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Deciphering the CA1 inhibitory circuits in sharp wave ripple complexes

Version 4 2024-03-12, 15:29
Version 3 2023-10-29, 11:53
journal contribution
posted on 2024-03-12, 15:29 authored by Vassilis Cutsuridis, Jiannis Taxidis
<p>Sharp wave-ripples (SWRs) are population oscillatory patterns in hippocampal LFPs during deep sleep and immobility, involved in the replay of memories acquired during wakefulness. SWRs have been extensively studied, but their exact generation mechanism is still unknown. A computational model has suggested that fast perisomatic inhibition may generate the high frequency ripples (~200 Hz). Another model showed how replay of memories can be controlled by various classes of inhibitory interneurons targeting specific parts of pyramidal cells (PC) and firing at particular SWR phases. Optogenetic studies revealed new roles for interneuronal classes and rich dynamic interplays between them, shedding new light in their potential role in SWRs. Here, we integrate these findings in a conceptual model of how dendritic and somatic inhibition may collectively contribute to the SWR generation. We suggest that sharp wave excitation and basket cell (BC) recurrent inhibition synchronises BC spiking in ripple frequencies. This rhythm is imposed on bistratified cells which prevent pyramidal bursting. Axo-axonic and stratum lacunosum/moleculare interneurons are silenced by inhibitory inputs originating in the medial septum. PCs receiving rippling inhibition in both dendritic and perisomatic areas and excitation in their apical dendrites, exhibit sparse ripple phase-locked spiking.</p>

History

School affiliated with

  • School of Computer Science (Research Outputs)

Publication Title

Frontiers in Systems Neuroscience

Publisher

Frontiers Media

ISSN

1662-5137

eISSN

1662-5137

Date Submitted

2017-07-04

Date Accepted

2013-04-18

Date of First Publication

2013-05-06

Date of Final Publication

2013-05-06

Date Document First Uploaded

2017-06-23

ePrints ID

27728

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