Near-real-time feature-selective modulations in human cortex.
about
Neurofeedback Therapy for Enhancing Visual Attention: State-of-the-Art and ChallengesTesting sensory evidence against mnemonic templatesNeural Evidence for the Flexible Control of Mental RepresentationsAlpha-Band Oscillations Enable Spatially and Temporally Resolved Tracking of Covert Spatial Attention.Individual differences in attention influence perceptual decision making.The steady-state visual evoked potential in vision research: A reviewPattern classification of EEG signals reveals perceptual and attentional states.Induced α rhythms track the content and quality of visual working memory representations with high temporal precisionMultivariate EEG analyses support high-resolution tracking of feature-based attentional selectionReconstructions of information in visual spatial working memory degrade with memory loadDistributed patterns of event-related potentials predict subsequent ratings of abstract stimulus attributes.The steady-state visual evoked potential reveals neural correlates of the items encoded into visual working memoryNormalization in human somatosensory cortex.Temporal dynamics of attention during encoding versus maintenance of working memory: complementary views from event-related potentials and alpha-band oscillations.The topography of alpha-band activity tracks the content of spatial working memoryChanging the spatial scope of attention alters patterns of neural gain in human cortex.Two distinct dynamic modes subtend the detection of unexpected sounds.Visual attention mitigates information loss in small- and large-scale neural codes.The Representational Basis of Working Memory.Acute Exercise Modulates Feature-selective Responses in Human Cortex.Decoding and Reconstructing the Focus of Spatial Attention from the Topography of Alpha-band Oscillations.Characterizing the dynamics of mental representations: the temporal generalization method.Inverted Encoding Models of Human Population Response Conflate Noise and Neural Tuning Width.Anticipated moments: temporal structure in attention.Prior expectations induce prestimulus sensory templates.Building on a Solid Baseline: Anticipatory Biases in Attention.Dissociable signatures of visual salience and behavioral relevance across attentional priority maps in human cortex.Decoding the influence of anticipatory states on visual perception in the presence of temporal distractors.Inverted Encoding Models Assay Population-Level Stimulus Representations, Not Single-Unit Neural Tuning.
P2860
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P2860
Near-real-time feature-selective modulations in human cortex.
description
2013 nî lūn-bûn
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2013年の論文
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2013年論文
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2013年論文
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2013年論文
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2013年論文
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2013年論文
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name
Near-real-time feature-selective modulations in human cortex.
@ast
Near-real-time feature-selective modulations in human cortex.
@en
type
label
Near-real-time feature-selective modulations in human cortex.
@ast
Near-real-time feature-selective modulations in human cortex.
@en
prefLabel
Near-real-time feature-selective modulations in human cortex.
@ast
Near-real-time feature-selective modulations in human cortex.
@en
P2093
P2860
P1433
P1476
Near-real-time feature-selective modulations in human cortex.
@en
P2093
Javier O Garcia
John T Serences
Ramesh Srinivasan
P2860
P304
P356
10.1016/J.CUB.2013.02.013
P407
P577
2013-03-07T00:00:00Z