scholarly article | Q13442814 |
P50 | author | Luc H Arnal | Q47159352 |
P2093 | author name string | Anne-Lise Giraud | |
P433 | issue | 7 | |
P304 | page(s) | 390-398 | |
P577 | publication date | 2012-06-07 | |
P1433 | published in | Trends in Cognitive Sciences | Q7838299 |
P1476 | title | Cortical oscillations and sensory predictions | |
P478 | volume | 16 |
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Q90256004 | A New Unifying Account of the Roles of Neuronal Entrainment |
Q34117257 | A controlled study on the cognitive effect of alpha neurofeedback training in patients with major depressive disorder |
Q42542580 | A long-range fronto-parietal 5- to 10-Hz network predicts "top-down" controlled guidance in a task-switch paradigm. |
Q126087533 | A practical guide to EEG hyperscanning in joint action research: from motivation to implementation |
Q58802389 | A randomised, double-blind, placebo-controlled parallel trial of closed-loop infraslow brain training in food addiction |
Q30420787 | Acoustic landmarks drive delta-theta oscillations to enable speech comprehension by facilitating perceptual parsing |
Q30406538 | Active inference, communication and hermeneutics |
Q35727844 | Alpha Power Increase After Transcranial Alternating Current Stimulation at Alpha Frequency (α-tACS) Reflects Plastic Changes Rather Than Entrainment. |
Q47145922 | Alpha and theta band dynamics related to sentential constraint and word expectancy |
Q90458113 | Alpha oscillations and traveling waves: Signatures of predictive coding? |
Q95315600 | Alterations in the amplitude and burst rate of beta oscillations impair reward-dependent motor learning in anxiety |
Q89619583 | An Efficient and Perceptually Motivated Auditory Neural Encoding and Decoding Algorithm for Spiking Neural Networks |
Q52108659 | An active inference theory of allostasis and interoception in depression. |
Q38199888 | Analytical methods and experimental approaches for electrophysiological studies of brain oscillations |
Q63248313 | Anticipation processes in L2 speech comprehension: Evidence from ERPs and lexical recognition task |
Q26866119 | Attention and prediction in human audition: a lesson from cognitive psychophysiology |
Q64091936 | Attention and speech-processing related functional brain networks activated in a multi-speaker environment |
Q42037395 | Attention in the temporal domain: a phase-coding mechanism controls the gain of sensory processing |
Q47236963 | Attention is required for knowledge-based sequential grouping: Insights from the integration of syllables into words |
Q30386706 | Attentional Enhancement of Auditory Mismatch Responses: a DCM/MEG Study. |
Q34573430 | Attentional modulation of alpha/beta and gamma oscillations reflect functionally distinct processes |
Q30400650 | Auditory cortical deactivation during speech production and following speech perception: an EEG investigation of the temporal dynamics of the auditory alpha rhythm |
Q30362658 | Auditory cortical delta-entrainment interacts with oscillatory power in multiple fronto-parietal networks. |
Q88884683 | Auditory steady state response deficits are associated with symptom severity and poor functioning in patients with psychotic disorder |
Q30370116 | Automatic processing of abstract musical tonality. |
Q30434169 | Beat-induced fluctuations in auditory cortical beta-band activity: using EEG to measure age-related changes. |
Q42260068 | Behavioral Oscillations in Visual Attention Modulated by Task Difficulty |
Q37025414 | Behavioural evidence for separate mechanisms of audiovisual temporal binding as a function of leading sensory modality. |
Q30354861 | Being First Matters: Topographical Representational Similarity Analysis of ERP Signals Reveals Separate Networks for Audiovisual Temporal Binding Depending on the Leading Sense. |
Q47921155 | Beta oscillations reflect supramodal information during perceptual judgment. |
Q90305748 | Beta power encodes contextual estimates of temporal event probability in the human brain |
Q30381256 | Beta-Band Oscillations Represent Auditory Beat and Its Metrical Hierarchy in Perception and Imagery. |
Q41205346 | Beyond the Status Quo: A Role for Beta Oscillations in Endogenous Content (Re)Activation |
Q52609208 | Boosting the LTP-like plasticity effect of intermittent theta-burst stimulation using gamma transcranial alternating current stimulation. |
Q37731135 | Brain Rhythms of Pain |
Q48300667 | Brain activity from stimuli that are not perceived: Visual mismatch negativity during binocular rivalry suppression |
Q37698985 | Brain oscillations differentially encode noxious stimulus intensity and pain intensity. |
Q40300075 | Burst and Tonic Spinal Cord Stimulation: Different and Common Brain Mechanisms. |
Q30380401 | Can you hear me yet? An intracranial investigation of speech and non-speech audiovisual interactions in human cortex. |
