» Articles » PMID: 20164402

Enhancement of Synchronization Between Hippocampal and Amygdala Theta Waves Associated with Pontine Wave Density

Overview
Journal J Neurophysiol
Specialties Neurology
Physiology
Date 2010 Feb 19
PMID 20164402
Citations 15
Authors
Affiliations
Soon will be listed here.
Abstract

Theta waves in the amygdala are known to be synchronized with theta waves in the hippocampus. Synchronization between amygdala and hippocampal theta waves is considered important for neuronal communication between these regions during the memory-retrieval process. These theta waves are also observed during rapid eye movement (REM) sleep. However, few studies have examined the mechanisms and functions of theta waves during REM sleep. This study examined correlations between the dynamics of hippocampal and amygdala theta waves and pontine (P) waves in the subcoeruleus region, which activates many brain areas including the hippocampus and amygdala, during REM sleep in rats. We confirmed that the frequency of hippocampal theta waves increased in association with P wave density, as shown in our previous study. The frequency of amygdala theta waves also increased with in associated with P wave density. In addition, we confirmed synchronization between hippocampal and amygdala theta waves during REM sleep in terms of the cross-correlation function and found that this synchronization was enhanced in association with increased P wave density. We further studied theta wave synchronization associated with P wave density by lesioning the pontine subcoeruleus region. This lesion not only decreased hippocampal and amygdala theta frequency, but also degraded theta wave synchronization. These results indicate that P waves enhance synchronization between regional theta waves. Because hippocampal and amygdala theta waves and P waves are known to be involved in learning and memory processes, these results may help clarify these functions during REM sleep.

Citing Articles

REM Sleep Preserves Affective Response to Social Stress-Experimental Study.

Halonen R, Kuula L, Selin M, Suutari A, Antila M, Pesonen A eNeuro. 2024; 11(6).

PMID: 38802242 PMC: 11151192. DOI: 10.1523/ENEURO.0453-23.2024.


Overnight neuronal plasticity and adaptation to emotional distress.

Cabrera Y, Koymans K, Poe G, Kessels H, van Someren E, Wassing R Nat Rev Neurosci. 2024; 25(4):253-271.

PMID: 38443627 DOI: 10.1038/s41583-024-00799-w.


The Ponto-Geniculo-Occipital (PGO) Waves in Dreaming: An Overview.

Gao J, Yan G, Li X, Xie J, Spruyt K, Shao Y Brain Sci. 2023; 13(9).

PMID: 37759951 PMC: 10526299. DOI: 10.3390/brainsci13091350.


A medullary hub for controlling REM sleep and pontine waves.

Schott A, Baik J, Chung S, Weber F Nat Commun. 2023; 14(1):3922.

PMID: 37400467 PMC: 10318054. DOI: 10.1038/s41467-023-39496-0.


The temporal structure of REM sleep shows minute-scale fluctuations across brain and body in mice and humans.

Bueno-Junior L, Ruckstuhl M, Lim M, Watson B Proc Natl Acad Sci U S A. 2023; 120(18):e2213438120.

PMID: 37094161 PMC: 10161068. DOI: 10.1073/pnas.2213438120.