Theta Oscillation Synchronization

Theta oscillation synchronization is the coordinated timing of neural activity within the theta frequency range, typically about 4–8 Hz, and plays an important role in organizing information processing in the brain. It occurs when neuronal populations align the phase of their rhythmic activity, allowing communication between brain regions to be strengthened or timed to specific parts of the theta cycle. In neuroscience, researchers study this synchronization using electrophysiological recordings and signal analysis to investigate memory formation, spatial navigation, attention, and learning. Measuring changes in theta coordination can also provide insight into how neural networks integrate information and how disrupted timing may contribute to neurological or psychiatric conditions.

Theta Oscillation Synchronization - Related Videos

Research

JoVE EoE - Neurophysiology

In Vitro Recording of Theta Oscillations in the Mouse Hippocampus

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2025

This video demonstrates the recording of rhythmic neuronal network activity, also known as theta oscillations, in an isolated hippocampus. Electrodes are inserted into various layers and spatial positions to detect and analyze theta oscillations. This shows the unique neuronal compositions and the connectivity of the neuronal network across different layers of the hippocampus.

Selective Manipulation of Theta Oscillations in a Mouse Model

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2025

This video demonstrates a protocol to modulate theta oscillations in a genetically engineered mouse model with light-sensitive ion channels in its GABAergic medial septum neurons. By delivering light pulses to the hippocampus, the protocol aims to synchronize neuronal activity and generate theta oscillations, which are recorded as local field potentials.

Automatic Detection of Highly Organized Theta Oscillations in the Murine EEG

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Cited by 5 •

2017

Theta activity in the hippocampus is related to specific cognitive and behavioral stages. Here, we describe an analytical method to detect highly-organized theta oscillations within the hippocampus using a time-frequency (i.e., wavelet analysis)-based approach.

Optogenetic Entrainment of Hippocampal Theta Oscillations in Behaving Mice

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Cited by 4 •

2018

We describe the use of optogenetics and electrophysiological recordings for selective manipulations of hippocampal theta oscillations (5-10 Hz) in behaving mice. The efficacy of the rhythm entrainment is monitored using local field potential. A combination of opto- and pharmacogenetic inhibition addresses the efferent readout of hippocampal synchronization.

Education

JoVE Science Education - Engineering

AC Synchronous Machine Synchronization

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2023

Source: Ali Bazzi, Department of Electrical Engineering, University of Connecticut, Storrs, CT. Three-phase wound-rotor synchronous generators are the main source of electrical power worldwide. They require a prime mover and an exciter in order to generate power. The prime mover can be a turbine spun by fluid (gas or liquid), thus the sources of the fluid can be water running off a dam through a long nozzle, steam from water evaporated using burned coal, etc. Most power plants including coal,...

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