Q97529727 | Co-registration of eye movements and neuroimaging for studying contextual predictions in natural reading |
Q96609320 | Combining predictive coding and neural oscillations enables online syllable recognition in natural speech |
Q30392604 | Commentary: Beta-Band Oscillations Represent Auditory Beat and Its Metrical Hierarchy in Perception and Imagery |
Q55402214 | Commentary: Respiration-Entrained Brain Rhythms Are Global but Often Overlooked. |
Q50233231 | Commentary: Sound-making actions lead to immediate plastic changes of neuromagnetic evoked responses and induced β-band oscillations during perception. |
Q39029535 | Computational principles and models of multisensory integration. |
Q43680038 | Concurrent temporal channels for auditory processing: Oscillatory neural entrainment reveals segregation of function at different scales. |
Q41896749 | Content congruency and its interplay with temporal synchrony modulate integration between rhythmic audiovisual streams |
Q30354582 | Contributions of local speech encoding and functional connectivity to audio-visual speech perception. |
Q52584183 | Cortical Measures of Phoneme-Level Speech Encoding Correlate with the Perceived Clarity of Natural Speech. |
Q30380693 | Cortical entrainment to music and its modulation by expertise |
Q27311631 | Cortical tracking of hierarchical linguistic structures in connected speech |
Q33621995 | Delta and gamma oscillations in operculo-insular cortex underlie innocuous cold thermosensation |
Q30375118 | Delta-Beta Coupled Oscillations Underlie Temporal Prediction Accuracy. |
Q55105099 | Detecting change in stochastic sound sequences. |
Q83227489 | Differential contributions of the two human cerebral hemispheres to action timing |
Q90051613 | Dissociated Neural Mechanisms of Target and Distractor Processing Facilitated by Expectations |
Q30385743 | Dissociating Prediction Failure: Considerations from Music Perception. |
Q30367520 | Distinct iEEG activity patterns in temporal-limbic and prefrontal sites induced by emotional intentionality. |
Q39988788 | Distinct β Band Oscillatory Networks Subserving Motor and Cognitive Control during Gait Adaptation |
Q40382530 | Distinctive Representation of Mispredicted and Unpredicted Prediction Errors in Human Electroencephalography |
Q30448984 | Do cortical gamma oscillations promote or suppress perception? An under-asked question with an over-assumed answer |
Q30438284 | Dynamic modulation of shared sensory and motor cortical rhythms mediates speech and non-speech discrimination performance |
Q38841647 | EEG Mu (µ) rhythm spectra and oscillatory activity differentiate stuttering from non-stuttering adults |
Q96576646 | ERP mismatch response to phonological and temporal regularities in speech |
Q30387244 | Early and late beta-band power reflect audiovisual perception in the McGurk illusion |
Q50285344 | Editorial: Brain Oscillations in Human Communication |
Q36099386 | Effects of concurrent caffeine and mobile phone exposure on local target probability processing in the human brain. |
Q91886643 | Electrophysiological alterations in motor-auditory predictive coding in autism spectrum disorder |
Q90576194 | Electrophysiology as a theoretical and methodological hub for the neural sciences |
Q36601496 | Emerging hubs in phantom perception connectomics |
Q41476763 | Enhanced auditory evoked activity to self-generated sounds is mediated by primary and supplementary motor cortices. |
Q47159307 | Entrained delta oscillations reflect the subjective tracking of time |
Q35121061 | Entrainment of neural oscillations as a modifiable substrate of attention |
Q90140967 | Evaluating the neurophysiological evidence for predictive processing as a model of perception |
Q47171360 | Evidence for causal top-down frontal contributions to predictive processes in speech perception. |
Q48095185 | Expecting to See a Letter: Alpha Oscillations as Carriers of Top-Down Sensory Predictions |
Q91861271 | Exploitation of local and global information in predictive processing |
Q60044264 | Eye activity tracks task-relevant structures during speech and auditory sequence perception |
Q28081023 | Finding the beat: a neural perspective across humans and non-human primates |
Q48177493 | Focal versus distributed temporal cortex activity for speech sound category assignment |
Q28658698 | Form and function remixed: developmental physiology in the evolution of vertebrate body plans |
Q33955098 | Frontal theta as a mechanism for cognitive control |
Q30406541 | Frontal top-down signals increase coupling of auditory low-frequency oscillations to continuous speech in human listeners. |
Q91710203 | Fronto-Temporal Coupling Dynamics During Spontaneous Activity and Auditory Processing in the Bat Carollia perspicillata |
Q30391659 | Graph theoretical analysis of brain connectivity in phantom sound perception |
