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Structure and function of the hippocampal CA3 module.

Rosanna P SammonsMourat VezirLaura Moreno VelasquezGaspar CanoMarta OrlandoMeike SieversEleonora GrassoVerjinia D MetodievaRichard KempterHelene SchmidtDietmar Schmitz
Published in: Proceedings of the National Academy of Sciences of the United States of America (2024)
The hippocampal formation is crucial for learning and memory, with submodule CA3 thought to be the substrate of pattern completion. However, the underlying synaptic and computational mechanisms of this network are not well understood. Here, we perform circuit reconstruction of a CA3 module using three dimensional (3D) electron microscopy data and combine this with functional connectivity recordings and computational simulations to determine possible CA3 network mechanisms. Direct measurements of connectivity schemes with both physiological measurements and structural 3D EM revealed a high connectivity rate, multi-fold higher than previously assumed. Mathematical modelling indicated that such CA3 networks can robustly generate pattern completion and replay memory sequences. In conclusion, our data demonstrate that the connectivity scheme of the hippocampal submodule is well suited for efficient memory storage and retrieval.
Keyphrases
  • functional connectivity
  • resting state
  • protein kinase
  • white matter
  • electronic health record
  • electron microscopy
  • big data
  • cerebral ischemia
  • machine learning
  • temporal lobe epilepsy
  • subarachnoid hemorrhage