Dynamical interactions reconfigure the gradient of cortical timescales
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AI-generated summary
This study found that brain region timescales exhibit a front-to-back gradient when considering non-local interactions, reversing the traditional back-to-front pattern.
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Abstract
A hierarchy of local timescales with a back (sensory)-to-front (prefrontal) gradient reflects brain region specialization. However, cognitive processes emerge from the coordinated activity across regions, and the corresponding timescales should refer to the interactions rather than to regional activity. Using edgewise connectivity on magnetoencephalography signals, we demonstrate a reverse front-to-back gradient when non-local interactions are prominent. Thus, the timescales are dynamic and reconfigure between back-to-front and front-to-back patterns.
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- europepmc
- last seen: 2026-05-19T01:45:01.086888+00:00