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Mind wandering during implicit learning is associated with increased periodic EEG activity and improved extraction of hidden probabilistic patterns

Psychology

Mind wandering during implicit learning is associated with increased periodic EEG activity and improved extraction of hidden probabilistic patterns

P. Simor, T. Vékony, et al.

Mind wandering occupies 30–50% of waking time and, contrary to common belief, can enhance probabilistic implicit learning rather than impair it. Using thought probes and high-density EEG, the study found that spontaneous mind wandering—linked to low-frequency, sleep-like cortical oscillations—helped extract hidden statistical patterns. This research was conducted by Péter Simor, Teodóra Vékony, Bence C. Farkas, Orsolya Szalárdy, Tamás Bogdány, Bianka Brezóczki, Gábor Csifcsák, and Dezső Németh.

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~3 min • Beginner • English
Abstract
Mind wandering, occupying 30-50% of our waking time, remains an enigmatic phenomenon in cognitive neuroscience. A large number of studies showed a negative association between mind wandering and attention-demanding (model-based) tasks in both natural settings and laboratory conditions. Mind wandering, however, does not seem to be detrimental for all cognitive domains, and was observed to benefit creativity and problem-solving. We examined if mind wandering may facilitate model-free processes, such as probabilistic learning, which relies on the automatic acquisition of statistical regularities with minimal attentional demands. We administered a well-established implicit probabilistic learning task combined with thought probes in healthy adults (N = 37, 30 females). To explore the neural correlates of mind wandering and probabilistic learning, participants were fitted with high-density electroencephalography. Our findings indicate that probabilistic learning was not only immune to periods of mind wandering but was positively associated with it. Spontaneous, as opposed to deliberate mind wandering, was particularly beneficial for extracting the probabilistic patterns hidden in the visual stream. Cortical oscillatory activity in the low-frequency (slow and delta) range, indicative of covert sleep-like states, was associated with both mind wandering and improved probabilistic learning, particularly in the early stages of the task. Given the importance of probabilistic implicit learning in predictive processing, our findings provide novel insights into the potential cognitive benefits of task-unrelated thoughts in addition to shedding light on its neural mechanisms.
Publisher
The Journal of Neuroscience
Published On
Authors
Péter Simor, Teodóra Vékony, Bence C. Farkas, Orsolya Szalárdy, Tamás Bogdány, Bianka Brezóczki, Gábor Csifcsák, Dezső Németh
Tags
mind wandering
probabilistic learning
implicit learning
spontaneous vs. deliberate mind wandering
low-frequency EEG oscillations
statistical regularities
predictive processing
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