Q45077034 | Hearing silences: human auditory processing relies on preactivation of sound-specific brain activity patterns |
Q48524701 | High-frequency neural activity predicts word parsing in ambiguous speech streams |
Q38153036 | High-frequency neural oscillations and visual processing deficits in schizophrenia |
Q26829587 | High-frequency oscillations and the neurobiology of schizophrenia |
Q61449256 | How Live Music Moves Us: Head Movement Differences in Audiences to Live Versus Recorded Music |
Q41873192 | How prediction errors shape perception, attention, and motivation |
Q30451419 | I know what is missing here: electrophysiological prediction error signals elicited by omissions of predicted "what" but not "when". |
Q42085806 | I see what you are saying. |
Q27320037 | Increased Resting-State Gamma-Band Connectivity in First-Episode Schizophrenia |
Q48609060 | Increased visual gamma power in schizoaffective bipolar disorder |
Q30420523 | Independent effects of bottom-up temporal expectancy and top-down spatial attention. An audiovisual study using rhythmic cueing. |
Q36063783 | Individual Human Brain Areas Can Be Identified from Their Characteristic Spectral Activation Fingerprints |
Q30564132 | Individual musical tempo preference correlates with EEG beta rhythm |
Q90118040 | Induced Beta Power Modulations during Isochronous Auditory Beats Reflect Intentional Anticipation before Gradual Tempo Changes |
Q38678557 | Internally generated hippocampal sequences as a vantage point to probe future-oriented cognition |
Q39001099 | Interpersonal synchrony enhanced through 20 Hz phase-coupled dual brain stimulation |
Q35649078 | Intersensory selective attention and temporal orienting operate in parallel and are instantiated in spatially distinct sensory and motor cortices |
Q30412075 | Intracranial Mapping of a Cortical Tinnitus System using Residual Inhibition |
Q88612682 | Is auditory perceptual timing a core deficit of developmental coordination disorder? |
Q35950825 | Ketamine Dysregulates the Amplitude and Connectivity of High-Frequency Oscillations in Cortical-Subcortical Networks in Humans: Evidence From Resting-State Magnetoencephalography-Recordings |
Q35223779 | LFP and oscillations-what do they tell us? |
Q57802466 | Lamina-specific cortical dynamics in human visual and sensorimotor cortices |
Q46480228 | Language context processing deficits in schizophrenia: The role of attentional engagement. |
Q100694089 | Language prediction mechanisms in human auditory cortex |
Q41846267 | Learning to learn to expand freedom in choices |
Q30362397 | Linguistic category structure influences early auditory processing: Converging evidence from mismatch responses and cortical oscillations. |
Q30381652 | Lip movements entrain the observers' low-frequency brain oscillations to facilitate speech intelligibility |
Q63930276 | Local Entrainment of Alpha Oscillations by Visual Stimuli Causes Cyclic Modulation of Perception |
Q58726550 | Low-Frequency Oscillatory Correlates of Auditory Predictive Processing in Cortical-Subcortical Networks: A MEG-Study |
Q58121732 | Low-Frequency Spike-Field Coherence Is a Fingerprint of Periodicity Coding in the Auditory Cortex |
Q58566571 | Lower Beta: A Central Coordinator of Temporal Prediction in Multimodal Speech |
Q39147948 | Magnetoencephalography for brain electrophysiology and imaging |
Q47833694 | Maturation of Pain Empathy from Child to Adult Shifts from Single to Multiple Neural Rhythms to Support Interoceptive Representations. |
Q37693453 | Mechanical Stimulus-Induced Wthdrawal Behavior Increases Subsequent Pre-Stimulus Local Field Potential Power in the Rostral Anterior Cingulate Cortex in Unanesthetized Rats. |
Q30447494 | Midbrain local circuits shape sound intensity codes |
Q30426622 | Motor contributions to the temporal precision of auditory attention |
Q48035198 | Motor origin of temporal predictions in auditory attention |
Q91707409 | Musical Expertise Affects Audiovisual Speech Perception: Findings From Event-Related Potentials and Inter-trial Phase Coherence |
Q50280990 | Musical Scales in Tone Sequences Improve Temporal Accuracy. |
Q91286834 | Musical imagery depends upon coordination of auditory and sensorimotor brain activity |
Q30390986 | Neural Entrainment in Drum Rhythms with Silent Breaks: Evidence from Steady-state Evoked and Event-related Potentials. |
Q30401410 | Neural Entrainment to Polyrhythms: A Comparison of Musicians and Non-musicians. |
Q30402557 | Neural Entrainment to the Beat: the "Missing Pulse" Phenomenon |
Q39235595 | Neural Noise Hypothesis of Developmental Dyslexia |
Q21558371 | Neural Oscillations Carry Speech Rhythm through to Comprehension. |
Q47913674 | Neural Tuning to Low-Level Features of Speech throughout the Perisylvian Cortex. |
Q41510989 | Neural alpha dynamics in younger and older listeners reflect acoustic challenges and predictive benefits. |
