Statistical Learning Facilitates Access to Awareness

Publication date

2024-09-02

Authors

Xu, Luzi
Paffen, Chris L.E.ISNI 0000000391034179
van der Stigchel, StefanISNI 0000000396732697
Gayet, SuryaORCID 0000-0001-9728-1272ISNI 000000037261256X

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Statistical learning is a powerful mechanism that enables the rapid extraction of regularities from sensory inputs. Although numerous studies have established that statistical learning serves a wide range of cognitive functions, it remains unknown whether statistical learning impacts conscious access. To address this question, we applied multiple paradigms in a series of experiments (N = 153 adults): Two reaction-time-based breaking continuous flash suppression (b-CFS) experiments showed that probable objects break through suppression faster than improbable objects. A preregistered accuracy-based b-CFS experiment showed higher localization accuracy for suppressed probable (versus improbable) objects under identical presentation durations, thereby excluding the possibility of processing differences emerging after conscious access (e.g., criterion shifts). Consistent with these findings, a supplemental visual-masking experiment reaffirmed higher localization sensitivity to probable objects over improbable objects. Together, these findings demonstrate that statistical learning alters the competition for scarce conscious resources, thereby potentially contributing to established effects of statistical learning on higher-level cognitive processes that require consciousness.

Keywords

breaking continuous flash suppression, consciousness, interocular suppression, preregistered, statistical learning, visual awareness, General Psychology

Citation

Xu, L, Paffen, C L E, Van der Stigchel, S & Gayet, S 2024, 'Statistical Learning Facilitates Access to Awareness', Psychological Science, vol. 35, no. 9, pp. 951-1073. https://doi.org/10.1177/09567976241263344