Hippocampo-septal inhibitory feedback controls the medial septal circuit as a function of brain state, pyramidal cell activity and movement speed
Discuss this preprint
Start a discussion What are Sciety discussions?Listed in
This article is not in any list yet, why not save it to one of your lists.Abstract
Encoding novel experiences and retrieving stored information rely on the hippocampal theta rhythm in several mammalian species. Coordination of putative pacemakers in the medial septum (MS) by the GABAergic hippocampo-septal (HS) feedback is hypothesized to be essential for theta genesis. In order to reveal how the HS-feedback controls the MS circuit, and through it hippocampal oscillations in general, we set out to uncover the behavior-related activity of HS neurons as well as how different components of the MS network are regulated by the HS-feedback. Utilizing computational modelling and in vivo optogenetic manipulation of the HS pathway, we show that the HS feedback is not required for theta generation, which is primarily governed by intra-MS connections. HS blockade did not alter the phase coupling of MS neurons to hippocampal theta rhythm nor the synchrony between rhythmic MS neurons but augmented ongoing theta and coupled mid-gamma oscillations in the hippocampus. By contrast, correlated activity between non-rhythmic MS neurons was sensitive to HS blockade. Moreover, the HS feedback scaled with hippocampal activity and running speed. In turn, modulation of MS neurons by running and ripples was diminished by the transient suppression of HS terminals. These findings suggest that the HS feedback exerts inhibitory control of the MS depending upon hippocampal output and movement speed.