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May 10, 2026Brain Structure and Function1 citationsOpen Access

Internal connectivity of the mouse mesocortical ring and functional implications

LPLuis PuellesEGElena Garcia-Calero

Key Points

  • This research aims to explore the internal connectivity of the mouse mesocortical ring and its functional implications.
  • Analyzed internal connectivity of mesocortical ring using anterograde connectivity experiments.
  • Utilized data from the Allen Institute for Brain Science public database.
  • Identified that different sectors of the mesocortical ring exhibit strong interconnectivity.
  • The medial posterior orbitary cortex plays a major role, connecting with all mesocortical sectors.

Abstract

The mammalian mesocortex (MCx) was redefined recently as a complete ring intercalated between the allo- and iso-cortex, attending to the consistent expression of 46 selective gene markers. The MCx exhibits various other characteristics such as low myelin content of its fibers, a property directly related to its function and susceptibility to degenerative disorders. Irrespective of its shared molecular profile, the MCx ring differentiates into different sectors with singular molecular and cytoarchitectonic characteristics, such as the posterior orbitary cortex, the cingulate cortex, and the insula. In the present study, using anterograde connectivity experiments published in an Allen Institute for Brain Science public database ( https://brain-map.org/our-research/connectivity ), we analyzed the internal connectivity of the mesocortical ring. We observed that its different sectors are multiply interconnected, possibly achieving integrative functions. The medial posterior orbitary cortex stands out; it appears to play a higher hierarchical role within the MCx ring by sending and receiving projections from all mesocortical sectors.

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Cite This Study

Puelles et al. (2026) studied this question.

synapsesocial.com/papers/6a002222c8f74e3340f9d135https://doi.org/10.1007/s00429-026-03110-y
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