
doi: 10.1017/sjp.2016.86
pmid: 27919297
AbstractSeveral existing theoretical models predict that the individual capacity of working memory and abstract reasoning (fluid intelligence) strongly depends on certain features of neuronal oscillations, especially their cross-frequency coupling. Empirical evidence supporting these predictions is still scarce, but it makes the future studies on oscillatory coupling a promising line of research that can uncover the physiological underpinnings of fluid intelligence. Cross-frequency coupling may serve as the optimal level of description of neurocognitive processes, integrating their genetic, structural, neurochemical, and bioelectrical underlying factors with explanations in terms of cognitive operations driven by neuronal oscillations.
Memory, Short-Term, Electroencephalography Phase Synchronization, Intelligence, Humans, cross-frequency coupling, neuronal oscillations, working memory, fluid intelligence
Memory, Short-Term, Electroencephalography Phase Synchronization, Intelligence, Humans, cross-frequency coupling, neuronal oscillations, working memory, fluid intelligence
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