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March 29, 2026Cell1 citationsOpen Access

Development of non-spatial grid-like neural codes tracks inference and intelligence

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YQYukun QuJOJianxin OuLPL. Pang

Key Points

  • The research aims to explore how the maturation of non-spatial grid-like neural codes supports inferential reasoning and cognitive development in children and young adults.
  • Sample included 203 participants aged 8-25 years.
  • Investigation of grid-cell-like codes in the entorhinal cortex.
  • Assessment of the relationship between neural codes, inferential reasoning, and intelligence measures.
  • Strengthening of grid-like codes in the entorhinal cortex with age.
  • Improved inferential reasoning linked to maturation of these neural codes.
  • Grid-like codes in the EC support medial prefrontal cortex in encoding relationships between objects.

Abstract

Piaget's theory posits that children develop structured knowledge schemas for inferring and assimilating new information, yet the underlying neural mechanisms remain unclear. In 203 participants aged 8-25 years, we investigated how maturation of a two-dimensional (2D) knowledge map underpins inferential reasoning and knowledge assimilation. Grid-cell-like codes in the entorhinal cortex (EC) strengthened with age, reflecting schema representations in non-spatial conceptual spaces, and predicted improved inferential reasoning. These grid-like codes also supported the medial prefrontal cortex (mPFC) in encoding distance relationships between objects on the 2D map. As participants assimilated new information, they integrated it into existing grid patterns in the EC. Moreover, the maturation of these neural codes tracked real-world intelligence measures, particularly reasoning abilities. Our findings demonstrate that the development of non-spatial grid-like neural codes offers a mechanistic account of cognitive development, bridging psychological theory with a fundamental cellular representation of the cognitive map.

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Cite This Study

Qu et al. (2026) studied this question.

synapsesocial.com/papers/69c8c0b0de0f0f753b39b9a2https://doi.org/10.1016/j.cell.2026.02.028
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