Hippocampal connectivity patterns echo macroscale cortical evolution in the primate brain - Neurobiology of executive functions
Article Dans Une Revue Nature Communications Année : 2024

Hippocampal connectivity patterns echo macroscale cortical evolution in the primate brain

Nicole Eichert
Jordan Dekraker
  • Fonction : Auteur
Amy F D Howard
Istvan N Huszar
  • Fonction : Auteur
Silei Zhu
  • Fonction : Auteur
Karla L Miller
Rogier B Mars
Saad Jbabdi
  • Fonction : Auteur
Boris C Bernhardt

Résumé

Abstract While the hippocampus is key for human cognitive abilities, it is also a phylogenetically old cortex and paradoxically considered evolutionarily preserved. Here, we introduce a comparative framework to quantify preservation and reconfiguration of hippocampal organisation in primate evolution, by analysing the hippocampus as an unfolded cortical surface that is geometrically matched across species. Our findings revealed an overall conservation of hippocampal macro- and micro-structure, which shows anterior-posterior and, perpendicularly, subfield-related organisational axes in both humans and macaques. However, while functional organisation in both species followed an anterior-posterior axis, we observed a marked reconfiguration in the latter across species, which mirrors a rudimentary integration of the default-mode-network in non-human primates. Here we show that microstructurally preserved regions like the hippocampus may still undergo functional reconfiguration in primate evolution, due to their embedding within heteromodal association networks.
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Dates et versions

hal-04803777 , version 1 (04-12-2024)

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Nicole Eichert, Jordan Dekraker, Amy F D Howard, Istvan N Huszar, Silei Zhu, et al.. Hippocampal connectivity patterns echo macroscale cortical evolution in the primate brain. Nature Communications, 2024, 15 (1), pp.5963. ⟨10.1038/s41467-024-49823-8⟩. ⟨hal-04803777⟩
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