses in Cognitive Neuroscience.

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Stokes M. and Spaak E., (2016), Trends cogn sci, 20, 483 - 486

Distinct Mechanisms for Distractor Suppression and Target Facilitation.

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Noonan MP. et al, (2016), J neurosci, 36, 1797 - 1807

Testing sensory evidence against mnemonic templates.

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Myers NE. et al, (2015), Elife, 4

Decoding Rich Spatial Information with High Temporal Resolution.

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Stokes MG. et al, (2015), Trends cogn sci, 19, 636 - 638

Frontoparietal and Cingulo-opercular Networks Play Dissociable Roles in Control of Working Memory.

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Wallis G. et al, (2015), J cogn neurosci, 27, 2019 - 2034

Hierarchical Encoding of Social Cues in Primate Inferior Temporal Cortex.

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Morin EL. et al, (2015), Cereb cortex, 25, 3036 - 3045

'Activity-silent' working memory in prefrontal cortex: a dynamic coding framework.

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Stokes MG., (2015), Trends cogn sci, 19, 394 - 405

Reward boosts working memory encoding over a brief temporal window

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Wallis G. et al, (2015), Visual cognition

Revealing hidden states in visual working memory using electroencephalography.

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Wolff MJ. et al, (2015), Front syst neurosci, 9

Modulation of alpha power at encoding and retrieval tracks the precision of visual short-term memory.

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Poliakov E. et al, (2014), J neurophysiol, 112, 2939 - 2945

Attention biases visual activity in visual short-term memory.

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Kuo B-C. et al, (2014), J cogn neurosci, 26, 1377 - 1389

Resting GABA and glutamate concentrations do not predict visual gamma frequency or amplitude.

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Cousijn H. et al, (2014), Proc natl acad sci u s a, 111, 9301 - 9306

Oscillatory brain state predicts variability in working memory.

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Myers NE. et al, (2014), J neurosci, 34, 7735 - 7743

Distinct neural mechanisms of individual and developmental differences in VSTM capacity.

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Astle DE. et al, (2014), Dev psychobiol, 56, 601 - 610

Preferential encoding of behaviorally relevant predictions revealed by EEG.

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Stokes MG. et al, (2014), Front hum neurosci, 8

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