Q92452062 | Neural entrainment is associated with subjective groove and complexity for performed but not mechanical musical rhythms |
Q37123786 | Neural oscillations as a signature of efficient coding in the presence of synaptic delays. |
Q30385186 | Neural signatures of perceptual inference |
Q89472805 | Neuroimaging results suggest the role of prediction in cross-domain priming |
Q59330201 | Neuronal coding of multiscale temporal features in communication sequences within the bat auditory cortex |
Q28082136 | Neuronal oscillations as a mechanistic substrate of auditory temporal prediction |
Q58606722 | Neuronal phase consistency tracks dynamic changes in acoustic spectral regularity |
Q64084221 | No Evidence that Predictions and Attention Modulate the First Feedforward Sweep of Cortical Information Processing |
Q27321525 | No, there is no 150 ms lead of visual speech on auditory speech, but a range of audiovisual asynchronies varying from small audio lead to large audio lag |
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Q57038643 | Not All Predictions Are Equal: "What" and "When" Predictions Modulate Activity in Auditory Cortex through Different Mechanisms |
Q27335109 | Optimal Perceived Timing: Integrating Sensory Information with Dynamically Updated Expectations. |
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Q47094759 | Pairing sound with vagus nerve stimulation modulates cortical synchrony and phase coherence in tinnitus: An exploratory retrospective study. |
Q30374061 | Perceptual learning of degraded speech by minimizing prediction error. |
Q55091406 | Perceptually relevant speech tracking in auditory and motor cortex reflects distinct linguistic features. |
Q37372033 | Physiological and Perceptual Sensory Attenuation Have Different Underlying Neurophysiological Correlates |
Q30439991 | Predictability effects in auditory scene analysis: a review |
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Q30368266 | Prediction Errors but Not Sharpened Signals Simulate Multivoxel fMRI Patterns during Speech Perception. |
Q28085358 | Prediction and constraint in audiovisual speech perception |
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Q47738804 | Predictions through evidence accumulation over time |
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Q30398503 | Predictive timing functions of cortical beta oscillations are impaired in Parkinson's disease and influenced by L-DOPA and deep brain stimulation of the subthalamic nucleus. |
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Q39212295 | Primate beta oscillations and rhythmic behaviors. |
Q64270766 | Prior Precision Modulates the Minimization of Auditory Prediction Error |
Q47813290 | Prior expectations evoke stimulus templates in the primary visual cortex |
Q33733054 | Proactive Control: Neural Oscillatory Correlates of Conflict Anticipation and Response Slowing |
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Q30366348 | Rapid tuning shifts in human auditory cortex enhance speech intelligibility. |
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Q30434176 | Temporal dynamics of sensorimotor integration in speech perception and production: independent component analysis of EEG data |
Q30414983 | Temporal expectation and attention jointly modulate auditory oscillatory activity in the beta band |
Q38871237 | Temporal integration of multisensory stimuli in autism spectrum disorder: a predictive coding perspective |
Q46129710 | Temporal regularity facilitates higher-order sensory predictions in fast auditory sequences |
Q37339772 | Temporal regularity of intrinsic cerebral activity in patients with chronic primary insomnia: a brain entropy study using resting-state fMRI. |
Q28087338 | Thalamocortical Dysrhythmia: A Theoretical Update in Tinnitus |
Q93051034 | The Application of EEG Mu Rhythm Measures to Neurophysiological Research in Stuttering |
Q38756674 | The COGs (context, object, and goals) in multisensory processing |
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Q30452053 | The Ease of Language Understanding (ELU) model: theoretical, empirical, and clinical advances. |
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Q38994590 | The Faces of Predictive Coding. |
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Q52148425 | The Processing of Attended and Predicted Sounds in Time. |
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Q30401250 | Tuning Neural Phase Entrainment to Speech |
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Q30387737 | Unpredicted Pitch Modulates Beta Oscillatory Power during Rhythmic Entrainment to a Tone Sequence |
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Q59804664 | Why Do Durations in Musical Rhythms Conform to Small Integer Ratios? |
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