Enriched learning: behavior, brain, and computation.

Trends Cogn Sci

Chair of Cognitive and Clinical Neuroscience, Faculty of Psychology, Technische Universität Dresden, Dresden, Germany. Electronic address:

Published: January 2023


Article Synopsis

  • Multimodal enrichment, which involves using multiple sensory or motor modalities in learning, significantly improves learning outcomes.
  • Recent neuroscience research shows that interactions between different sensory and motor brain regions play a crucial role in these enhanced learning benefits.
  • These findings support multimodal theories of learning, challenge traditional cognitive theories, and suggest that enriched educational methods boost learning by fostering deeper brain engagement and improved memory.

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Article Abstract

The presence of complementary information across multiple sensory or motor modalities during learning, referred to as multimodal enrichment, can markedly benefit learning outcomes. Why is this? Here, we integrate cognitive, neuroscientific, and computational approaches to understanding the effectiveness of enrichment and discuss recent neuroscience findings indicating that crossmodal responses in sensory and motor brain regions causally contribute to the behavioral benefits of enrichment. The findings provide novel evidence for multimodal theories of enriched learning, challenge assumptions of longstanding cognitive theories, and provide counterevidence to unimodal neurobiologically inspired theories. Enriched educational methods are likely effective not only because they may engage greater levels of attention or deeper levels of processing, but also because multimodal interactions in the brain can enhance learning and memory.

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http://dx.doi.org/10.1016/j.tics.2022.10.007DOI Listing

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