Neural mechanisms of adaptive behavior: Dissociating local cortical modulations and interregional communication patterns
Adaptive behavior is based on flexibly managing and integrating perceptual and motor processes, and the reconfiguration thereof. Such adaptive behavior is also relevant during inhibitory control. Although research has demonstrated local activity modulations in theta and alpha frequency bands during...
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Veröffentlicht in: | iScience 2024-10, Vol.27 (10), p.110995, Article 110995 |
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Sprache: | eng |
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Zusammenfassung: | Adaptive behavior is based on flexibly managing and integrating perceptual and motor processes, and the reconfiguration thereof. Such adaptive behavior is also relevant during inhibitory control. Although research has demonstrated local activity modulations in theta and alpha frequency bands during behavioral adaptation, the communication of brain regions is insufficiently studied. Examining directed connectivity between brain regions using a machine learning approach, a generally increased activity, but decreased connectivity within a temporo-occipital theta band network was revealed during the reconfiguration of perception-action associations during inhibitory control. Additionally, a fronto-occipital alpha-theta interplay yielded a decrease in directed connectivity during reconfiguration processes, which was associated with lower error rates in behavior. Thus, adaptive behavior relies on both local increases and decreases of activity depending on the frequency band, and concomitant decreases in communication between frontal and sensory cortices. The findings reframe common conceptualizations about how adaptive behavior is supported by neural processes.
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•Increased event file overlap linked to theta and lower alpha/beta band activity•Network connectivity strength weakens as event file overlap increases•Adaptive behavior tied to local activity changes and reduced directed connectivity
Behavioral neuroscience; Cognitive neuroscience |
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ISSN: | 2589-0042 2589-0042 |
DOI: | 10.1016/j.isci.2024.110995 |