Theta synchronization between the hippocampus and the nucleus incertus in urethane-anesthetized rats
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Note on the Postprint
This document is the postprint version of the article titled "Theta synchronization between the hippocampus and the nucleus incertus in urethane-anesthetized rats", originally published in the journal Experimental Brain Research. A postprint is the final version of the manuscript accepted for publication after peer review, but prior to the publisher's formatting and typesetting.
This version maintains the scientific content of the accepted manuscript in its entirety, ensuring the accuracy and integrity of the research findings. However, it does not include the final formatting, pagination, or other editorial elements present in the published version. For citation purposes, please refer to the published version of the article:
DOI: 10.1007/s00221-011-2666-3
Recommended Citation: Cervera-Ferri, A., Guerrero-Martínez, J., Bataller-Mompeán, M., Taberner-Cortés, A., Martínez-Ricós, J., Ruiz-Torner, A., & Teruel-Martí, V. (2011). Theta synchronization between the hippocampus and the nucleus incertus in urethane-anesthetized rats. Experimental Brain Research, 213(4), 585–602.
© 2011 Springer-Verlag. This document is distributed in compliance with publisher copyright policies and may only be used for non-commercial purposes such as research, teaching, and private study. For access to the official published version, visit SpringerLink.
Abstract
Oscillatory coupling between distributed areas can constitute a mechanism for neuronal integration. Theta oscillations provide temporal windows for hippocampal processing and only appear during certain active states of animals. Since previous studies have demonstrated that nucleus incertus (NI) contributes to the generation of hip- pocampal theta activity, in this paper, we evaluated the oscillatory coupling between both structures. We compared hippocampal and NI field potentials that were simulta- neously recorded in urethane-anesthetized rats. Electrical and cholinergic stimulations of the reticularis pontis oralis nucleus have been used as hippocampal theta generation models. The spectral analyses reveal that electrical stimu- lation induced an increase in theta oscillations in both channels, whose frequencies depended on the intensity of stimulation. The intensity range used simultaneously increased the normalized spectral energy in the fast theta band (6–12 Hz) in HPC and NI. Frequencies within the theta range were found to be very similar in both channels. In order to validate coupling, spectral coherence was inspected. The data reveal that coherence in the high theta band also increased while stimuli were applied. Choliner- gic activation progressively increased the main frequency in both structures to reach an asymptotic period with stable peak frequency in the low theta range (3–6 Hz), which could be first observed in NI and lasted about 1,500 s. Coherence in this band reached values close to 1. Taken together, these results support an electrophysiological and functional coupling between the hippocampus and the reticular formation, suggesting NI to be part of a distrib- uted network working at theta frequencies.
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