The contribution of frequency-specific activity to hierarchical information processing in the human auditory cortex
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Summary
It is shown that ascending and descending information is propagated between cortical regions through distinct neural frequencies, suggesting that the brain uses both frequency- and time-division multiplexing to optimize directional information transfer.
- Type
- article
- Published
- 2014-09-02
- Cited by
- 251
- References
- 69
- Access
- Open access
- OpenAlex
- https://openalex.org/W2017347948
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:10445019
Keywords
Auditory cortex, Cortex (anatomy), Coupling (piping), Information transfer, Neuroscience
References
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- The cortical organization of speech processing
- Biophysical Mechanisms of Multistability in Resting-State Cortical Rhythms
- Evidence from auditory and visual event-related potential (ERP) studies of deviance detection (MMN and vMMN) linking predictive coding theories and perceptual object representations.
- The origin of extracellular fields and currents — EEG, ECoG, LFP and spikes
- Different Origins of Gamma Rhythm and High-Gamma Activity in Macaque Visual Cortex
- Sensory neural codes using multiplexed temporal scales.
- Evoked potentials recorded from the auditory cortex in man: evaluation and topography of the middle latency components.
- Multiplexed and robust representations of sound features in auditory cortex
- On the computational architecture of the neocortex
- Period Concatenation Underlies Interactions between Gamma and Beta Rhythms in Neocortex
- Computational Modeling of Distinct Neocortical Oscillations Driven by Cell-Type Selective Optogenetic Drive: Separable Resonant Circuits Controlled by Low-Threshold Spiking and Fast-Spiking Interneurons
- Analysing connectivity with Granger causality and dynamic causal modelling
- Mapping directed influence over the brain using Granger causality and fMRI
Cited by
- Characterization of neural entrainment to speech with and without slow spectral energy fluctuations in laminar recordings in monkey A1
- Visuotactile motion congruence enhances gamma-band activity in visual and somatosensory cortices
- Differential oscillatory encoding of foreign speech.
- EEG oscillations entrain their phase to high-level features of speech sound
- Frontal Top-Down Signals Increase Coupling of Auditory Low-Frequency Oscillations to Continuous Speech in Human Listeners
- Rhythms For Cognition: Communication Through Coherence
- Expecting to See a Letter: Alpha Oscillations as Carriers of Top-Down Sensory Predictions.
- Motor contributions to the temporal precision of auditory attention
- A predictive coding framework for rapid neural dynamics during sentence-level language comprehension.
- Behavioral Oscillation in Priming: Competing Perceptual Predictions Conveyed in Alternating Theta-Band Rhythms
- Electrophysiological evidence of statistical learning of long-distance dependencies in 8-month-old preterm and full-term infants.
- Generators and Connectivity of the Early Auditory Evoked Gamma Band Response
- A DCM study of spectral asymmetries in feedforward and feedback connections between visual areas V1 and V4 in the monkey
- Speech encoding by coupled cortical theta and gamma oscillations
- Phase-amplitude coupling supports phase coding in human ECoG
- Neural Cross-Frequency Coupling: Connecting Architectures, Mechanisms, and Functions.
- Irregular Speech Rate Dissociates Auditory Cortical Entrainment, Evoked Responses, and Frontal Alpha
- The Role of High-Level Processes for Oscillatory Phase Entrainment to Speech Sound
- Is there a common oscillatory brain mechanism for producing and predicting language?
- Directional patterns of cross frequency phase and amplitude coupling within the resting state mimic patterns of fMRI functional connectivity
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