Freely Moving Rat

A freely moving rat is a laboratory animal studied while navigating and behaving without physical restraint, providing a more natural model for investigating brain function. In neuroscience experiments, researchers combine behavioral tracking with implanted electrodes, wireless sensors, or other recording systems to measure neural activity as the animal moves, explores, learns, or responds to stimuli. This approach helps link neuronal signals to locomotion, motivation, memory, decision-making, and social behavior. Findings from freely moving rat studies can reveal how distributed brain circuits operate during real-world actions and support research on neurological disorders, behavioral therapies, and neural prosthetic technologies.

Freely Moving Rat - Related Videos

Research

JoVE Journal - Neuroscience

Recording EEG in Freely Moving Neonatal Rats Using a Novel Method

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Cited by 3 •

2017

Here, we introduce a novel technique designed to record electroencephalography (EEG) in freely moving neonatal epileptic pups and describe its procedures, features, and applications. This method allows one to record EEG for more than 1 week.

Recording of Induced Seizures through Electroencephalography in Freely Moving Rat Pups

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2025

The video demonstrates the recording of electroencephalogram (EEG) signals from seizure-induced rat pups. Take a freely moving pup implanted with electrodes connected to a data acquisition system. A neurotoxin is administered to induce epileptic seizures, and the resulting electrical bursting activity is monitored using the EEG signal.

Long-term Blood Pressure Measurement in Freely Moving Mice Using Telemetry

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Cited by 13 •

2016

The goal of this protocol is to assess systemic blood pressure in conscious freely moving mice using implantable radio-telemetry devices.

Microdialysis of Excitatory Amino Acids During EEG Recordings in Freely Moving Rats

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Cited by 2 •

2018

Here, we describe a method for in vivo microdialysis to analyze aspartate and glutamate release in the ventral hippocampus of epileptic and non-epileptic rats, in combination with EEG recordings. Extracellular concentrations of aspartate and glutamate may be correlated with the different phases of the disease.

Real-Time Microendoscopic Calcium Imaging in a Freely Moving Mouse

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2025

Source: Lee, H. et. al., Successful In vivo Calcium Imaging with a Head-Mount Miniaturized Microscope in the Amygdala of Freely Behaving Mouse. J. Vis. Exp. (2020)This video demonstrates in vivo calcium imaging in a mouse using a gradient refractive index, or GRIN lens, and a miniaturized microscope. The setup combines head fixation within a frictionless mobile cage system, stimulating neurons and triggering calcium ion influx. The GRIN lens captures calcium signaling in the brain, enabling...

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